<?xml version="1.0" ?>
<document xmlns="urn:w3id.org:cmip6.dreq.dreq:a" xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:pav="http://purl.org/pav/2.3" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:noNamespaceSchemaLocation="out/dreqSchema.xsd">
<prologue>
<dc:title>Draft CMIP6 Data Request [01.00.07]</dc:title>
<dc:description>The CMIP6 Data Request will specify the variables requested for the CMIP6 archive, and the detail the experiments and time slices for which they are required.</dc:description>
<dc:creator>Martin Juckes</dc:creator>
<dc:date>2017-04-13</dc:date>
<pav:version>01.00.07</pav:version>
</prologue>
<main>
<requestVarGroup id="rqvg" label="requestVarGroup" title="3.1 Request variable group: a collection of request variables" uid="SECTION:requestVarGroup" useClass="vocab">
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<item label="LS3MIP-LEday" mip="LS3MIP" ref="new" refNote="LS3MIP.LEday" title="LS3MIP: LS3MIP-LEday" uid="efc0a088-5629-11e6-9079-ac72891c3257"/>
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<item label="AgMIP-1" mip="VIACSAB" ref="new" refNote="VIACSAB: AgMIP.1" title="VIACSAB: AgMIP.1" uid="6d98f328-5979-11e6-8fd9-ac72891c3257"/>
<item label="DCPP-Amon" mip="DCPP" ref="rev" refNote="DCPP.Amon" title="DCPP: DCPP-Amon" uid="efc0e570-5629-11e6-9079-ac72891c3257"/>
<item label="Amon-subset-02" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: Amon (subset 2)((isd.010))" title="CMIP6 CMOR Table: Amon" uid="603bdf74-5979-11e6-ac77-ac72891c3257"/>
<item label="Macroecological-1" mip="VIACSAB" ref="new" refNote="VIACSAB: Macroecological.1" title="VIACSAB: Macroecological.1" uid="6d99cb36-5979-11e6-8fd9-ac72891c3257"/>
<item label="DBEM-3" mip="VIACSAB" ref="new" refNote="VIACSAB: DBEM.3" title="VIACSAB: DBEM.3" uid="6d991ede-5979-11e6-8fd9-ac72891c3257"/>
<item label="AgMIP-2c" mip="VIACSAB" ref="new" refNote="VIACSAB: AgMIP.2c" title="VIACSAB: AgMIP.2c" uid="6d99b4ca-5979-11e6-8fd9-ac72891c3257"/>
<item label="HighResMIP-cfMon" mip="HighResMIP" ref="CMIP5Rev" refNote="HighResMIP.cfMon_sim" title="HighResMIP: HighResMIP-cfMon_sim" uid="efc164b4-5629-11e6-9079-ac72891c3257"/>
<item label="cfSites" mip="CMIP5" ref="rev" refNote="CFMIP.cfSites" title="CFMIP: CFMIP-cfSites" uid="33b0f666-a27a-11e6-bfbb-ac72891c3257"/>
<item label="LUMIP-LmonLut" mip="LUMIP" ref="new" refNote="LUMIP.Lmon_Lut" title="LUMIP: LUMIP-LmonLut" uid="efc0e1ce-5629-11e6-9079-ac72891c3257"/>
<item label="HighResMIP-AmonDiag" mip="HighResMIP" ref="new" refNote="HighResMIP.Amon_diag" title="HighResMIP: HighResMIP-AmonDiag" uid="efc0c540-5629-11e6-9079-ac72891c3257"/>
<item label="cfMon" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: cfMon" title="CMIP6 CMOR Table: cfMon" uid="ef12e39e-5629-11e6-9079-ac72891c3257"/>
<item label="POEM-2" mip="VIACSAB" ref="new" refNote="VIACSAB: POEM.2" title="VIACSAB: POEM.2" uid="6d979f32-5979-11e6-8fd9-ac72891c3257"/>
<item label="DBPM-2" mip="VIACSAB" ref="new" refNote="VIACSAB: DBPM.2" title="VIACSAB: DBPM.2" uid="6d97f9f0-5979-11e6-8fd9-ac72891c3257"/>
<item label="HighResMIP-3hrPlev" mip="HighResMIP" ref="new" refNote="HighResMIP.3hrPlev" title="HighResMIP: HighResMIP-3hrPlev" uid="efc0fa56-5629-11e6-9079-ac72891c3257"/>
<item label="CFMIP-SImon" mip="CFMIP" ref="rev" refNote="CFMIP.OImon" title="CFMIP: CFMIP-OImon" uid="efc0db98-5629-11e6-9079-ac72891c3257"/>
<item label="CFMIP-fx" mip="CFMIP" ref="rev" refNote="CFMIP.fx" title="CFMIP: CFMIP-fx" uid="5c72dd92-a277-11e6-bfbb-ac72891c3257"/>
<item label="DBPM-3" mip="VIACSAB" ref="new" refNote="VIACSAB: DBPM.3" title="VIACSAB: DBPM.3" uid="6d97f46e-5979-11e6-8fd9-ac72891c3257"/>
<item label="CSP-1" mip="VIACSAB" ref="new" refNote="VIACSAB: CSP.1" title="VIACSAB: CSP.1" uid="6d9956a6-5979-11e6-8fd9-ac72891c3257"/>
<item label="FISH-MIP-2c" mip="VIACSAB" ref="new" refNote="VIACSAB: FISH-MIP.2c" title="VIACSAB: FISH-MIP.2c" uid="6d97d7ae-5979-11e6-8fd9-ac72891c3257"/>
<item label="Madingley-1" mip="VIACSAB" ref="new" refNote="VIACSAB: Madingley.1" title="VIACSAB: Madingley.1" uid="6d98a3c8-5979-11e6-8fd9-ac72891c3257"/>
<item label="FISH-MIP-1" mip="VIACSAB" ref="new" refNote="VIACSAB: FISH-MIP.1" title="VIACSAB: FISH-MIP.1" uid="6d983b2c-5979-11e6-8fd9-ac72891c3257"/>
<item label="FAFMIP-OyrB" mip="FAFMIP" ref="new" refNote="FAFMIP.fafOyrB" title="FAFMIP: FAFMIP-OyrB" uid="efc092fa-5629-11e6-9079-ac72891c3257"/>
<item label="APECOSM-1" mip="VIACSAB" ref="new" refNote="VIACSAB: APECOSM.1" title="VIACSAB: APECOSM.1" uid="6d98bf7a-5979-11e6-8fd9-ac72891c3257"/>
<item label="aerhourly" mip="AerChemMIP" ref="CMIP6 [AerChemMIP]" refNote="MIP Table: aerhourly" title="CMIP6 CMOR Table: aerhourly" uid="ef12fbea-5629-11e6-9079-ac72891c3257"/>
<item label="EwE-3" mip="VIACSAB" ref="new" refNote="VIACSAB: EwE.3" title="VIACSAB: EwE.3" uid="6d997d34-5979-11e6-8fd9-ac72891c3257"/>
<item label="HighResMIP-3hrCloud" mip="HighResMIP" ref="new" refNote="HighResMIP.3hr_cloud" title="HighResMIP: HighResMIP-3hrCloud" uid="efc0f178-5629-11e6-9079-ac72891c3257"/>
<item label="cfDay-subset-01" mip="VolMIP" ref="new" refNote="VolMIP: cfDay subset" title="VolMIP: cfDay subset" uid="38c00b66-61f6-11e6-835f-ac72891c3257"/>
<item label="CSP-4" mip="VIACSAB" ref="new" refNote="VIACSAB: CSP.4" title="VIACSAB: CSP.4" uid="6d99677c-5979-11e6-8fd9-ac72891c3257"/>
<item label="Odec" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: Odec" title="CMIP6 CMOR Table: Odec" uid="9d64b154-ba14-11e6-a189-5404a60d96b5"/>
<item label="C4MIP-LandT1" mip="C4MIP" ref="new" refNote="C4MIP.C_LandT1" title="C4MIP: C4MIP-LandT1" uid="efc0da26-5629-11e6-9079-ac72891c3257"/>
<item label="Malaria-2c" mip="VIACSAB" ref="new" refNote="VIACSAB: Malaria.2c" title="VIACSAB: Malaria.2c" uid="6d98e02c-5979-11e6-8fd9-ac72891c3257"/>
<item label="CFMIP-Lmon" mip="CFMIP" ref="rev" refNote="CFMIP.Lmon" title="CFMIP: CFMIP-Lmon" uid="efc0b7d0-5629-11e6-9079-ac72891c3257"/>
<item label="SIMIP-seaiceday" mip="SIMIP" ref="new" refNote="SIMIP.seaiceday" title="SIMIP: SIMIP-seaiceday" uid="efc0a2f4-5629-11e6-9079-ac72891c3257"/>
<item label="SMHI-FoUo-3d" mip="VIACSAB" ref="new" refNote="VIACSAB: SMHI-FoUo.3d" title="VIACSAB: SMHI-FoUo.3d" uid="6d98786c-5979-11e6-8fd9-ac72891c3257"/>
<item label="Macroecological-1c" mip="VIACSAB" ref="new" refNote="VIACSAB: Macroecological.1c" title="VIACSAB: Macroecological.1c" uid="6d9898e2-5979-11e6-8fd9-ac72891c3257"/>
<item label="CSP-2" mip="VIACSAB" ref="new" refNote="VIACSAB: CSP.2" title="VIACSAB: CSP.2" uid="6d996182-5979-11e6-8fd9-ac72891c3257"/>
<item label="DBPM-3c" mip="VIACSAB" ref="new" refNote="VIACSAB: DBPM.3c" title="VIACSAB: DBPM.3c" uid="6d9867e6-5979-11e6-8fd9-ac72891c3257"/>
<item label="DAMIP-day" mip="DAMIP" ref="new" refNote="DAMIP.DAMIP_day" title="DAMIP: DAMIP-day" uid="efc0ca22-5629-11e6-9079-ac72891c3257"/>
<item label="DBPM-2c" mip="VIACSAB" ref="new" refNote="VIACSAB: DBPM.2c" title="VIACSAB: DBPM.2c" uid="6d981a84-5979-11e6-8fd9-ac72891c3257"/>
<item label="OSMOSE-1c" mip="VIACSAB" ref="new" refNote="VIACSAB: OSMOSE.1c" title="VIACSAB: OSMOSE.1c" uid="6d9903cc-5979-11e6-8fd9-ac72891c3257"/>
<item label="Madingley-3c" mip="VIACSAB" ref="new" refNote="VIACSAB: Madingley.3c" title="VIACSAB: Madingley.3c" uid="6d998d92-5979-11e6-8fd9-ac72891c3257"/>
<item label="DAMIP-emMonZ" mip="DAMIP" ref="new" refNote="DAMIP.DAMIP_emMonZ" title="DAMIP: DAMIP-emMonZ" uid="efc0e6a6-5629-11e6-9079-ac72891c3257"/>
<item label="Ofx" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: Ofx" title="CMIP6 CMOR Table: Ofx" uid="ef12f672-5629-11e6-9079-ac72891c3257"/>
<item label="DBPM-1c" mip="VIACSAB" ref="new" refNote="VIACSAB: DBPM.1c" title="VIACSAB: DBPM.1c" uid="6d97c52a-5979-11e6-8fd9-ac72891c3257"/>
<item label="Macroecological-3c" mip="VIACSAB" ref="new" refNote="VIACSAB: Macroecological.3c" title="VIACSAB: Macroecological.3c" uid="6d982542-5979-11e6-8fd9-ac72891c3257"/>
<item label="LS3MIP-L3hr" mip="LS3MIP" ref="new" refNote="LS3MIP.L3hr" title="LS3MIP: LS3MIP-L3hr" uid="6078e6bc-a69a-11e6-9a13-ac72891c3257"/>
<item label="FISH-MIP-3c" mip="VIACSAB" ref="new" refNote="VIACSAB: FISH-MIP.3c" title="VIACSAB: FISH-MIP.3c" uid="6d992a64-5979-11e6-8fd9-ac72891c3257"/>
<item label="SEAPODYM-1" mip="VIACSAB" ref="new" refNote="VIACSAB: SEAPODYM.1" title="VIACSAB: SEAPODYM.1" uid="6d980a44-5979-11e6-8fd9-ac72891c3257"/>
<item label="Oclim-subset" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: Oclim (subset)((isd.010))" title="CMIP6 CMOR Table: Oclim" uid="603be3de-5979-11e6-ac77-ac72891c3257"/>
<item label="AgMIP-4" mip="VIACSAB" ref="new" refNote="VIACSAB: AgMIP.4" title="VIACSAB: AgMIP.4" uid="6d98fe40-5979-11e6-8fd9-ac72891c3257"/>
<item label="DAMIP-day-zm" mip="DAMIP" ref="new" refNote="DAMIP.DAMIP_day_zm" title="DAMIP: DAMIP-day-zm" uid="efc0ede0-5629-11e6-9079-ac72891c3257"/>
<item label="HighResMIP-AmonSparc" mip="HighResMIP" ref="new" refNote="HighResMIP.Amon_sparc" title="HighResMIP: HighResMIP-AmonSparc" uid="efc0bf3c-5629-11e6-9079-ac72891c3257"/>
<item label="PMIP-LImon" mip="PMIP" ref="rev" refNote="PMIP.LImon" title="PMIP: PMIP-LImon" uid="efc0d544-5629-11e6-9079-ac72891c3257"/>
<item label="DAMIP-Omon-p2" mip="DAMIP" ref="new" refNote="DAMIP.DAMIP_Omon_p2" title="DAMIP: DAMIP-Omon-p2" uid="efc0c068-5629-11e6-9079-ac72891c3257"/>
<item label="cfDay" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: cfDay" title="CMIP6 CMOR Table: cfDay" uid="ef12ef7e-5629-11e6-9079-ac72891c3257"/>
<item label="Oclim" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: Oclim" title="CMIP6 CMOR Table: Oclim" uid="ef12f514-5629-11e6-9079-ac72891c3257"/>
<item label="Atlantis-3" mip="VIACSAB" ref="new" refNote="VIACSAB: Atlantis.3" title="VIACSAB: Atlantis.3" uid="6d98409a-5979-11e6-8fd9-ac72891c3257"/>
<item label="Oclim-subset-01" mip="GeoMIP" ref="new" refNote="GeoMIP: Oclim subset" title="GeoMIP: Oclim subset" uid="38bebefa-61f6-11e6-835f-ac72891c3257"/>
<item label="LImon" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: LImon" title="CMIP6 CMOR Table: LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257"/>
<item label="aermonthly-subset-01" mip="AerChemMIP" ref="new" refNote="MIP Table: aermonthly (subset)" title="CMIP6 CMOR Table: aermonthly (subset)" uid="e24dbd26-5fd1-11e6-914d-5404a60d96b5"/>
<item label="SMHI-FoUo-3" mip="VIACSAB" ref="new" refNote="VIACSAB: SMHI-FoUo.3" title="VIACSAB: SMHI-FoUo.3" uid="6d9777aa-5979-11e6-8fd9-ac72891c3257"/>
<item label="fx" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: fx" title="CMIP6 CMOR Table: fx" uid="ef12e6f0-5629-11e6-9079-ac72891c3257"/>
<item label="CFMIP-cf3hr" mip="CFMIP" ref="rev" refNote="CFMIP.cf3hr" title="CFMIP: CFMIP-cf3hr" uid="5bb8bdae-a277-11e6-bfbb-ac72891c3257"/>
<item label="ISI-MIP-4" mip="VIACSAB" ref="new" refNote="VIACSAB: ISI-MIP.4" title="VIACSAB: ISI-MIP.4" uid="6d999846-5979-11e6-8fd9-ac72891c3257"/>
<item label="cf1hrClimMon" mip="CFMIP" ref="new" refNote="CFMIP.cf1hrClimMon" title="CFMIP: cf1hrClimMon" uid="efc08bac-5629-11e6-9079-ac72891c3257"/>
<item label="day-oth" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: day-oth" title="CMIP6 CMOR Table: day-oth" uid="26d3f07c-7c16-11e6-8a5b-ac72891c3257"/>
<item label="HighResMIP-6hrPlevExtrDr" mip="HighResMIP" ref="new" refNote="HighResMIP.6hrPlev_extr_dr" title="HighResMIP: HighResMIP-6hrPlevExtrDr" uid="efc09cbe-5629-11e6-9079-ac72891c3257"/>
<item label="PMIP-Amon" mip="PMIP" ref="new" refNote="PMIP.Amon" title="PMIP: PMIP-Amon" uid="efc08328-5629-11e6-9079-ac72891c3257"/>
<item label="CFMIP-cfDayExtra" mip="CFMIP" ref="new" refNote="CFMIP.cfDayExtra" title="CFMIP: CFMIP-cfDayExtra" uid="efc07b94-5629-11e6-9079-ac72891c3257"/>
<item label="HighResMIP-1hrEnergy" mip="HighResMIP" ref="new" refNote="HighResMIP.1hr_energy" title="HighResMIP: HighResMIP-1hrEnergy" uid="efc0ea3e-5629-11e6-9079-ac72891c3257"/>
<item label="Arctic-2c" mip="VIACSAB" ref="new" refNote="VIACSAB: Arctic.2c" title="VIACSAB: Arctic.2c" uid="6d98dac8-5979-11e6-8fd9-ac72891c3257"/>
<item label="CFMIP-cfMon" mip="CFMIP" ref="rev" refNote="CFMIP.cfMon" title="CFMIP: CFMIP-cfMon" uid="5cc4375a-a277-11e6-bfbb-ac72891c3257"/>
<item label="ISMIP6-OmonNew" mip="ISMIP6" ref="new" refNote="ISMIP6.new_Omon" title="ISMIP6: ISMIP6-OmonNew" uid="efc0e7d2-5629-11e6-9079-ac72891c3257"/>
<item label="CFMIP-3hr" mip="CFMIP" ref="rev" refNote="CFMIP.3hr" title="CFMIP: CFMIP-3hr" uid="90553dca-a26e-11e6-bfbb-ac72891c3257"/>
<item label="DCPP-SImon" mip="DCPP" ref="rev" refNote="DCPP.OImon" title="DCPP: DCPP-OImon" uid="efc0a696-5629-11e6-9079-ac72891c3257"/>
<item label="DCPP-year" mip="DCPP" ref="new" refNote="DCPP.DCPP-year" title="DCPP: DCPP-year" uid="6e864660-c76e-11e6-b159-5404a60d96b5"/>
<item label="C4MIP-Atm" mip="LUMIP" ref="new" refNote="C4MIP.C_Atm" title="LUMIP: C4MIP-Atm" uid="073f5734-c76f-11e6-b159-5404a60d96b5"/>
<item label="PMIP-aero-02" mip="PMIP" ref="new" refNote="PMIP.PMIP-aero" title="PMIP: PMIP-aero" uid="d0e5741a-1ba7-11e7-8b4b-5404a60d96b5"/>
<item label="aerannual" mip="AerChemMIP" ref="CMIP6 [AerChemMIP]" refNote="MIP Table: aerannual" title="CMIP6 CMOR Table: aerannual" uid="ef13000e-5629-11e6-9079-ac72891c3257"/>
<item label="aermonthly" mip="AerChemMIP" ref="CMIP6 [AerChemMIP]" refNote="MIP Table: aermonthly" title="CMIP6 CMOR Table: aermonthly" uid="ef12fa96-5629-11e6-9079-ac72891c3257"/>
<item label="SICCME-3" mip="VIACSAB" ref="new" refNote="VIACSAB: SICCME.3" title="VIACSAB: SICCME.3" uid="6d998838-5979-11e6-8fd9-ac72891c3257"/>
<item label="emMon-subset-01" mip="GeoMIP" ref="new" refNote="GeoMIP: emMon selection" title="GeoMIP: emMon selection" uid="38c003f0-61f6-11e6-835f-ac72891c3257"/>
<item label="DBPM-1" mip="VIACSAB" ref="new" refNote="VIACSAB: DBPM.1" title="VIACSAB: DBPM.1" uid="6d97ff5e-5979-11e6-8fd9-ac72891c3257"/>
<item label="aero-3d" mip="CMIP5" ref="CMIP5" refNote="aero_3d" title="CMIP5: aero_3d" uid="efc13d7c-5629-11e6-9079-ac72891c3257"/>
<item label="ISI-MIP-3" mip="VIACSAB" ref="new" refNote="VIACSAB: ISI-MIP.3" title="VIACSAB: ISI-MIP.3" uid="6d999eb8-5979-11e6-8fd9-ac72891c3257"/>
<item label="POEM-2c" mip="VIACSAB" ref="new" refNote="VIACSAB: POEM.2c" title="VIACSAB: POEM.2c" uid="6d9846a8-5979-11e6-8fd9-ac72891c3257"/>
<item label="C4MIP-LandT2" mip="C4MIP" ref="new" refNote="C4MIP.C_LandT2" title="C4MIP: C4MIP-LandT2" uid="efc0e43a-5629-11e6-9079-ac72891c3257"/>
<item label="aerfixed" mip="AerChemMIP" ref="CMIP6 [AerChemMIP]" refNote="MIP Table: aerfixed" title="CMIP6 CMOR Table: aerfixed" uid="ef12fd66-5629-11e6-9079-ac72891c3257"/>
<item label="HighResMIP-1hrStrat" mip="HighResMIP" ref="new" refNote="HighResMIP.1hr_strat" title="HighResMIP: HighResMIP-1hrStrat" uid="efc08e22-5629-11e6-9079-ac72891c3257"/>
<item label="aermonthly-2d" mip="AerChemMIP" ref="CMIP6 [AerChemMIP]" refNote="MIP Table: aermonthly-2d" title="CMIP6 CMOR Table: aermonthly-2d" uid="fa8d867e-7e3e-11e6-9b26-f192b4cee584"/>
<item label="CFMIP-cfSitesNew" mip="CFMIP" ref="new" refNote="CFMIP.cfSites_new" title="CFMIP: CFMIP-cfSitesNew" uid="efc081de-5629-11e6-9079-ac72891c3257"/>
<item label="EwE-1c" mip="VIACSAB" ref="new" refNote="VIACSAB: EwE.1c" title="VIACSAB: EwE.1c" uid="6d98cfd8-5979-11e6-8fd9-ac72891c3257"/>
<item label="SICCME-3c" mip="VIACSAB" ref="new" refNote="VIACSAB: SICCME.3c" title="VIACSAB: SICCME.3c" uid="6d997262-5979-11e6-8fd9-ac72891c3257"/>
<item label="aerzonal-vert" mip="AerChemMIP" ref="new" refNote="AerChemMIP zonal mean profiles" title="AerChemMIP zonal mean profiles" uid="032f597c-c5ef-11e6-9285-ac72891c3257"/>
<item label="FISH-MIP-1c" mip="VIACSAB" ref="new" refNote="VIACSAB: FISH-MIP.1c" title="VIACSAB: FISH-MIP.1c" uid="6d98ca6a-5979-11e6-8fd9-ac72891c3257"/>
<item label="Omon-oth" mip="OMIP" ref="OMIP" refNote="Omon_oth" title="OMIP: Omon_oth" uid="efc143a8-5629-11e6-9079-ac72891c3257"/>
<item label="DAMIP-aermonthly" mip="DAMIP" ref="new" refNote="DAMIP.DAMIP_aermonthly" title="DAMIP: DAMIP-aermonthly" uid="efc0f04c-5629-11e6-9079-ac72891c3257"/>
<item label="CCMI-hourly" mip="CCMI" ref="CCMI" refNote="hourly" title="CCMI: hourly" uid="efc103ac-5629-11e6-9079-ac72891c3257"/>
<item label="PMIP-Amon-02" mip="PMIP" ref="rev" refNote="PMIP.PMIP-Amon" title="PMIP: PMIP-Amon" uid="efc0a560-5629-11e6-9079-ac72891c3257"/>
<item label="Amon-2d" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: Amon_2d" title="CMIP6 CMOR Table: Amon_2d" uid="ef12e22c-5629-11e6-9079-ac72891c3257"/>
<item label="aermonthly-3d" mip="AerChemMIP" ref="CMIP6 [AerChemMIP]" refNote="MIP Table: aermonthly-3d" title="CMIP6 CMOR Table: aermonthly-3d" uid="97d52748-8344-11e6-959e-ac72891c3257"/>
<item label="DCPP-6hr" mip="DCPP" ref="new" refNote="DCPP.DCPP-6hr" title="DCPP: DCPP-6hr" uid="efc096a6-5629-11e6-9079-ac72891c3257"/>
<item label="HighResMIP-AmonExt" mip="HighResMIP" ref="new" refNote="HighResMIP.Amon_ext" title="HighResMIP: HighResMIP-AmonExt" uid="efc08076-5629-11e6-9079-ac72891c3257"/>
<item label="POEM-1c" mip="VIACSAB" ref="new" refNote="VIACSAB: POEM.1c" title="VIACSAB: POEM.1c" uid="6d990930-5979-11e6-8fd9-ac72891c3257"/>
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<item label="PMIP-LIclim" mip="PMIP" ref="new" refNote="PMIP.PMIP-LIclim" title="PMIP: PMIP-LIclim" uid="efc0c8e2-5629-11e6-9079-ac72891c3257"/>
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<item label="aermonthlyz" mip="AerChemMIP" ref="new" refNote="AerChemMIP zonal means" title="AerChemMIP zonal means" uid="3a6ff456-c5ee-11e6-9285-ac72891c3257"/>
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<item label="Omon-subset-02" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: Omon" title="CMIP6 CMOR Table: Omon (subset)" uid="e24d84a0-5fd1-11e6-914d-5404a60d96b5"/>
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<item label="FAFMIP-fafOyr" mip="FAFMIP" ref="new" refNote="FAFMIP.fafOyr" title="FAFMIP: FAFMIP-fafOyr" uid="efc07176-5629-11e6-9079-ac72891c3257"/>
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<item label="day" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: day" title="CMIP6 CMOR Table: day" uid="ef12f92e-5629-11e6-9079-ac72891c3257"/>
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<item label="SIMIP-seaicemon" mip="SIMIP" ref="new" refNote="SIMIP.seaicemon" title="SIMIP: SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257"/>
<item label="Omon-3d" mip="OMIP" ref="OMIP" refNote="Omon_3d" title="OMIP: Omon_3d" uid="efc154f6-5629-11e6-9079-ac72891c3257"/>
<item label="APECOSM-2" mip="VIACSAB" ref="new" refNote="VIACSAB: APECOSM.2" title="VIACSAB: APECOSM.2" uid="6d98c4fc-5979-11e6-8fd9-ac72891c3257"/>
<item label="6hrLev" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table: 6hrLev" title="CMIP6 CMOR Table: 6hrLev" uid="ef12e9c0-5629-11e6-9079-ac72891c3257"/>
<item label="DBEM-1c" mip="VIACSAB" ref="new" refNote="VIACSAB: DBEM.1c" title="VIACSAB: DBEM.1c" uid="6d99d5a4-5979-11e6-8fd9-ac72891c3257"/>
<item label="DCPP-mon" mip="DCPP" ref="new" refNote="DCPP.DCPP-mon" title="DCPP: DCPP-mon" uid="efc0d2d8-5629-11e6-9079-ac72891c3257"/>
<item label="aerdaily-2d" mip="AerChemMIP" ref="CMIP6 [AerChemMIP]" refNote="MIP Table: aerdaily-2d" title="CMIP6 CMOR Table: aerdaily-2d" uid="ee2fcab6-7e40-11e6-9b26-f192b4cee584"/>
<item label="EwE-3c" mip="VIACSAB" ref="new" refNote="VIACSAB: EwE.3c" title="VIACSAB: EwE.3c" uid="6d984c98-5979-11e6-8fd9-ac72891c3257"/>
<item label="SMHI-FoUo-2c" mip="VIACSAB" ref="new" refNote="VIACSAB: SMHI-FoUo.2c" title="VIACSAB: SMHI-FoUo.2c" uid="6d981ff2-5979-11e6-8fd9-ac72891c3257"/>
<item label="PMIP-aeroclim" mip="PMIP" ref="new" refNote="PMIP.PMIP-aeroclim" title="PMIP: PMIP-aeroclim" uid="efc0908e-5629-11e6-9079-ac72891c3257"/>
<item label="DynVar-monthly-c" mip="DynVar" ref="new" refNote="DynVar.DYVR_monthly_c" title="DynVar: DynVar-monthly-c" uid="efc0bb72-5629-11e6-9079-ac72891c3257"/>
<item label="PMIP-aero" mip="PMIP" ref="new" refNote="PMIP.aero" title="PMIP: PMIP-aero" uid="efc09430-5629-11e6-9079-ac72891c3257"/>
</requestVarGroup>
<requestItem id="rqi" label="requestItem" title="3.2 Request Item: specifying the number of years for an experiment" uid="SECTION:requestItem" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item esid="f16fbe1c-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment abrupt-4xCO2" expt="abrupt-4xCO2" label="C4mipC4mipLandt2" mip="C4MIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="efc0e43a-5629-11e6-9079-ac72891c3257__00" tab="C4MIP-LandT2" title="C4MIP, C4MIP-LandT2, abrupt-4xCO2" uid="93f27276-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fc9ac-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment esm-hist" expt="esm-hist" label="CmipLimon" mip="CMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="ef12f3ac-5629-11e6-9079-ac72891c3257__01" tab="LImon" title="CMIP, LImon, esm-hist" uid="93f694a0-267c-11e7-8933-ac72891c3257"/>
<item esid="f16d9880-dd9e-11e6-b89b-ac72891c3257" esidComment="('f16d9880-dd9e-11e6-b89b-ac72891c3257', 'grp', set(['Damip4']))" expt="DAMIP-4" label="DamipAermonthlyOth" mip="DAMIP" nenmax="1" nexmax="-999" ny="100" nymax="-1" preset="-1" rlid="98d5254e-8344-11e6-959e-ac72891c3257__00" tab="aermonthly-oth" title="DAMIP, aermonthly-oth, DAMIP-4" uid="93f92382-267c-11e7-8933-ac72891c3257"/>
<item esid="f16d9470-dd9e-11e6-b89b-ac72891c3257" esidComment="('f16d9470-dd9e-11e6-b89b-ac72891c3257', 'grp', set(['Damip3']))" expt="DAMIP-3" label="DamipDamipDay" mip="DAMIP" nenmax="3" nexmax="-999" ny="183" nymax="61" preset="-1" rlid="efc0ca22-5629-11e6-9079-ac72891c3257__00" tab="DAMIP-day" title="DAMIP, DAMIP-day, DAMIP-3" tslice="_slice_DAMIP61" uid="93f9909c-267c-11e7-8933-ac72891c3257"/>
<item esid="ScenarioMIP" esidComment="('ScenarioMIP', 'mip', set(['ScenarioMIP']))" expt="ScenarioMIP" label="DynvarDynvarMonthlyD" mip="DynVar" nenmax="-1" nexmax="2" ny="80" nymax="40.0" preset="-1" rlid="efc0b906-5629-11e6-9079-ac72891c3257__00" tab="DynVar-monthly-d" title="DynVar, DynVar-monthly-d, ScenarioMIP" uid="93fb3f14-267c-11e7-8933-ac72891c3257"/>
<item esid="HighResMIP" esidComment="('HighResMIP', 'mip', set(['HighResMIP']))" expt="HiResMIP" label="DynvarDynvarDailyA" mip="DynVar" nenmax="-1" nexmax="1" ny="40" nymax="40.0" preset="-1" rlid="efc077e8-5629-11e6-9079-ac72891c3257__00" tab="DynVar-daily-a" title="DynVar, DynVar-daily-a, HiResMIP" uid="93fcb0ba-267c-11e7-8933-ac72891c3257"/>
<item esid="f16e3222-dd9e-11e6-b89b-ac72891c3257" esidComment="('f16e3222-dd9e-11e6-b89b-ac72891c3257', 'grp', set(['Geomip1']))" expt="GeoMIP-1" label="GeomipCf3hrSubset" mip="GeoMIP" nenmax="1" nexmax="-999" ny="300" nymax="300.0" preset="-1" rlid="603bd560-5979-11e6-ac77-ac72891c3257__00" tab="cf3hr-subset" title="GeoMIP, cf3hr-subset, GeoMIP-1" uid="93fe116c-267c-11e7-8933-ac72891c3257"/>
<item esid="f16e3f42-dd9e-11e6-b89b-ac72891c3257" esidComment="('f16e3f42-dd9e-11e6-b89b-ac72891c3257', 'grp', set(['Geomip3']))" expt="GeoMIP-3" label="GeomipCf3hrSubset" mip="GeoMIP" nenmax="1" nexmax="-999" ny="243" nymax="243.0" preset="-1" rlid="603bd560-5979-11e6-ac77-ac72891c3257__00" tab="cf3hr-subset" title="GeoMIP, cf3hr-subset, GeoMIP-3" uid="93fe169e-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fbe1c-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment abrupt-4xCO2" expt="abrupt-4xCO2" label="GeomipAermonthlySubset01" mip="GeoMIP" nenmax="1" nexmax="-999" ny="100" nymax="100.0" preset="-1" rlid="e24dbd26-5fd1-11e6-914d-5404a60d96b5__00" tab="aermonthly-subset-01" title="GeoMIP, aermonthly-subset-01, abrupt-4xCO2" uid="93fe2c42-267c-11e7-8933-ac72891c3257"/>
<item esid="f2ff0310-26b8-11e7-8344-ac72891c3257" esidComment="('f2ff0310-26b8-11e7-8344-ac72891c3257', 'list', ('ScenarioMIP-1',))" expt="ScenarioMIP-1" label="GeomipAmon" mip="GeoMIP" nenmax="1" nexmax="1" ny="86" nymax="86.0" preset="-1" rlid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__06" tab="Amon" title="GeoMIP, Amon, ScenarioMIP-1" uid="93fee844-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fcec0-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment historical-ext" expt="historical-ext" label="GeomipLimon" mip="GeoMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="ef12f3ac-5629-11e6-9079-ac72891c3257__05" tab="LImon" title="GeoMIP, LImon, historical-ext" uid="93ff4d84-267c-11e7-8933-ac72891c3257"/>
<item esid="f16e3790-dd9e-11e6-b89b-ac72891c3257" esidComment="('f16e3790-dd9e-11e6-b89b-ac72891c3257', 'grp', set(['Geomip2']))" expt="GeoMIP-2" label="GeomipEmmonSubset01" mip="GeoMIP" nenmax="2" nexmax="-999" ny="486" nymax="243.0" preset="-1" rlid="38c003f0-61f6-11e6-835f-ac72891c3257__00" tab="emMon-subset-01" title="GeoMIP, emMon-subset-01, GeoMIP-2" uid="94000094-267c-11e7-8933-ac72891c3257"/>
<item esid="f16e6ac6-dd9e-11e6-b89b-ac72891c3257" esidComment="('f16e6ac6-dd9e-11e6-b89b-ac72891c3257', 'grp', set(['Highresmip3']))" expt="HighResMIP-3" label="HighresmipHighresmipAmonsparc" mip="HighResMIP" nenmax="1" nexmax="-999" ny="36" nymax="36.0" preset="-1" rlid="efc0bf3c-5629-11e6-9079-ac72891c3257__00" tab="HighResMIP-AmonSparc" title="HighResMIP, HighResMIP-AmonSparc, HighResMIP-3" uid="940080fa-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment amip" expt="amip" label="HighresmipHighresmip1ts" mip="HighResMIP" nenmax="1" nexmax="-999" ny="0" nymax="0.5" preset="-1" rlid="efc0b2ee-5629-11e6-9079-ac72891c3257__00" tab="HighResMIP.1ts" title="HighResMIP, HighResMIP.1ts, amip" uid="9402b0fa-267c-11e7-8933-ac72891c3257"/>
<item esid="f2fecdd2-26b8-11e7-8344-ac72891c3257" esidComment="('f2fecdd2-26b8-11e7-8344-ac72891c3257', 'list', ('ISMP6-5',))" expt="ISMP6-5" label="Ismip6Ismip6Limon01" mip="ISMIP6" nenmax="1" nexmax="-999" ny="100" nymax="-1" preset="-1" rlid="efc0c7ac-5629-11e6-9079-ac72891c3257__00" tab="ISMIP6-LImon-01" title="ISMIP6, ISMIP6-LImon-01, ISMP6-5" uid="94046148-267c-11e7-8933-ac72891c3257"/>
<item esid="f2ff1878-26b8-11e7-8344-ac72891c3257" esidComment="('f2ff1878-26b8-11e7-8344-ac72891c3257', 'list', ('lgm127k',))" expt="lgm127k" label="Ismip6Ismip6Omon" mip="ISMIP6" nenmax="1" nexmax="1" ny="100" nymax="-1" preset="-1" rlid="efc0a7cc-5629-11e6-9079-ac72891c3257__00" tab="ISMIP6.Omon" title="ISMIP6, ISMIP6.Omon, lgm127k" uid="9404d920-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fc9ac-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment esm-hist" expt="esm-hist" label="PmipPmipPmipAeroclim" mip="PMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="efc0908e-5629-11e6-9079-ac72891c3257__00" tab="PMIP.PMIP-aeroclim" title="PMIP, PMIP.PMIP-aeroclim, esm-hist" uid="940778c4-267c-11e7-8933-ac72891c3257"/>
<item esid="f16f14c6-dd9e-11e6-b89b-ac72891c3257" esidComment="('f16f14c6-dd9e-11e6-b89b-ac72891c3257', 'grp', set(['Pmip5']))" expt="PMIP-5" label="PmipPmipSimon" mip="PMIP" nenmax="1" nexmax="-999" ny="100" nymax="100.0" preset="-1" rlid="efc0f51a-5629-11e6-9079-ac72891c3257__00" tab="PMIP-SImon" title="PMIP, PMIP-SImon, PMIP-5" uid="9408f816-267c-11e7-8933-ac72891c3257"/>
<item esid="f16f6188-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment SSP126" expt="SSP126" label="PmipPmipDay02" mip="PMIP" nenmax="1" nexmax="2" ny="200" nymax="-1" preset="-1" rlid="efc09f48-5629-11e6-9079-ac72891c3257__00" tab="PMIP-day-02" title="PMIP, PMIP-day-02, SSP126" uid="940c00ce-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment amip" expt="amip" label="PmipPmipLmon02" mip="PMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="efc086d4-5629-11e6-9079-ac72891c3257__00" tab="PMIP-Lmon-02" title="PMIP, PMIP-Lmon-02, amip" uid="940c126c-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fc9ac-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment esm-hist" expt="esm-hist" label="PmipPmipPmipOclim" mip="PMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="efc0cc8e-5629-11e6-9079-ac72891c3257__00" tab="PMIP.PMIP-Oclim" title="PMIP, PMIP.PMIP-Oclim, esm-hist" uid="940c91b0-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fcec0-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment historical-ext" expt="historical-ext" label="SimipSimipSeaicemon" mip="SIMIP" nenmax="-1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="efc072ca-5629-11e6-9079-ac72891c3257__09" tab="SIMIP.seaicemon" title="SIMIP, SIMIP.seaicemon, historical-ext" uid="940d9a74-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fcec0-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment historical-ext" expt="historical-ext" label="VolmipLmon" mip="VolMIP" nenmax="-1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="ef12f23a-5629-11e6-9079-ac72891c3257__07" tab="Lmon" title="VolMIP, Lmon, historical-ext" uid="940e7b38-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fd136-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment esm-hist-ext" expt="esm-hist-ext" label="AerchemmipOmon" mip="AerChemMIP" nenmax="3" nexmax="-999" ny="495" nymax="165.0" preset="-1" rlid="ef12e542-5629-11e6-9079-ac72891c3257__00" tab="Omon" title="AerChemMIP, Omon, esm-hist-ext" uid="93f1c524-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fc0b0-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment 1pctCO2" expt="1pctCO2" label="C4mipC4mipBasic" mip="C4MIP" nenmax="-1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="efc0d8f0-5629-11e6-9079-ac72891c3257__00" tab="C4MIP-Basic" title="C4MIP, C4MIP-Basic, 1pctCO2" uid="93f24698-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fcec0-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment historical-ext" expt="historical-ext" label="CfmipCfmipLimon" mip="CFMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="efc0b564-5629-11e6-9079-ac72891c3257__00" tab="CFMIP.LImon" title="CFMIP, CFMIP.LImon, historical-ext" uid="93f3fdf8-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment amip" expt="amip" label="CfmipCfmipSimon" mip="CFMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="efc0db98-5629-11e6-9079-ac72891c3257__00" tab="CFMIP-SImon" title="CFMIP, CFMIP-SImon, amip" uid="93f52ac0-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fcec0-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment historical-ext" expt="historical-ext" label="CmipEsmval" mip="CMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="b7d445ce-c16a-11e6-bb6a-ac72891c3257__00" tab="esmval" title="CMIP, esmval, historical-ext" uid="93f5b5da-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fc5c4-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment historical" expt="historical" label="Cmip6hrplev" mip="CMIP" nenmax="1" nexmax="-999" ny="65" nymax="65" preset="-1" rlid="ef12eca4-5629-11e6-9079-ac72891c3257__00" tab="6hrPlev" title="CMIP, 6hrPlev, historical" tslice="_slice_hist65" uid="93f6ee50-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fcc40-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment esm-piControl" expt="esm-piControl" label="GeomipAmon" mip="GeoMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__06" tab="Amon" title="GeoMIP, Amon, esm-piControl" uid="93fec7f6-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fb9da-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment piControl" expt="piControl" label="GeomipLimon" mip="GeoMIP" nenmax="1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="ef12f3ac-5629-11e6-9079-ac72891c3257__05" tab="LImon" title="GeoMIP, LImon, piControl" uid="93ff3e70-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fcec0-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment historical-ext" expt="historical-ext" label="HighresmipOmon3d" mip="HighResMIP" nenmax="2" nexmax="-999" ny="320" nymax="160.0" preset="-1" rlid="efc154f6-5629-11e6-9079-ac72891c3257__01" tab="Omon-3d" title="HighResMIP, Omon-3d, historical-ext" uid="94013284-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment amip" expt="amip" label="Highresmip3hr" mip="HighResMIP" nenmax="3" nexmax="-999" ny="90" nymax="30.0" preset="-1" rlid="ef12df16-5629-11e6-9079-ac72891c3257__02" tab="3hr" title="HighResMIP, 3hr, amip" uid="94019026-267c-11e7-8933-ac72891c3257"/>
<item esid="f2fefd84-26b8-11e7-8344-ac72891c3257" esidComment="('f2fefd84-26b8-11e7-8344-ac72891c3257', 'list', ('SSP5-85-01',))" expt="SSP5-85-01" label="Ismip6Ismip6Omonnew" mip="ISMIP6" nenmax="1" nexmax="1" ny="100" nymax="-1" preset="-1" rlid="efc0e7d2-5629-11e6-9079-ac72891c3257__00" tab="ISMIP6-OmonNew" title="ISMIP6, ISMIP6-OmonNew, SSP5-85-01" uid="94040a18-267c-11e7-8933-ac72891c3257"/>
<item esid="f16fd136-dd9e-11e6-b89b-ac72891c3257" esidComment="Experiment esm-hist-ext" expt="esm-hist-ext" label="LumipLimon" mip="LUMIP" nenmax="-1" nexmax="-999" ny="160" nymax="-1" preset="-1" rlid="ef12f3ac-5629-11e6-9079-ac72891c3257__08" tab="LImon" title="LUMIP, LImon, esm-hist-ext" uid="940605fc-267c-11e7-8933-ac72891c3257"/>
<item esid="f16f14c6-dd9e-11e6-b89b-ac72891c3257" esidComment="('f16f14c6-dd9e-11e6-b89b-ac72891c3257', 'grp', set(['Pmip5']))" expt="PMIP-5" label="PmipPmip6hrlev" mip="PMIP" nenmax="1" nexmax="-999" ny="20" nymax="20.0" preset="-1" rlid="804442e6-a269-11e6-bfbb-ac72891c3257__00" tab="PMIP.6hrLev" title="PMIP, PMIP.6hrLev, PMIP-5" uid="940a62fa-267c-11e7-8933-ac72891c3257"/>
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<item esid="f16e1cba-dd9e-11e6-b89b-ac72891c3257" expt="AMIP20C" label="amip20c" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff43c2-33eb-11e7-80d4-5404a60d96b5" title="Atlantis.2c: amip20c" uid="8e0d700a-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16d4312-dd9e-11e6-b89b-ac72891c3257" expt="amip4xCO2" label="amip4xco2" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff0934-33eb-11e7-80d4-5404a60d96b5" title="Atlantis.3: amip4xco2" uid="8e0d7384-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16e220a-dd9e-11e6-b89b-ac72891c3257" expt="Gmmip2" label="gmmip2" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff0934-33eb-11e7-80d4-5404a60d96b5" title="Atlantis.3: gmmip2" uid="8e0d78a2-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16d4312-dd9e-11e6-b89b-ac72891c3257" expt="amip4xCO2" label="amip4xco2" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dffd2f6-33eb-11e7-80d4-5404a60d96b5" title="Atlantis.3c: amip4xco2" uid="8e0d7c30-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16e3a6a-dd9e-11e6-b89b-ac72891c3257" expt="G6solar" label="g6solar" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dffd2f6-33eb-11e7-80d4-5404a60d96b5" title="Atlantis.3c: g6solar" uid="8e0d834c-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" expt="amip" label="amip" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dfecc76-33eb-11e7-80d4-5404a60d96b5" title="EwE.1: amip" uid="8e0d86c6-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc5c4-dd9e-11e6-b89b-ac72891c3257" expt="historical" label="historical" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff6280-33eb-11e7-80d4-5404a60d96b5" title="EwE.1c: historical" uid="8e0d8888-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" expt="amip" label="amip" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff6280-33eb-11e7-80d4-5404a60d96b5" title="EwE.1c: amip" uid="8e0d8a36-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16dbbe4-dd9e-11e6-b89b-ac72891c3257" expt="DcppA" label="dcppa" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: dcppa" uid="8e0dc618-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16dcb34-dd9e-11e6-b89b-ac72891c3257" expt="DcppB" label="dcppb" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: dcppb" uid="8e0dc7c6-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f6188-dd9e-11e6-b89b-ac72891c3257" expt="SSP126" label="ssp126" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: ssp126" uid="8e0dc96a-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e3632-dd9e-11e6-b89b-ac72891c3257" expt="G6sulfate" label="g6sulfate" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: g6sulfate" uid="8e0dcb18-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f57e2-dd9e-11e6-b89b-ac72891c3257" expt="ScenarioMIP1" label="scenariomip1" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: scenariomip1" uid="8e0dccda-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e3a6a-dd9e-11e6-b89b-ac72891c3257" expt="G6solar" label="g6solar" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: g6solar" uid="8e0dce92-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e3de4-dd9e-11e6-b89b-ac72891c3257" expt="G7cirrus" label="g7cirrus" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: g7cirrus" uid="8e0dd036-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc5c4-dd9e-11e6-b89b-ac72891c3257" expt="historical" label="historical" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: historical" uid="8e0dd1e4-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e30e2-dd9e-11e6-b89b-ac72891c3257" expt="G1ext" label="g1ext" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: g1ext" uid="8e0dd392-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" expt="amip" label="amip" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff734c-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2: amip" uid="8e0dd536-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f68b8-dd9e-11e6-b89b-ac72891c3257" expt="SSP437" label="ssp437" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: ssp437" uid="8e0dd6f8-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f65f2-dd9e-11e6-b89b-ac72891c3257" expt="ScenarioMIP2" label="scenariomip2" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: scenariomip2" uid="8e0dd8a6-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f792a-dd9e-11e6-b89b-ac72891c3257" expt="ScenarioMIP3" label="scenariomip3" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: scenariomip3" uid="8e0dda68-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f5ab2-dd9e-11e6-b89b-ac72891c3257" expt="SSP370" label="ssp370" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: ssp370" uid="8e0ddc16-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d8c96-dd9e-11e6-b89b-ac72891c3257" expt="Damip2" label="damip2" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: damip2" uid="8e0dddc4-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d9880-dd9e-11e6-b89b-ac72891c3257" expt="Damip4" label="damip4" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: damip4" uid="8e0ddfcc-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16dbbe4-dd9e-11e6-b89b-ac72891c3257" expt="DcppA" label="dcppa" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: dcppa" uid="8e0de17a-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16dcb34-dd9e-11e6-b89b-ac72891c3257" expt="DcppB" label="dcppb" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: dcppb" uid="8e0de31e-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f6188-dd9e-11e6-b89b-ac72891c3257" expt="SSP126" label="ssp126" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: ssp126" uid="8e0de512-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e3632-dd9e-11e6-b89b-ac72891c3257" expt="G6sulfate" label="g6sulfate" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: g6sulfate" uid="8e0de6c0-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f57e2-dd9e-11e6-b89b-ac72891c3257" expt="ScenarioMIP1" label="scenariomip1" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: scenariomip1" uid="8e0de88c-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e3a6a-dd9e-11e6-b89b-ac72891c3257" expt="G6solar" label="g6solar" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: g6solar" uid="8e0dea30-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e3de4-dd9e-11e6-b89b-ac72891c3257" expt="G7cirrus" label="g7cirrus" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: g7cirrus" uid="8e0debde-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc5c4-dd9e-11e6-b89b-ac72891c3257" expt="historical" label="historical" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: historical" uid="8e0ded82-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e30e2-dd9e-11e6-b89b-ac72891c3257" expt="G1ext" label="g1ext" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: g1ext" uid="8e0def26-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" expt="amip" label="amip" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.2c: amip" uid="8e0df0d4-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f68b8-dd9e-11e6-b89b-ac72891c3257" expt="SSP437" label="ssp437" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: ssp437" uid="8e0df28c-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f65f2-dd9e-11e6-b89b-ac72891c3257" expt="ScenarioMIP2" label="scenariomip2" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: scenariomip2" uid="8e0df43a-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16ef5ae-dd9e-11e6-b89b-ac72891c3257" expt="Lumip8" label="lumip8" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: lumip8" uid="8e0df796-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16ee866-dd9e-11e6-b89b-ac72891c3257" expt="Lumip5" label="lumip5" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: lumip5" uid="8e0df944-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16eec44-dd9e-11e6-b89b-ac72891c3257" expt="Lumip7" label="lumip7" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: lumip7" uid="8e0dfaf2-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc0b0-dd9e-11e6-b89b-ac72891c3257" expt="1pctCO2" label="1pctco2" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: 1pctco2" uid="8e0dfca0-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f5ab2-dd9e-11e6-b89b-ac72891c3257" expt="SSP370" label="ssp370" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: ssp370" uid="8e0dfe62-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d9470-dd9e-11e6-b89b-ac72891c3257" expt="Damip3" label="damip3" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: damip3" uid="8e0e0010-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d8c96-dd9e-11e6-b89b-ac72891c3257" expt="Damip2" label="damip2" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: damip2" uid="8e0e01be-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d9c7c-dd9e-11e6-b89b-ac72891c3257" expt="Damip5" label="damip5" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: damip5" uid="8e0e036c-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16da38e-dd9e-11e6-b89b-ac72891c3257" expt="Damip6" label="damip6" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: damip6" uid="8e0e086c-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16cd3fa-dd9e-11e6-b89b-ac72891c3257" expt="C4mip2" label="c4mip2" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: c4mip2" uid="8e0e0f74-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" expt="amip" label="amip" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff76a8-33eb-11e7-80d4-5404a60d96b5" title="AgMIP.1: amip" uid="8e0e1b40-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16f68b8-dd9e-11e6-b89b-ac72891c3257" expt="SSP437" label="ssp437" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dffec50-33eb-11e7-80d4-5404a60d96b5" title="ISI-MIP.1: ssp437" uid="8e0eebc4-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d2f3a-dd9e-11e6-b89b-ac72891c3257" expt="esmhistbgc" label="esmhistbgc" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dffec50-33eb-11e7-80d4-5404a60d96b5" title="ISI-MIP.1: esmhistbgc" uid="8e0eed54-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16ed97a-dd9e-11e6-b89b-ac72891c3257" expt="Lumip2" label="lumip2" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dffec50-33eb-11e7-80d4-5404a60d96b5" title="ISI-MIP.1: lumip2" uid="8e0ef1f0-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16f5ab2-dd9e-11e6-b89b-ac72891c3257" expt="SSP370" label="ssp370" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dffec50-33eb-11e7-80d4-5404a60d96b5" title="ISI-MIP.1: ssp370" uid="8e0f0050-33eb-11e7-80d4-5404a60d96b5"/>
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<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" expt="amip" label="amip" mip="VIACSAB" nenmax="-1" ny="160" nymax="-1" preset="-1" rlid="8dff05ce-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1: amip" uid="8e102642-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f68b8-dd9e-11e6-b89b-ac72891c3257" expt="SSP437" label="ssp437" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: ssp437" uid="8e1027fa-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d2f3a-dd9e-11e6-b89b-ac72891c3257" expt="esmhistbgc" label="esmhistbgc" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: esmhistbgc" uid="8e102994-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f65f2-dd9e-11e6-b89b-ac72891c3257" expt="ScenarioMIP2" label="scenariomip2" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: scenariomip2" uid="8e102b1a-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f792a-dd9e-11e6-b89b-ac72891c3257" expt="ScenarioMIP3" label="scenariomip3" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: scenariomip3" uid="8e102cbe-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc0b0-dd9e-11e6-b89b-ac72891c3257" expt="1pctCO2" label="1pctco2" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: 1pctco2" uid="8e102e4e-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d1d60-dd9e-11e6-b89b-ac72891c3257" expt="esm1pcrad" label="esm1pcrad" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: esm1pcrad" uid="8e102fde-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e8682-dd9e-11e6-b89b-ac72891c3257" expt="Ismip63" label="ismip63" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: ismip63" uid="8e103164-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e77fa-dd9e-11e6-b89b-ac72891c3257" expt="Ismip62" label="ismip62" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: ismip62" uid="8e1032f4-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e6e9a-dd9e-11e6-b89b-ac72891c3257" expt="Ismip61" label="ismip61" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: ismip61" uid="8e10347a-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16bfe76-dd9e-11e6-b89b-ac72891c3257" expt="esm1pcbgc" label="esm1pcbgc" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: esm1pcbgc" uid="8e10360a-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f5ab2-dd9e-11e6-b89b-ac72891c3257" expt="SSP370" label="ssp370" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: ssp370" uid="8e103790-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d9470-dd9e-11e6-b89b-ac72891c3257" expt="Damip3" label="damip3" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: damip3" uid="8e103920-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d8c96-dd9e-11e6-b89b-ac72891c3257" expt="Damip2" label="damip2" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: damip2" uid="8e103aa6-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d9c7c-dd9e-11e6-b89b-ac72891c3257" expt="Damip5" label="damip5" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: damip5" uid="8e103c54-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d9880-dd9e-11e6-b89b-ac72891c3257" expt="Damip4" label="damip4" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: damip4" uid="8e103dda-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16dae9c-dd9e-11e6-b89b-ac72891c3257" expt="Damip7" label="damip7" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: damip7" uid="8e103f6a-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16da38e-dd9e-11e6-b89b-ac72891c3257" expt="Damip6" label="damip6" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: damip6" uid="8e1040fa-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16dbbe4-dd9e-11e6-b89b-ac72891c3257" expt="DcppA" label="dcppa" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: dcppa" uid="8e10428a-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16dcb34-dd9e-11e6-b89b-ac72891c3257" expt="DcppB" label="dcppb" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: dcppb" uid="8e104410-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f6188-dd9e-11e6-b89b-ac72891c3257" expt="SSP126" label="ssp126" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: ssp126" uid="8e1045b4-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16cd3fa-dd9e-11e6-b89b-ac72891c3257" expt="C4mip2" label="c4mip2" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: c4mip2" uid="8e104744-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d3098-dd9e-11e6-b89b-ac72891c3257" expt="C4mip4" label="c4mip4" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: c4mip4" uid="8e1048ca-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e16de-dd9e-11e6-b89b-ac72891c3257" expt="Fafmip2" label="fafmip2" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: fafmip2" uid="8e104a50-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e0d74-dd9e-11e6-b89b-ac72891c3257" expt="Fafmip1" label="fafmip1" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: fafmip1" uid="8e104bd6-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e3632-dd9e-11e6-b89b-ac72891c3257" expt="G6sulfate" label="g6sulfate" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: g6sulfate" uid="8e104d66-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16f57e2-dd9e-11e6-b89b-ac72891c3257" expt="ScenarioMIP1" label="scenariomip1" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: scenariomip1" uid="8e104eec-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d45ce-dd9e-11e6-b89b-ac72891c3257" expt="amipFuture" label="amipfuture" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: amipfuture" uid="8e1050cc-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16d3ef8-dd9e-11e6-b89b-ac72891c3257" expt="amip4K" label="amip4k" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: amip4k" uid="8e10525c-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e3a6a-dd9e-11e6-b89b-ac72891c3257" expt="G6solar" label="g6solar" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: g6solar" uid="8e1054aa-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e3de4-dd9e-11e6-b89b-ac72891c3257" expt="G7cirrus" label="g7cirrus" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: g7cirrus" uid="8e1056c6-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc5c4-dd9e-11e6-b89b-ac72891c3257" expt="historical" label="historical" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: historical" uid="8e105888-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16e30e2-dd9e-11e6-b89b-ac72891c3257" expt="G1ext" label="g1ext" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: g1ext" uid="8e105a18-33eb-11e7-80d4-5404a60d96b5"/>
<item esid="f16fc344-dd9e-11e6-b89b-ac72891c3257" expt="amip" label="amip" mip="VIACSAB" nenmax="1" ny="160" nymax="160" preset="-1" rlid="8dff5f1a-33eb-11e7-80d4-5404a60d96b5" title="FISH-MIP.1c: amip" uid="8e105ba8-33eb-11e7-80d4-5404a60d96b5"/>
</requestItem>
<exptgroup id="exg" label="exptgroup" title="1.9 Experiment Group" uid="SECTION:exptgroup" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item label="Cfmip2" ntot="102" tierMin="1" uid="f16d4718-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Damip8" ntot="1026" tierMin="3" uid="f16db536-dd9e-11e6-b89b-ac72891c3257"/>
<item label="DcppC3" ntot="300" tierMin="1" uid="f16dfb22-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Fafmip1" ntot="210" tierMin="1" uid="f16e0d74-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Gmmip2" ntot="864" tierMin="2" uid="f16e220a-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Geomip2" ntot="486" tierMin="1" uid="f16e3790-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Geomip3" ntot="243" tierMin="1" uid="f16e3f42-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Ismip61" ntot="1500" tierMin="1" uid="f16e6e9a-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Ismip62" ntot="1260" tierMin="1" uid="f16e77fa-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Ismip64" ntot="858" tierMin="2" uid="f16e9118-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Ismip7" ntot="300" tierMin="1" uid="f16ea284-dd9e-11e6-b89b-ac72891c3257"/>
<item label="LmipH" ntot="507" tierMin="1" uid="f16eab80-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Lumip2" ntot="1650" tierMin="2" uid="f16ed97a-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Lumip8" ntot="95" tierMin="1" uid="f16ef5ae-dd9e-11e6-b89b-ac72891c3257"/>
<item label="OmipA" ntot="310" tierMin="1" uid="f16efa68-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Pmip3" ntot="1000" tierMin="1" uid="f16f0c56-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Pmip4" ntot="100" tierMin="1" uid="f16f108e-dd9e-11e6-b89b-ac72891c3257"/>
<item label="RfmipSpaerErfHist" ntot="1320" tierMin="2" uid="f16f50bc-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Solarmip2" ntot="165" tierMin="1" uid="f16f823a-dd9e-11e6-b89b-ac72891c3257"/>
<item label="DECK" ntot="1540" tierMin="1" uid="f16fbb42-dd9e-11e6-b89b-ac72891c3257"/>
<item label="C4mip1" ntot="140" tierMin="1" uid="f16c432c-dd9e-11e6-b89b-ac72891c3257"/>
<item label="C4mip2" ntot="85" tierMin="1" uid="f16cd3fa-dd9e-11e6-b89b-ac72891c3257"/>
<item label="DcppA" ntot="6260" tierMin="1" uid="f16dbbe4-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Fafmip2" ntot="140" tierMin="2" uid="f16e16de-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Gmmip1" ntot="144" tierMin="1" uid="f16e1e04-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Geomip4" ntot="70" tierMin="2" uid="f16e4352-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Geomip5" ntot="72" tierMin="2" uid="f16e584c-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Geomip6" ntot="400" tierMin="2" uid="f16e5c3e-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Highresmip1" ntot="64" tierMin="1" uid="f16e62ce-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Highresmip2" ntot="200" tierMin="2" uid="f16e66d4-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Highresmip3" ntot="36" tierMin="3" uid="f16e6ac6-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Ismip65" ntot="36" tierMin="3" uid="f16e9ab4-dd9e-11e6-b89b-ac72891c3257"/>
<item label="LmipF" ntot="258" tierMin="2" uid="f16eb738-dd9e-11e6-b89b-ac72891c3257"/>
<item label="LFMIP" ntot="2534" tierMin="1" uid="f16ebb02-dd9e-11e6-b89b-ac72891c3257"/>
<item label="LfmipP" ntot="350" tierMin="2" uid="f16eceee-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Lumip1" ntot="160" tierMin="1" uid="f16ed2ea-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Lumip4" ntot="495" tierMin="1" uid="f16ee168-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Lumip7" ntot="380" tierMin="1" uid="f16eec44-dd9e-11e6-b89b-ac72891c3257"/>
<item label="OmpiB" ntot="311" tierMin="2" uid="f16eff5e-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Pmip1" ntot="100" tierMin="1" uid="f16f03aa-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Pmip2" ntot="200" tierMin="1" uid="f16f080a-dd9e-11e6-b89b-ac72891c3257"/>
<item label="RfmipIrfGhg" ntot="0" tierMin="1" uid="f16f18ea-dd9e-11e6-b89b-ac72891c3257"/>
<item label="RfmipIrfAer" ntot="0" tierMin="1" uid="f16f1d40-dd9e-11e6-b89b-ac72891c3257"/>
<item label="RfmipErfHist" ntot="3012" tierMin="2" uid="f16f3406-dd9e-11e6-b89b-ac72891c3257"/>
<item label="RfmipSpaer" ntot="1320" tierMin="1" uid="f16f411c-dd9e-11e6-b89b-ac72891c3257"/>
<item label="RfmipSpaerErfPday" ntot="240" tierMin="2" uid="f16f49aa-dd9e-11e6-b89b-ac72891c3257"/>
<item label="ScenarioMIP1" ntot="1118" tierMin="1" uid="f16f57e2-dd9e-11e6-b89b-ac72891c3257"/>
<item label="ScenarioMIP2" ntot="855" tierMin="2" uid="f16f65f2-dd9e-11e6-b89b-ac72891c3257"/>
<item label="ScenarioMIP3" ntot="86" tierMin="3" uid="f16f792a-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Solarmip1" ntot="513" tierMin="1" uid="f16f7d62-dd9e-11e6-b89b-ac72891c3257"/>
<item label="VolcLong" ntot="540" tierMin="1" uid="f16f8b72-dd9e-11e6-b89b-ac72891c3257"/>
<item label="VolcPinatubo" ntot="300" tierMin="1" uid="f16f90b8-dd9e-11e6-b89b-ac72891c3257"/>
<item label="VolcCluster" ntot="555" tierMin="2" uid="f16f9e8c-dd9e-11e6-b89b-ac72891c3257"/>
<item label="CMIP6" ntot="332" tierMin="1" uid="f16fc70e-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Cfmip1" ntot="72" tierMin="1" uid="f16d404c-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Cfmip4" ntot="246" tierMin="2" uid="f16d72d8-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Damip4" ntot="160" tierMin="2" uid="f16d9880-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Damip6" ntot="1539" tierMin="3" uid="f16da38e-dd9e-11e6-b89b-ac72891c3257"/>
<item label="DcppC2" ntot="200" tierMin="3" uid="f16df71c-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Gmmip3" ntot="105" tierMin="3" uid="f16e28d6-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Ismip63" ntot="495" tierMin="2" uid="f16e8682-dd9e-11e6-b89b-ac72891c3257"/>
<item label="SlabControl" ntot="30" tierMin="3" uid="f16fb11a-dd9e-11e6-b89b-ac72891c3257"/>
<item label="C4mip3" ntot="420" tierMin="2" uid="f16d22b0-dd9e-11e6-b89b-ac72891c3257"/>
<item label="C4mip4" ntot="710" tierMin="2" uid="f16d3098-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Cfmip3" ntot="837" tierMin="2" uid="f16d5672-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Damip2" ntot="1026" tierMin="1" uid="f16d8c96-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Damip3" ntot="513" tierMin="1" uid="f16d9470-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Damip5" ntot="513" tierMin="2" uid="f16d9c7c-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Damip7" ntot="160" tierMin="3" uid="f16dae9c-dd9e-11e6-b89b-ac72891c3257"/>
<item label="DcppB" ntot="50" tierMin="1" uid="f16dcb34-dd9e-11e6-b89b-ac72891c3257"/>
<item label="DcppC1" ntot="3550" tierMin="1" uid="f16dcf30-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Geomip1" ntot="300" tierMin="1" uid="f16e3222-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Ismip66" ntot="100" tierMin="3" uid="f16e9ea6-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Lumip3" ntot="165" tierMin="1" uid="f16edd76-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Lumip5" ntot="165" tierMin="3" uid="f16ee866-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Pmip5" ntot="100" tierMin="1" uid="f16f14c6-dd9e-11e6-b89b-ac72891c3257"/>
<item label="RfmipErfPday" ntot="180" tierMin="1" uid="f16f21a0-dd9e-11e6-b89b-ac72891c3257"/>
<item label="Solarmip3" ntot="165" tierMin="2" uid="f16f8668-dd9e-11e6-b89b-ac72891c3257"/>
<item label="VolcPinatuboIni" ntot="50" tierMin="3" uid="f16facec-dd9e-11e6-b89b-ac72891c3257"/>
</exptgroup>
<miptable id="mtb" label="miptable" title="2.4 MIP tables" uid="SECTION:miptable" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item description="Variables with no time dependency" frequency="fx" label="fx" title="Fixed variables" uid="MIPtable::fx"/>
<item description="Annual mean variables on the ocean grid." frequency="yr" label="Oyr" title="Annual ocean variables" uid="MIPtable::Oyr"/>
<item description="Monthly Mean Ocean Fields, Including Biogechemical Field" frequency="mon" label="Omon" title="Monthly ocean variables" uid="MIPtable::Omon"/>
<item description="Monthly Mean Atmospheric Fields and Some Surface Field" frequency="mon" label="Amon" title="Montly atmospheric variables (excluding composition and radiation)" uid="MIPtable::Amon"/>
<item description="Monthly Mean Land Cryosphere Fields" frequency="mon" label="LImon" title="Monthly land ice" uid="MIPtable::LImon"/>
<item description="Monthly Mean Land Fields, Including Physical, Vegetation, Soil, and Biogeochemical Variables" frequency="mon" label="Lmon" title="Monthly land variables" uid="MIPtable::Lmon"/>
<item description="Monthly Offline Cloud Diagnostic Fields" frequency="mon" label="cfOff" title="Offline diagnostics for cloud forcing analysis" uid="MIPtable::cfOff"/>
<item description="Daily Mean Atmosphere, Ocean and Surface Fields" frequency="day" label="Oday" title="Daily  ocean data" uid="MIPtable::Oday"/>
<item description="" frequency="" label="cfDay" title="Daily data associated with cloud forcing" uid="MIPtable::cfDay"/>
<item description="Fields (Sampled Every 6 Hours) for Driving Regional Models " frequency="6hr" label="6hrLev" title="6-hourly atmospheric data on model levels" uid="MIPtable::6hrLev"/>
<item description="Fields (Sampled Every 6 Hours) for Storm-Track Analysis and other Advanced Diagnostic Applications" frequency="6hr" label="6hrPlev" title="6-hourly atmospheric data on pressure levels" uid="MIPtable::6hrPlev"/>
<item frequency="???" label="emMon" title="emMon" uid="MIPtable::emMon"/>
<item frequency="???" label="aermonthly" title="aermonthly" uid="MIPtable::aermonthly"/>
<item frequency="???" label="cfMon" title="cfMon" uid="MIPtable::cfMon"/>
<item frequency="???" label="em1hrclimmon" title="em1hrclimmon" uid="MIPtable::em1hrclimmon"/>
<item frequency="???" label="IfxAnt" title="IfxAnt" uid="MIPtable::IfxAnt"/>
<item frequency="???" label="aerhourly" title="aerhourly" uid="MIPtable::aerhourly"/>
<item frequency="???" label="em1hr" title="em1hr" uid="MIPtable::em1hr"/>
<item frequency="???" label="em3hr" title="em3hr" uid="MIPtable::em3hr"/>
<item frequency="???" label="aermonthlyz" title="aermonthlyz" uid="MIPtable::aermonthlyz"/>
<item frequency="???" label="Odec" title="Odec" uid="MIPtable::Odec"/>
<item frequency="???" label="cf3hr" title="cf3hr" uid="MIPtable::cf3hr"/>
<item frequency="???" label="3hr" title="3hr" uid="MIPtable::3hr"/>
<item frequency="???" label="SImon" title="SImon" uid="MIPtable::SImon"/>
<item frequency="???" label="IyrGre" title="IyrGre" uid="MIPtable::IyrGre"/>
<item frequency="???" label="emYr" title="emYr" uid="MIPtable::emYr"/>
<item frequency="???" label="cfSites" title="cfSites" uid="MIPtable::cfSites"/>
<item frequency="???" label="emDayZ" title="emDayZ" uid="MIPtable::emDayZ"/>
<item frequency="???" label="emFx" title="emFx" uid="MIPtable::emFx"/>
<item frequency="???" label="aerdaily" title="aerdaily" uid="MIPtable::aerdaily"/>
<item frequency="???" label="emDay" title="emDay" uid="MIPtable::emDay"/>
<item frequency="???" label="SIday" title="SIday" uid="MIPtable::SIday"/>
<item frequency="???" label="emMonZ" title="emMonZ" uid="MIPtable::emMonZ"/>
<item frequency="???" label="6hrLev-aer" title="6hrLev_aer" uid="MIPtable::6hrLev_aer"/>
<item frequency="???" label="Oclim" title="Oclim" uid="MIPtable::Oclim"/>
<item frequency="???" label="Ofx" title="Ofx" uid="MIPtable::Ofx"/>
<item frequency="???" label="6hrPlevPt" title="6hrPlevPt" uid="MIPtable::6hrPlevPt"/>
<item frequency="???" label="day" title="day" uid="MIPtable::day"/>
<item frequency="???" label="emSubhr" title="emSubhr" uid="MIPtable::emSubhr"/>
<item frequency="???" label="IfxGre" title="IfxGre" uid="MIPtable::IfxGre"/>
<item frequency="???" label="em3hrpt" title="em3hrpt" uid="MIPtable::em3hrpt"/>
<item frequency="???" label="em6hrZ" title="em6hrZ" uid="MIPtable::em6hrZ"/>
<item frequency="???" label="ImonGre" title="ImonGre" uid="MIPtable::ImonGre"/>
<item frequency="???" label="ImonAnt" title="ImonAnt" uid="MIPtable::ImonAnt"/>
<item frequency="???" label="IyrAnt" title="IyrAnt" uid="MIPtable::IyrAnt"/>
<item frequency="???" label="6hrPlevpt" title="6hrPlevpt" uid="MIPtable::6hrPlevpt"/>
</miptable>
<CMORvar id="cmv" label="CMORvar" title="1.3 CMOR Variable" uid="SECTION:CMORvar" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." frequency="3hr" label="reffrainc" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="37" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Hydrometeor Effective Radius of Convective Rainfall" type="real" uid="bab4e8d4-e5dd-11e5-8482-ac72891c3257" vid="60439f9beed734902e807ce8c572291c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as &quot;where ice_free_sea over sea&quot;" frequency="mon" label="hfsso" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="92" shuffle="" stid="f948921c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Sensible Heat Flux" type="real" uid="ada95ca6-b17f-11e6-8975-5404a60d96b5" vid="e60a812c3a4351f1747a8bf9fb48aec8"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="fddtdic" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="177" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Net Dissolved Inorganic Carbon" type="real" uid="baa123da-e5dd-11e5-8482-ac72891c3257" vid="1333394a296e7f8af6c9bad15cb9778d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="pso" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="CMIP5 had units of dbar.  CMIP6 uses Pa. Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="5" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Sea Water Pressure at Sea Water Surface" type="real" uid="baa4ff96-e5dd-11e5-8482-ac72891c3257" vid="d94709e6b579bccccccc914ba3531feb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Model prognostic salinity at bottom-most model grid cell" frequency="mon" label="sob" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longititude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="23" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="sea water salinity at sea floor" type="real" uid="baa55f4a-e5dd-11e5-8482-ac72891c3257" vid="0086e9daf8d4fb6cb305e03119d2ac2d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ch4" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="For some simulations (e.g., prescribed concentration pi-control run), this will not vary from one year to the next, and so report instead the variable described in the next table entry.  If CH4 is spatially uniform, omit this field, but report Global Mean Mole Fraction of CH4 (see the table entry after the next one).   Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="75" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Mole Fraction of CH4" type="real" uid="baa9d642-e5dd-11e5-8482-ac72891c3257" vid="7f4c49e8abe3230e87fa7299b73448fa"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="hfibthermds" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="In general this should be reported as a function of depth, (i.e.,  it will be a function of the generic &quot;XYZ&quot; dimensions).  Include enough depth levels to represent  the non-zero values of this field everywhere on the globe. Report on native horizontal grid. If a function of depth, perform online remapping to depth or pressure, if not native vertical grid." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="88" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Heat Flux into Sea Water due to Iceberg Thermodynamics" type="real" uid="baa6a18e-e5dd-11e5-8482-ac72891c3257" vid="bd938fec017c18d3eee106db55f924c5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="cls" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="43" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Stratiform Cloud Area Fraction" type="real" uid="baaac764-e5dd-11e5-8482-ac72891c3257" vid="2cd1940e7201d5adb02ba157a74fc33e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="od550dust" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dust aod@550nm" type="float" uid="19bf97d8-81b1-11e6-92de-ac72891c3257" vid="6bc406259290f4e4beaaaf960455d779"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at the top of the atmosphere" frequency="subhr" label="rsdt" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1041" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="TOA Incident Shortwave Radiation" type="real" uid="800916b4-f906-11e6-a176-5404a60d96b5" vid="a21e250a10f96b1c1ad6d742206a157e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the prescribed anthropogenic CO2 flux from fossil fuel use, including cement production, and flaring (but not from land-use changes, agricultural burning, forest regrowth, etc.)" frequency="subhr" label="fco2fos" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1056" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Carbon Mass Flux into Atmosphere Due to Fossil Fuel Emissions of CO2" type="real" uid="800a3d46-f906-11e6-a176-5404a60d96b5" vid="5e49c0b73ac161d5e5dd05173416c400"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Y-ward mass transport from residual mean (resolved plus parameterized) advective transport." frequency="mon" label="vmo" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="38" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_3d" title="Ocean Mass Y Transport" type="real" uid="baa598c0-e5dd-11e5-8482-ac72891c3257" vid="f7fdcc15d14c0066a9590e4bce820056"/>
<item defaultPriority="1" deflate="" deflate_level="" description="mass of ice water in the column divided by the area of the column (not just the area of the cloudy portion of the column). Includes precipitating frozen hydrometeors ONLY if the precipitating hydrometeor affects the calculation of radiative transfer in model." frequency="mon" label="clivi" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="49" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Ice Water Path" type="real" uid="baaa9852-e5dd-11e5-8482-ac72891c3257" vid="73c496f5669cc122cf1cddfe4df2a27a"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This variable measures the virtual salt flux into sea water due to the melting of sea ice. It is set to zero in models which receive a real water flux." frequency="mon" label="vsfsit" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean seaIce" mtid="MIPtable::Omon" positive="" processing="The priority set by the WGOMD was 2 for this field.  The sea-ice folks requested that the priority be raised to 1. Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="74" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Virtual Salt Flux into Sea Water due to Sea Ice Thermodynamics" type="real" uid="baa65648-e5dd-11e5-8482-ac72891c3257" vid="d0c290e7deb148591b62f8f050a885c2"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrxylo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="30" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer XY Laplacian Diffusivity" type="real" uid="baabdeec-e5dd-11e5-8482-ac72891c3257" vid="478c43820503be64675fb49227d2f999"/>
<item defaultPriority="1" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by bare soil." frequency="mon" label="baresoilFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="30" shuffle="" stid="fa22e74c-267c-11e7-9bed-ac72891c3257" title="Bare Soil Fraction" type="real" uid="baa84fd4-e5dd-11e5-8482-ac72891c3257" vid="9cdb8d54d49e98acadd87e2a1139225e"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton nitrogen component concentrations" frequency="yr" label="phyn" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="46" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Total Phytoplankton expressed as Nitrogen in sea water" type="real" uid="ba9e60aa-e5dd-11e5-8482-ac72891c3257" vid="80f337469efdd0d5392ad995a90fd15c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limnpico" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="115" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Nitrogen limitation of Picophytoplankton" type="real" uid="baa01f62-e5dd-11e5-8482-ac72891c3257" vid="fd9db3b1f9e7f5e778bebf3c16a344f6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="psl" mipTable="day" mipTableSection="day_oth" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_oth" rowIndex="19" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Sea Level Pressure" type="real" uid="bab491f4-e5dd-11e5-8482-ac72891c3257" vid="3d23c359f44d6a153c4dcab9e07d7cb6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hcho" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Formaldehyde volume mixing ratio" type="float" uid="19be2006-81b1-11e6-92de-ac72891c3257" vid="fe6bdb96-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="cltcalipso" mipTable="cfOff" modeling_realm="atmos" mtid="MIPtable::cfOff" positive="" prov="cfOff ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="CALIPSO Total Cloud Fraction" type="real" uid="baaaf658-e5dd-11e5-8482-ac72891c3257" vid="ce9ab9b945fcc86013ad10431d8f252e"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." frequency="3hr" label="reffclwc" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="29" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Hydrometeor Effective Radius of Convective Cloud Liquid Water" type="real" uid="bab4dac4-e5dd-11e5-8482-ac72891c3257" vid="7aa8f285b17a5bcfce416f19c29d6d72"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertical/dianeutral diffusivity applied to prognostic salinity field." frequency="yr" label="difvso" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="26" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="ocean vertical salt diffusivity" type="real" uid="baa4b0b8-e5dd-11e5-8482-ac72891c3257" vid="52b1076476b074a18a91b9da1baa6bc3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="po4os" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="34" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Total Dissolved Inorganic Phosphorus Concentration" type="real" uid="c919320e-c5e8-11e6-84e6-5404a60d96b5" vid="c96dd518-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="ta" mipTable="6hrPlevPt" modeling_realm="atmos" mtid="MIPtable::6hrPlevPt" positive="" processing="on the following pressure levels: 850, 500, 250 hPa" prov="6hrPlev ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f7e9888a-562c-11e6-a2a4-ac72891c3257" title="Air Temperature" type="real" uid="6a35d178-aa6a-11e6-9736-5404a60d96b5" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="1" deflate="" deflate_level="" description="commonly referred to as &quot;omega&quot;, this represents the vertical component of velocity in pressure coordinates (positive down)" frequency="day" label="wap" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="49" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="omega (=dp/dt)" type="real" uid="babd0ad2-e5dd-11e5-8482-ac72891c3257" vid="51fb29dd55442361fa9c5dbe23aca9c6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rsu" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="Report on model half-levels (i.e., interfaces between model layers)." prov="cfSites ((isd.003))" provNote="" rowIndex="27" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Upwelling Shortwave Radiation" type="real" uid="a954f742-817c-11e6-a4e2-5404a60d96b5" vid="c323f38340e4846931ad4891232d839d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Temperature at surface" frequency="hr" label="tas" mipTable="aerhourly" mipTableSection="aerhourly" modeling_realm="atmos" mtid="MIPtable::aerhourly" positive="" prov="aerhourly ((isd.003))" provNote="aerhourly" rowIndex="-1" shuffle="" stid="af234522-1e00-11e7-a625-5404a60d96b5" title="Surface Temperature" type="float" uid="01d5550a-c792-11e6-aa58-5404a60d96b5" vid="5c4978e802ba55d5a298cf1b3bdc2b3a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="va" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Northward Wind" type="float" uid="fda662f6-96ec-11e6-b81e-c9e268aff03a" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton phosphorus components" frequency="yr" label="phyp" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="47" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Total Phytoplankton expressed as Phosphorus in sea water" type="real" uid="ba9e64ec-e5dd-11e5-8482-ac72891c3257" vid="1ae710e405acc14b368f55d9205be258"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="intpppico" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="132" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Net Primary Mole Productivity of Carbon by Picophytoplankton" type="real" uid="baa0749e-e5dd-11e5-8482-ac72891c3257" vid="e5287110-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from parameterized eddy advection (all forms of eddy advection). Reported only for models that use conservative temperature as prognostic field." frequency="yr" label="ocontemppadvect" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="15" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water conservative temperature expressed as heat content due to parameterized eddy advection" type="real" uid="baa4569a-e5dd-11e5-8482-ac72891c3257" vid="c172481027367670eaf1e53fb8d2e841"/>
<item defaultPriority="2" deflate="" deflate_level="" description="where land over land: this is computed as the total mass of liquid water contained interstitially within the snow layer of the land portion of a grid cell divided by the area of the land portion of the cell." frequency="mon" label="lwsnl" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Liquid Water Content of Snow Layer" type="real" uid="bab0f1a2-e5dd-11e5-8482-ac72891c3257" vid="c7452587dbc0d44ad81fc174a656ecea"/>
<item defaultPriority="2" deflate="" deflate_level="" description="carbon  concentration from the microzooplankton (&lt;20 um) component alone" frequency="mon" label="zmicro" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1021" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Microzooplankton expressed as Carbon in sea water" type="real" uid="c91b3dba-c5e8-11e6-84e6-5404a60d96b5" vid="e9dc036ef43db84bc4651ce95b0fed94"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of salt content for a grid cell from residual mean  (sum of Eulerian mean + parameterized eddy-induced)  advection." frequency="yr" label="osaltrmadvect" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="20" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water salinity expressed as salt content due to residual mean advection" type="real" uid="1aaffce0-b006-11e6-9289-ac72891c3257" vid="4f1bd1a2-12cc-11e6-b2bc-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ch4" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="CH4 volume mixing ratio" type="float" uid="fda6dd26-96ec-11e6-b81e-c9e268aff03a" vid="7f4c49e8abe3230e87fa7299b73448fa"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="monClim" label="n2oClim" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="Report only for simulations (e.g., prescribed concentration pi-control run), in which the N2O does not vary from one year to the next. Report 12 monthly values, starting with January, even if the values don't vary seasonally.  When calling CMOR, identify this variable as n2oglobal, not n2o.   If  N2O is spatially uniform, omit this field, but report Global Mean Mole Fraction of N2O (see the table entry after the next).  Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="80" shuffle="" stid="e9f98ed8-c1ce-11e6-8067-ac72891c3257" title="Mole Fraction of N2O" type="real" uid="a92e4ec6-817c-11e6-a4e2-5404a60d96b5" vid="942125e5a461fef57b1477b9a2bd5fa0"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net biological terms in time rate of change of dissolved inorganic iron" frequency="mon" label="fbddtdife" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="186" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Dissolved Inorganic Iron due to Biological Activity" type="real" uid="baa149aa-e5dd-11e5-8482-ac72891c3257" vid="52ebeea7464b9fc011a92f21e65d6a7a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the prescribed anthropogenic CO2 flux from fossil fuel use, including cement production, and flaring (but not from land-use changes, agricultural burning, forest regrowth, etc.)" frequency="mon" label="fco2fos" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" processing="This is requested only for the emission-driven coupled carbon climate model runs." prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="56" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Carbon Mass Flux into Atmosphere Due to Fossil Fuel Emissions of CO2" type="real" uid="baade44e-e5dd-11e5-8482-ac72891c3257" vid="5e49c0b73ac161d5e5dd05173416c400"/>
<item defaultPriority="1" deflate="" deflate_level="" description="AOD from the ambient aerosls (i.e., includes aerosol water).  Does not include AOD from stratospheric aerosols if these are prescribed but includes other possible background aerosol types. Needs a comment attribute &quot;wavelength: 440 nm&quot;" frequency="mon" label="od440aer" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="ambient aerosol optical thickness at 440 nm" type="float" uid="19beeb4e-81b1-11e6-92de-ac72891c3257" vid="c5331238e635e9c913da1eb247859206"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rsuscs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1039" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Upwelling Clear-Sky Shortwave Radiation" type="real" uid="8008f0ee-f906-11e6-a176-5404a60d96b5" vid="90df05fe3dcd9fe0c9b48aaa74b5e9e2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at 500 hPa level; commonly referred to as &quot;omega&quot;, this represents the vertical component of velocity in pressure coordinates (positive down)" frequency="day" label="wap500" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="26" shuffle="" stid="f7e53744-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="omega (=dp/dt)" type="real" uid="babd06a4-e5dd-11e5-8482-ac72891c3257" vid="e0a1b4528bdd009ada638396c9537baf"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="tntr" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="38" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Radiative Heating" type="real" uid="a9557802-817c-11e6-a4e2-5404a60d96b5" vid="93a0ba1f23bfc41b720ea68951d28144"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Total family (the sum of all appropriate species in the model); list the species in the netCDF header, e.g. NOy = N + NO + NO2 + NO3 + HNO3 + 2N2O5 + HNO4 + ClONO2 + BrONO2 Definition: Total reactive nitrogen; usually includes atomic nitrogen (N), nitric oxide (NO), NO2, nitrogen trioxide (NO3), dinitrogen radical (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), BrONO2, ClONO2 add comment attribute with detailed description about how the model calculates these fields" frequency="mon" label="noy" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Total reactive nitrogen volume mixing ratio" type="float" uid="fda6b9c2-96ec-11e6-b81e-c9e268aff03a" vid="e29fbc42-b095-11e6-aab6-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of O2 (positive into ocean)" frequency="mon" label="fgo2" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="162" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Flux of O2" type="real" uid="baa0e4ba-e5dd-11e5-8482-ac72891c3257" vid="02e40424bc4b63c1ae535165def98421"/>
<item defaultPriority="2" deflate="" deflate_level="" description="gas exchange flux of CFC11" frequency="mon" label="fgcfc11" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="7" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Surface Downward CFC11 flux" type="real" uid="ba9b3b46-e5dd-11e5-8482-ac72891c3257" vid="0940cbee6105037e4b7aa5579004f124"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="co3satcalc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="54" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Carbonate ion Concentration for sea water in equilibrium with pure Calcite" type="real" uid="ba9e79d2-e5dd-11e5-8482-ac72891c3257" vid="28907f4f1855d3d22166c87b8e5300be"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="hfsnthermds" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="In general this should be reported as a function of depth, (i.e.,  it will be a function of the generic &quot;XYZ&quot; dimensions).  Include enough depth levels to represent  the non-zero values of this field everywhere on the globe. Report on native horizontal grid. If a function of depth, perform online remapping to depth or pressure, if not native vertical grid." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="84" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Heat Flux into Sea Water due to Snow Thermodynamics" type="real" uid="baa68852-e5dd-11e5-8482-ac72891c3257" vid="22fae57fa6f2e7e2744a3a9fe3c0dbca"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="cLitterBelow" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="56" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Below-Ground Litter" type="real" uid="baa8c590-e5dd-11e5-8482-ac72891c3257" vid="226e0454adb91fa1d508255d66ed8daf"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton carbon component concentrations.  In most (all?) cases this is the sum of phycdiat and phycmisc (i.e., &quot;Diatom Carbon Concentration&quot; and &quot;Non-Diatom Phytoplankton Carbon Concentration&quot;" frequency="mon" label="phycos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="11" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Phytoplankton Carbon Concentration" type="real" uid="c917d274-c5e8-11e6-84e6-5404a60d96b5" vid="314e3eb73c9ccbdd132899317d87d856"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Store flux as Nitrogen. NOx=NO+NO2. Integrate 3D emission field vertically to 2d field." frequency="mon" label="eminox" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of nox" type="float" uid="19bfbd76-81b1-11e6-92de-ac72891c3257" vid="9a6a4f8bd6adfd9c68cb6a7961f295ea"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Total family (the sum of all appropriate species in the model) ; list the species in the netCDF header, e.g. Cly = HCl + ClONO2 + HOCl + ClO + Cl + 2*Cl2O2 +2Cl2 + OClO + BrCl Definition: Total inorganic stratospheric chlorine (e.g., HCl, ClO) resulting from degradation of chlorine-containing source gases (CFCs, HCFCs, VSLS), and natural inorganic chlorine sources (e.g., sea salt and other aerosols) add comment attribute with detailed description about how the model calculates these fields" frequency="mon" label="cly" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Total inorganic chlorine volume mixing ratio" type="float" uid="fda6e992-96ec-11e6-b81e-c9e268aff03a" vid="afef6490-b096-11e6-aab6-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="monClim" label="ch4globalClim" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="Report only for simulations (e.g., prescribed concentration pi-control run), in which the CH4 does not vary from one year to the next. Report 12 monthly values, starting with January, even if the values don't vary seasonally.  When calling CMOR, identify this variable as ch4globalClim, not ch4global.  If CH4 is spatially nonuniform, omit this field, but report Global Mean Mole Fraction of CH4 (see the table entry before the previous one).   Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="78" shuffle="" stid="e9f96386-c1ce-11e6-8067-ac72891c3257" title="Global Mean Mole Fraction of CH4" type="real" uid="a92e3b16-817c-11e6-a4e2-5404a60d96b5" vid="dbc244f3e0bae5b1397ad42fb6cd6db3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration at preindustrial atmospheric xCO2" frequency="yr" label="dissicnat" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="5" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Natural Dissolved Inorganic Carbon Concentration" type="real" uid="ba9daf2a-e5dd-11e5-8482-ac72891c3257" vid="2fcdf51262cdbc4279810b7a487b149e"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate organic nitrogen component concentrations" frequency="mon" label="pon" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1042" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Particulate Organic Matter expressed as Nitrogen in sea water" type="real" uid="ba9fd4d0-e5dd-11e5-8482-ac72891c3257" vid="14e5a31ac93e26c50f8c01ed9a032168"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="fLitterSoil" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="48" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Carbon Mass Flux from Litter to Soil" type="real" uid="baad95d4-e5dd-11e5-8482-ac72891c3257" vid="45f5477848196383f1ac8039e0dcfcab"/>
<item defaultPriority="2" deflate="" deflate_level="" description="carbon  concentration from mesozooplankton (20-200 um) component alone" frequency="mon" label="zmeso" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1022" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Mesozooplankton expressed as Carbon in sea water" type="real" uid="c92305ae-c5e8-11e6-84e6-5404a60d96b5" vid="30a7a10d4c71066f19eae9a89ddfafba"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Lateral biharmonic viscosity applied to the momentum equations." frequency="yr" label="difmxybo" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="32" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="ocean momentum xy biharmonic diffusivity" type="real" uid="baa4e8ee-e5dd-11e5-8482-ac72891c3257" vid="84115d24881654a3deceba63b22cba06"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This field is physical, and it arises when rivers carry a nonzero salt content.  Often this is zero, with rivers assumed to be fresh." frequency="mon" label="sfriver" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as mapped onto sphere." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="78" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Salt Flux into Sea Water from Rivers" type="real" uid="baa66746-e5dd-11e5-8482-ac72891c3257" vid="ced45b8b1f2797c54425755202dce533"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is a 3-hour mean flux." frequency="3hr" label="rsuscs" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="up" prov="3hr ((isd.003))" provNote="" rowIndex="33" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Upwelling Clear-Sky Shortwave Radiation" type="real" uid="bab66e70-e5dd-11e5-8482-ac72891c3257" vid="90df05fe3dcd9fe0c9b48aaa74b5e9e2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="longwave heating rates" frequency="mon" label="tntrl" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Longwave heating rate" type="float" uid="01d409fc-c792-11e6-aa58-5404a60d96b5" vid="5917483c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton iron component concentrations" frequency="yr" label="phyfe" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="48" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Total Phytoplankton expressed as Iron in sea water" type="real" uid="ba9e691a-e5dd-11e5-8482-ac72891c3257" vid="87f531b94bd9ca68e33e89d7e3e81be4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Overturning mass streamfunction arising from all advective mass transport processes, resolved and parameterized." frequency="mon" label="msftyyz" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of Y, Z, basin.   Also see note above." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="41" shuffle="" stid="529d9136-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="Ocean Y Overturning Mass Streamfunction" type="real" uid="baa5a662-e5dd-11e5-8482-ac72891c3257" vid="59cc645887ed0a072bb553283e15f732"/>
<item defaultPriority="1" deflate="" deflate_level="" description="height above the geoid; as defined here, &quot;the geoid&quot; is a surface of constant geopotential that, if the ocean were at rest, would coincide with mean sea level. Under this definition, the geoid changes as the mean volume of the ocean changes (e.g., due to glacial melt, or global warming of the ocean).  Reported here is the height above the present-day geoid (0.0 over ocean)." frequency="fx" label="orog" mipTable="fx" modeling_realm="land" mtid="MIPtable::fx" positive="" prov="fx ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f7decc10-562c-11e6-a2a4-ac72891c3257" title="Surface Altitude" type="real" uid="bab2f9d4-e5dd-11e5-8482-ac72891c3257" vid="00e77372e8b909d9a827a0790e991fd9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by crop." frequency="mon" label="cropFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="add scalar coordinate typecrop and add &quot;crop&quot; to the CF area type table.Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="28" shuffle="" stid="fa237568-267c-11e7-9bed-ac72891c3257" title="Crop Fraction" type="real" uid="baab87f8-e5dd-11e5-8482-ac72891c3257" vid="f730de87987b0357d3954c93c4a0c7f7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="vas" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="normally, the the wind component should be reported at the 10 meter height" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="21" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" subGroup="Amon_2d" title="Northward Near-Surface Wind" type="real" uid="babbcd34-e5dd-11e5-8482-ac72891c3257" vid="86b1cd51f370e346ecb20f1e80cb6ea4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="oh" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="OH volume mixing ratio" type="float" uid="19bf1e2a-81b1-11e6-92de-ac72891c3257" vid="609d47152c2ed8122caa2528117aff9a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="ta" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="19" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Air Temperature" type="real" uid="a9549aae-817c-11e6-a4e2-5404a60d96b5" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limndiaz" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="113" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Nitrogen limitation of Diazotrophs" type="real" uid="baa01724-e5dd-11e5-8482-ac72891c3257" vid="df05d7b7c578eeb7aa49c2ef6f79b30f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limirrpico" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="120" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Irradiance limitation of Picophytoplankton" type="real" uid="baa0340c-e5dd-11e5-8482-ac72891c3257" vid="1e8aa2d7958602eef45a81400ab57bd5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Tracer grid-cell mass per unit area used for computing tracer budgets. For Boussinesq models with static ocean grid cell thickness, masscello = rhozero*thickcello, where thickcello is static cell thickness and rhozero is constant Boussinesq reference density. More generally, masscello is time dependent and reported as part of Omon." frequency="fx" label="masscello" mipTable="Ofx" modeling_realm="ocean" mtid="MIPtable::Ofx" positive="" processing="3-d field: report on grid that applies to temperature" prov="Ofx ((isd.003))" provNote="" rowIndex="3" shuffle="" stid="62ee7ee2-1617-11e7-a126-5404a60d96b5" title="Ocean Grid-Cell Mass per area" type="real" uid="baa3ea2a-e5dd-11e5-8482-ac72891c3257" vid="9122e7b627c429163fd0857dc366e14e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the canopy evaporation+sublimation (if present in model)." frequency="mon" label="evspsblveg" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" prov="Lmon ((isd.003))" provNote="" rowIndex="20" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Evaporation from Canopy" type="real" uid="baad6596-e5dd-11e5-8482-ac72891c3257" vid="32ed0e80b1ae2adc7d4fb4b71bce9285"/>
<item defaultPriority="1" deflate="" deflate_level="" description="vertically integrated through the atmospheric column" frequency="mon" label="prw" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="46" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Water Vapor Path" type="real" uid="bab45df6-e5dd-11e5-8482-ac72891c3257" vid="fc637f1c75e58be8a6e4112411a00f36"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="rsdo" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="In general the shortwave flux should be reported as a function of ocean depth, (i.e.,  it will be a function of the generic &quot;XYZ&quot; dimensions).  Include enough depth levels to represent  the non-zero values of this field everywhere on the globe. Report on native horizontal grid. If a function of depth, perform online remapping to depth or pressure, if not native vertical grid." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="94" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Downwelling Shortwave Radiation in Sea Water" type="real" uid="baa6ba98-e5dd-11e5-8482-ac72891c3257" vid="749bcc09df8dd3d042e7954b42970906"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is the in-cloud emissivity obtained by considering only the cloudy portion of the grid cell." frequency="3hr" label="dems" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="43" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Stratiform Cloud Emissivity" type="real" uid="baab981a-e5dd-11e5-8482-ac72891c3257" vid="04666369846efb977098a42584d9bd42"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="bldep" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Boundary Layer Depth" type="float" uid="01d46c6c-c792-11e6-aa58-5404a60d96b5" vid="590e3c7e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon concentration from calcareous (calcite-producing) phytoplankton component alone" frequency="yr" label="phycalc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="18" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Calcareous Phytoplankton expressed as Carbon in sea water" type="real" uid="ba9de666-e5dd-11e5-8482-ac72891c3257" vid="38c7aa97ad0f74e33dfd3f115124d04f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition" frequency="mon" label="drynh4" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of nh4" type="float" uid="19bf936e-81b1-11e6-92de-ac72891c3257" vid="8e67a3e82efbb02a7efe67da456408fa"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="od550aerh2o" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="aerosol water aod@550nm" type="float" uid="19c03616-81b1-11e6-92de-ac72891c3257" vid="3a9ddc45d480891285324a10ce98bc62"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="tntr" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="28" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Air Temperature due to Radiative Heating" type="real" uid="baba617e-e5dd-11e5-8482-ac72891c3257" vid="93a0ba1f23bfc41b720ea68951d28144"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="co3satarag" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="55" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Carbonate ion Concentration for sea water in equilibrium with pure Aragonite" type="real" uid="ba9e7df6-e5dd-11e5-8482-ac72891c3257" vid="065edaa295c376f0e9bc1985bc3f491c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="cCwd" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="54" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Coarse Woody Debris" type="real" uid="baa8a740-e5dd-11e5-8482-ac72891c3257" vid="d6623215ad4c16c43b649e0c17ebad7e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="In some models part of carbon (e.g., root exudate) can go directly into the soil pool without entering litter." frequency="mon" label="fVegSoil" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="49" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Carbon Mass Flux from Vegetation Directly to Soil" type="real" uid="baadac22-e5dd-11e5-8482-ac72891c3257" vid="15fea217c64dbec48b115765548b89ae"/>
<item defaultPriority="2" deflate="" deflate_level="" description="carbon concentration from calcareous (calcite-producing) phytoplankton component alone" frequency="mon" label="phycalc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1018" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Calcareous Phytoplankton expressed as Carbon in sea water" type="real" uid="ba9f74fe-e5dd-11e5-8482-ac72891c3257" vid="38c7aa97ad0f74e33dfd3f115124d04f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="not, in general, the same as mean sea-level pressure" frequency="subhr" label="ps" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1019" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Air Pressure" type="real" uid="80076742-f906-11e6-a176-5404a60d96b5" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Tendencies from cumulus convection scheme." frequency="mon" label="tnhusc" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="34" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Specific Humidity due to Convection" type="real" uid="bab9d236-e5dd-11e5-8482-ac72891c3257" vid="a1d576b3fc447c37d782926441428ffd"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of bacterial carbon component concentrations" frequency="mon" label="baccos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="13" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Bacterial Carbon Concentration" type="real" uid="c917ef02-c5e8-11e6-84e6-5404a60d96b5" vid="c96caa26-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="If model lumps SOA emissions with POA, then the sum of POA and SOA emissions is reported as OA emissions. &quot;&quot;mass&quot;&quot; refers to the mass of primary organic matter, not mass of organic carbon alone." frequency="mon" label="chepsoa" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="chemical production of dry aerosol secondary organic matter" type="float" uid="19bed4b0-81b1-11e6-92de-ac72891c3257" vid="6b9531f047e39c91d82d58852a429555"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="cct" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1052" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Air Pressure at Convective Cloud Top" type="real" uid="8009f00c-f906-11e6-a176-5404a60d96b5" vid="0062272a6a4176b8c32af87642b062c5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fraction of time that convection occurs in the grid cell ." frequency="subhr" label="ci" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1053" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Fraction of Time Convection Occurs" type="real" uid="800a0290-f906-11e6-a176-5404a60d96b5" vid="29fae9ea0f236a3eb144026e1bafde28"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon concentration from the picophytoplankton (&lt;2 um) component alone" frequency="yr" label="phypico" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="19" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Picophytoplankton expressed as Carbon in sea water" type="real" uid="ba9deb2a-e5dd-11e5-8482-ac72891c3257" vid="3aa265a13ddf4caa82a8e1e3d4482f42"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon concentration from additional phytoplankton component alone" frequency="yr" label="phymisc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="20" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Miscellaneous Phytoplankton expressed as Carbon in sea water" type="real" uid="ba9defe4-e5dd-11e5-8482-ac72891c3257" vid="9a7cb6c8481412d525ba1101f82b892d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="co2" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="For some simulations (e.g., prescribed concentration pi-control run), this will not vary from one year to the next, and so report instead the variable described in the next table entry.  If spatially uniform, omit this field, but report Total Atmospheric Mass of CO2 (see the table entry after the next one).  Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="71" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Mole Fraction of CO2" type="real" uid="baab23da-e5dd-11e5-8482-ac72891c3257" vid="9bb9a503065dfbd30c9bbe5c3c6abf99"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CMIP5 called this &quot;due to Bolus Advection&quot;.  Name change respects the more general physics of the mesoscale parameterizations." frequency="mon" label="msftmrhompa" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, rho, basin.  Also see note above." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="44" shuffle="" stid="529d537e-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="ocean meridional overturning mass streamfunction due to parameterized mesoscale advection" type="real" uid="baa5b364-e5dd-11e5-8482-ac72891c3257" vid="54bc1fc90fca4b22cd73cc18e3f6ec07"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon concentration from the diazotrophic phytoplankton component alone" frequency="mon" label="phydiazos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="18" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Diazotrophs Expressed as Carbon in Sea Water" type="real" uid="c918358e-c5e8-11e6-84e6-5404a60d96b5" vid="c96cefb8-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of particulate organic phosphorus component concentrations" frequency="mon" label="popos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="44" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Particulate Organic Matter expressed as Phosphorus in sea water" type="real" uid="c919c610-c5e8-11e6-84e6-5404a60d96b5" vid="c96e5fc4-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="hfrunoffds2d" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="If only the vertically integrated runoff flux is available, report as this 2-d field; otherwise the row above should be used." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="83" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Temperature Flux due to Runoff Expressed as Heat Flux into Sea Water" type="real" uid="baa6842e-e5dd-11e5-8482-ac72891c3257" vid="155ede0bff2578a736e6379552483f4e"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="cLitterAbove" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="55" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Above-Ground Litter" type="real" uid="baa8be1a-e5dd-11e5-8482-ac72891c3257" vid="edffed802a10e341650e8d25ed05581f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1 (natural component)." frequency="yr" label="phnat" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="27" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Natural pH" type="real" uid="c9235630-c5e8-11e6-84e6-5404a60d96b5" vid="c97004d2-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Aerosol  Backscatter @550nm @ 180 degrees, computed from extinction and lidar ratio" frequency="6hr" label="bs550aer" mipTable="6hrLev_aer" mipTableSection="aer6hr" modeling_realm="aerosol" mtid="MIPtable::6hrLev_aer" positive="" prov="6hrLev [aer] ((isd.002))" provNote="aer6hr" rowIndex="-1" shuffle="" stid="62ef559c-1617-11e7-a126-5404a60d96b5" title="Aerosol backscatter coefficient" type="float" uid="8fecd6da-267c-11e7-8933-ac72891c3257" vid="c9a77f2a-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="sf6" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="2" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of SF6 in sea water" type="real" uid="ba9a00e6-e5dd-11e5-8482-ac72891c3257" vid="82b5e315b8be441e26a9c45e95fe7573"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="hfgeou" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="up" processing="If this field is time-invariant, then save it instead as one of your &quot;fixed&quot; fields (see the fx table). Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="79" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Upward Geothermal Heat Flux at Sea Floor" type="real" uid="baa67344-e5dd-11e5-8482-ac72891c3257" vid="1418ccb847c5c235176620baf22d7b33"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Primary (organic carbon) production by the picophytoplankton (&lt;2 um) component alone" frequency="yr" label="dpocdtpico" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="75" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Tendency of Mole Concentration of Organic Carbon in sea water due to Net Primary Production by Picophytoplankton" type="real" uid="c9261960-c5e8-11e6-84e6-5404a60d96b5" vid="ad2a6301b95f4d6bbca05358194773ed"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="o2sat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1030" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Dissolved Oxygen Concentration at Saturation" type="real" uid="a95e9f72-817c-11e6-a4e2-5404a60d96b5" vid="e4e75ce1fe85a547cd0d39d4b64ec0e2"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from parameterized mesoscale eddy diffusion. Reported only for models that use potential temperature as prognostic field." frequency="yr" label="opottemppmdiff" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="10" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water potential temperature expressed as heat content due to parameterized mesoscale diffusion" type="real" uid="baa43db8-e5dd-11e5-8482-ac72891c3257" vid="bf9968cc511b92e99f89e9856bd38fb6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hfsifrazil" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean seaIce" mtid="MIPtable::Omon" positive="" processing="In general this should be reported as a function of depth, (i.e.,  it will be a function of the generic &quot;XYZ&quot; dimensions).  Include enough depth levels to represent  the non-zero values of this field everywhere on the globe. Report on native horizontal grid. If a function of depth, perform online remapping to depth or pressure, if not native vertical grid." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="86" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Heat Flux into Sea Water due to Frazil Ice Formation" type="real" uid="baa690b8-e5dd-11e5-8482-ac72891c3257" vid="1b7e762395c4de9ec5c5c7bda3ce3781"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="epp100" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="at 100 m depth." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="142" shuffle="" stid="f948813c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Downward Flux of Particulate Phosphorus" type="real" uid="c91e0702-c5e8-11e6-84e6-5404a60d96b5" vid="600c9692a7eaef4037565fa8846ae6ba"/>
<item defaultPriority="1" deflate="" deflate_level="" description="total organic aerosol AOD due to biomass burning (excluding so4, nitrate BB components)" frequency="mon" label="od550bb" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="bb aod@550nm" type="float" uid="19bea26a-81b1-11e6-92de-ac72891c3257" vid="a0c10a4b65d3b79db581a649058a08b1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." frequency="mon" label="dryo3" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of o3" type="float" uid="19bebac0-81b1-11e6-92de-ac72891c3257" vid="88cfa07efc9539cfb8c465a664f63e55"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Flux corresponding to rlutcs resulting fom aerosol-free call to radiation" frequency="mon" label="rlutcsaf" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="toa outgoing clear-sky longwave radiation" type="float" uid="8febbae8-267c-11e7-8933-ac72891c3257" vid="c9a673b4-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="It is set to zero in models which receive a real water flux." frequency="mon" label="vsfcorr" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="76" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Virtual Salt Flux Correction" type="real" uid="baa65eae-e5dd-11e5-8482-ac72891c3257" vid="87fbc4126ce4daecf084edf9ad1f4aaf"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rlus" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="up" prov="day ((isd.003))" provNote="day_ss" rowIndex="42" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Surface Upwelling Longwave Radiation" type="real" uid="bab57f92-e5dd-11e5-8482-ac72891c3257" vid="89027ee0079acb709750ddeac1c08899"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Diagnostic should be contributed only for models using conservative temperature as prognostic field." frequency="mon" label="bigthetaoga" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="15" shuffle="" stid="f7e2e214-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Global Average Sea Water Conservative Temperature" type="real" uid="baa52994-e5dd-11e5-8482-ac72891c3257" vid="6901f6894f7382d628084809e7208c4b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="X-ward mass transport from residual mean (resolved plus parameterized) advective transport." frequency="mon" label="umo" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="37" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_3d" title="Ocean Mass X Transport" type="real" uid="baa5942e-e5dd-11e5-8482-ac72891c3257" vid="2f074f3417a26ad322b96dd0b6c21e09"/>
<item defaultPriority="1" deflate="" deflate_level="" description="where land over land, this is computed as the mean thickness of snow in the land portion of the grid cell (averaging over the entire land portion, including the snow-free fraction).  Reported as 0.0 where the land fraction is 0." frequency="mon" label="snd" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Snow Depth" type="real" uid="bab7e05c-e5dd-11e5-8482-ac72891c3257" vid="19058c0a2aaaf3eaeca5093ea87c7e46"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Abiotic Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" frequency="mon" label="dissi14cabioos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="8" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Abiotic Dissolved Inorganic 14Carbon Concentration" type="real" uid="c917a70e-c5e8-11e6-84e6-5404a60d96b5" vid="c96c6390-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="NOy is the sum of all simulated oxidized nitrogen species out of NO, NO2, HNO3, HNO4, NO3aerosol, NO3(radical), N2O5, PAN, other organic nitrates. Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." frequency="mon" label="drynoy" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of noy" type="float" uid="19bfdaae-81b1-11e6-92de-ac72891c3257" vid="f4e5c381e643cd68d3104cf75cc675bd"/>
<item defaultPriority="1" deflate="" deflate_level="" description="To be specified only in  models which do not separate cloud, precipitation and boundary layer terms.  Includes all boundary layer terms including diffusive ones." frequency="subhr" label="tntscpbl" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="37" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature Due to Stratiform Cloud and Precipitation and Boundary Layer Mixing" type="real" uid="a9556ca4-817c-11e6-a4e2-5404a60d96b5" vid="475dc209e9f9cd51eedee4d26caf9f67"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="n2o" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="N2O volume mixing ratio" type="float" uid="fda67476-96ec-11e6-b81e-c9e268aff03a" vid="942125e5a461fef57b1477b9a2bd5fa0"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="intppdiaz" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="130" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Net Primary Mole Productivity of Carbon by Diazotrophs" type="real" uid="baa063d2-e5dd-11e5-8482-ac72891c3257" vid="e52807e8-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="pbo" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="CMIP5 had units of dbar.  CMIP6 uses Pa. Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="4" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Sea Water Pressure at Sea floor" type="real" uid="baa4fb54-e5dd-11e5-8482-ac72891c3257" vid="3ed1667233f6ae4fe3c5ff93cd2de2f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="anthrophogenic  emission of CO" frequency="mon" label="emiaco" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of anthropogenic co" type="float" uid="19bfb3d0-81b1-11e6-92de-ac72891c3257" vid="ea546e38aa8fc0e021f03e746e1adb10"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of zooplankton carbon component concentrations" frequency="yr" label="zooc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="11" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Zooplankton Carbon Concentration" type="real" uid="ba9dc53c-e5dd-11e5-8482-ac72891c3257" vid="be62c57dff12142bf51fc73c70cfb050"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll concentration from the diazotrophic phytoplankton component alone" frequency="yr" label="chldiaz" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="38" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mass Concentration of Diazotrophs expressed as Chlorophyll in sea water" type="real" uid="ba9e3ae4-e5dd-11e5-8482-ac72891c3257" vid="171d617ceca8a4351f53d090c0ead89c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="fsn" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="169" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Net Flux of Nitrogen" type="real" uid="baa10292-e5dd-11e5-8482-ac72891c3257" vid="96b53e6411f945d703ee5d081faee987"/>
<item defaultPriority="1" deflate="" deflate_level="" description="commonly referred to as &quot;omega&quot;, this represents the vertical component of velocity in pressure coordinates (positive down)" frequency="mon" label="wap" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="67" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="omega (=dp/dt)" type="real" uid="babd0906-e5dd-11e5-8482-ac72891c3257" vid="51fb29dd55442361fa9c5dbe23aca9c6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="dissolved iron in sea water is meant to include both Fe2+ and Fe3+ ions (but not, e.g., particulate detrital iron)" frequency="mon" label="dfeos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="35" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Dissolved Iron Concentration" type="real" uid="c9194000-c5e8-11e6-84e6-5404a60d96b5" vid="c96de29c-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="o3" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Ozone volume mixing ratio" type="float" uid="19bedbc2-81b1-11e6-92de-ac72891c3257" vid="1d4594c97188efd47935238a429e02e4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsdscs" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="down" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="38" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Downwelling Clear-Sky Shortwave Radiation" type="real" uid="bab607c8-e5dd-11e5-8482-ac72891c3257" vid="d0a35d5c99a0aa93ad4069cfe83bf748"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of particulate organic iron component concentrations" frequency="mon" label="bfeos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="45" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Particulate Organic Matter expressed as Iron in sea water" type="real" uid="c919d3d0-c5e8-11e6-84e6-5404a60d96b5" vid="c96e6d66-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ttop" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="air temperature at cloud top" type="float" uid="19be9072-81b1-11e6-92de-ac72891c3257" vid="c26eed24b27782de78cfab86e3d3b2d2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="pan" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="PAN volume mixing ratio" type="float" uid="19c01690-81b1-11e6-92de-ac72891c3257" vid="586c3879af2023a43fd12c2e0a64b6af"/>
<item defaultPriority="1" deflate="" deflate_level="" description="computed as the water  flux (without flux correction) into the ocean divided by the area of the ocean portion of the grid cell." frequency="mon" label="wfonocorr" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="This should be the sum of the various processes contributing to water fluxes. Report on native horizontal grid as well as mapped onto sphere." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="69" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Water Flux into Sea Water Without Flux Correction" type="real" uid="baa639b0-e5dd-11e5-8482-ac72891c3257" vid="4d42d6e262fdc2c20cf8e2e82826e0c8"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="dpco2nat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Difference between atmospheric and oceanic partial pressure of CO2 (positive meaning ocean &gt; atmosphere) - natural component" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="154" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Natural Delta PCO2" type="real" uid="c91e9f50-c5e8-11e6-84e6-5404a60d96b5" vid="c97316d6-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrss" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Sea Salt mass mixing ratio" type="float" uid="19bed1f4-81b1-11e6-92de-ac72891c3257" vid="5980f8e283fd4709e4542c0652756dc1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Overturning mass streamfunction arising from all advective mass transport processes, resolved and parameterized." frequency="dec" label="msftmyz" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="function of latitude, Z, basin. For a model with a cartesian latxlon grid, this is the same as the &quot;Ocean Y Overturning Mass Streamfunction&quot;, listed a few lines down, which should in this case be omitted.  For other models, this transport should be approximated as the transport along zig-zag paths corresponding to latitudes with spacing between latitudes appropriate to the model's resolution." prov="Odec ((isd.003))" provNote="" rowIndex="19" shuffle="" stid="529e94b4-1ed7-11e7-9366-ac72891c3257" title="Ocean Meridional Overturning Mass Streamfunction" type="real" uid="4795d5e4-bb0b-11e6-8316-5980f7b176d1" vid="fe8d7416c92bdae56503590599286800"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="dispkexyfo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="35" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Kinetic Energy Dissipation Per Unit Area due to XY Friction" type="real" uid="baabf9b8-e5dd-11e5-8482-ac72891c3257" vid="f56a3a44b60650b58309b1d8cf58b913"/>
<item defaultPriority="2" deflate="" deflate_level="" description="the entire land portion of the grid cell is considered, with snow soot content set to 0.0 in regions free of snow." frequency="mon" label="sootsn" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Snow Soot Content" type="real" uid="bab83fc0-e5dd-11e5-8482-ac72891c3257" vid="d421b6923b396998106a8c1c66ea07f1"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Net of biological terms in time rate of change of dissolved inorganic iron" frequency="yr" label="bddtdife" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="84" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Dissolved Inorganic Iron due to Biological Activity" type="real" uid="ba9ef448-e5dd-11e5-8482-ac72891c3257" vid="6674625c225f14aa8d6795d1df244c28"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as &quot;where ice_free_sea over sea&quot;" frequency="mon" label="hfevapds" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="up" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="81" shuffle="" stid="f948921c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Temperature Flux due to Evaporation Expressed as Heat Flux Out of Sea Water" type="real" uid="baa67b8c-e5dd-11e5-8482-ac72891c3257" vid="11f31866ee4fca2f68e25ccd529ede8a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" frequency="mon" label="dissi13cos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="9" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Dissolved Inorganic 13Carbon Concentration" type="real" uid="c917b686-c5e8-11e6-84e6-5404a60d96b5" vid="c96c720e-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="expfe" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="" rowIndex="65" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sinking Particulate Iron Flux" type="real" uid="ba9eb172-e5dd-11e5-8482-ac72891c3257" vid="e52528e8-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="no3" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1031" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Dissolved Nitrate Concentration" type="real" uid="ba9fa29e-e5dd-11e5-8482-ac72891c3257" vid="96acc3ed79b2bd5e4dbd613a4c27720f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="report the maximum soil depth reachable by plant roots (if defined in model), i.e., the maximum soil depth from which they can extract moisture; report as &quot;missing&quot; where the land fraction is 0." frequency="fx" label="rootd" mipTable="fx" modeling_realm="land" mtid="MIPtable::fx" positive="" prov="fx ((isd.003))" provNote="" rowIndex="20" shuffle="" stid="f7decc10-562c-11e6-a2a4-ac72891c3257" title="Maximum Root Depth" type="real" uid="bab5c7fe-e5dd-11e5-8482-ac72891c3257" vid="d76ba4c5868a0a9a02f433dc3c86d5d2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of CO2 (positive into ocean)" frequency="yr" label="fgco2" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="" rowIndex="90" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Flux of Total CO2" type="real" uid="c926b24e-c5e8-11e6-84e6-5404a60d96b5" vid="f64c4ac230024801b1f140d806a00972"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hcl" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="HCl volume mixing ratio" type="float" uid="19bede74-81b1-11e6-92de-ac72891c3257" vid="cc8f92a2635774d636748ec8007c4bab"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Net of biological terms in time rate of change of dissolved inorganic carbon" frequency="yr" label="bddtdic" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="81" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Dissolved Inorganic Carbon due to Biological Activity" type="real" uid="ba9ee7c8-e5dd-11e5-8482-ac72891c3257" vid="1df32c1e9440e03187aa8253e1a0f2d9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="gpp" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="down" prov="Lmon ((isd.003))" provNote="" rowIndex="38" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux out of Atmosphere due to Gross Primary Production on Land" type="real" uid="baae7800-e5dd-11e5-8482-ac72891c3257" vid="89c4bb4f45a0182fc00a1b86b13241a5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="grid-cell volume ca. 2000." frequency="fx" label="volcello" mipTable="Ofx" modeling_realm="ocean" mtid="MIPtable::Ofx" positive="" processing="a 3-d field: For oceans with more than 1 mesh, report on grid that applies to temperature" prov="fx ((isd.003))" provNote="" rowIndex="22" shuffle="" stid="62ee7ee2-1617-11e7-a126-5404a60d96b5" title="Ocean Grid-Cell Volume" type="real" uid="babcc39c-e5dd-11e5-8482-ac72891c3257" vid="4c69515bfc84c5cb5624e94228f58351"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3satcalc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1054" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Carbonate ion Concentration for sea water in equilibrium with pure Calcite" type="real" uid="ba9ffe60-e5dd-11e5-8482-ac72891c3257" vid="28907f4f1855d3d22166c87b8e5300be"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="h2o" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Water vapour volume mixing ratio" type="float" uid="19bff8c2-81b1-11e6-92de-ac72891c3257" vid="a7cf325e9bf994ade073a1297378a57c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="commonly referred to as &quot;omega&quot;, this represents the vertical component of velocity in pressure coordinates (positive down)" frequency="subhr" label="wap" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="24" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="omega (=dp/dt)" type="real" uid="a954d4ec-817c-11e6-a4e2-5404a60d96b5" vid="51fb29dd55442361fa9c5dbe23aca9c6"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="o2sat" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="30" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Dissolved Oxygen Concentration at Saturation" type="real" uid="ba9e18b6-e5dd-11e5-8482-ac72891c3257" vid="e4e75ce1fe85a547cd0d39d4b64ec0e2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="fx" label="areacello" mipTable="Ofx" modeling_realm="ocean" mtid="MIPtable::Ofx" positive="" processing="For oceans with more than 1 mesh (e.g., staggered grids), report areas that apply to surface vertical fluxes of energy." prov="Ofx ((isd.003))" provNote="" rowIndex="4" shuffle="" stid="62eebbb4-1617-11e7-a126-5404a60d96b5" title="Ocean Grid-Cell Area" type="real" uid="baa3ee94-e5dd-11e5-8482-ac72891c3257" vid="62c5b9728a01c0031e3a788ac4c8eff5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Overturning mass streamfunction arising from all advective mass transport processes, resolved and parameterized." frequency="mon" label="msftmyz" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, Z, basin. For a model with a cartesian latxlon grid, this is the same as the &quot;Ocean Y Overturning Mass Streamfunction&quot;, listed a few lines down, which should in this case be omitted.  For other models, this transport should be approximated as the transport along zig-zag paths corresponding to latitudes with spacing between latitudes appropriate to the model's resolution." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="39" shuffle="" stid="529e94b4-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="Ocean Meridional Overturning Mass Streamfunction" type="real" uid="baa59d48-e5dd-11e5-8482-ac72891c3257" vid="fe8d7416c92bdae56503590599286800"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="hfss" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="up" prov="day ((isd.003))" provNote="day_ss" rowIndex="40" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Surface Upward Sensible Heat Flux" type="real" uid="baaf91cc-e5dd-11e5-8482-ac72891c3257" vid="a13ed886b17e20cdae8b89b9ff8e4610"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon concentration from calcareous (calcite-producing) phytoplankton component alone" frequency="mon" label="phycalcos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="19" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Calcareous Phytoplankton expressed as Carbon in Sea Water" type="real" uid="c9184416-c5e8-11e6-84e6-5404a60d96b5" vid="c96cfd6e-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="hr" label="sfpm25" mipTable="aerhourly" mipTableSection="aerhourly" modeling_realm="aerosol" mtid="MIPtable::aerhourly" positive="" prov="aerhourly ((isd.003))" provNote="aerhourly" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="PM2.5 mass mixing ratio in lowest model layer" type="float" uid="19c074b4-81b1-11e6-92de-ac72891c3257" vid="fe6cc8a8-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="&quot;skin&quot; temperature (i.e., SST for open ocean)" frequency="subhr" label="ts" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1015" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Temperature" type="real" uid="80072764-f906-11e6-a176-5404a60d96b5" vid="90c49fce92dc1f21647dad07d1342843"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="tnt" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="24" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Air Temperature" type="real" uid="baba4b30-e5dd-11e5-8482-ac72891c3257" vid="c8b1814845661bcad37910e70a59b285"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is the in-cloud emissivity obtained by considering only the cloudy portion of the grid cell." frequency="3hr" label="demc" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="44" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Convective Cloud Emissivity" type="real" uid="baab95b8-e5dd-11e5-8482-ac72891c3257" vid="583cc0e465e20507f5aff35387691c4b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is what the atmosphere sees (on its own grid).  This field should be equivalent to the combined natural fluxes of carbon (requested in the L_mon and O_mon tables) that account for natural exchanges between the atmosphere and land or ocean reservoirs (i.e., &quot;net ecosystem biospheric productivity&quot;, for land, and &quot;air to sea CO2 flux&quot;, for ocean.)" frequency="mon" label="fco2nat" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" processing="Report from all simulations (both emission-driven and concentration-driven) performed by models with fully interactive and responsive carbon cycles." prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="57" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Carbon Mass Flux into the Atmosphere Due to Natural Sources" type="real" uid="baaded68-e5dd-11e5-8482-ac72891c3257" vid="299fb9d19040c4aa3862644286261ad2"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="co3abio" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="53" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Abiotic Carbonate ion Concentration" type="real" uid="c924f382-c5e8-11e6-84e6-5404a60d96b5" vid="c9794182-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="The mean age of air is defined as the mean time that a stratospheric air mass has been out of contact with the well-mixed troposphere." frequency="mon" label="meanage" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Mean Age of Stratospheric Air" type="float" uid="3a049b80-9c3a-11e6-8d5d-ac72891c3257" vid="e703d0fcbdd5f975485b3404a331ed91"/>
<item defaultPriority="1" deflate="" deflate_level="" description="tropospheric ozone column in DU, should be consistent with ptp definition of tropopause" frequency="mon" label="tropoz" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="tropospheric ozone column" type="float" uid="19bff46c-81b1-11e6-92de-ac72891c3257" vid="4b1f3e86dde718e8c9697df0c3992c06"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton phosphorus components" frequency="mon" label="phyp" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1047" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Total Phytoplankton expressed as Phosphorus in sea water" type="real" uid="ba9fe9b6-e5dd-11e5-8482-ac72891c3257" vid="1ae710e405acc14b368f55d9205be258"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Ocean tracer diffusivity associated with parameterized eddy-induced diffusive transport oriented along neutral or isopycnal directions. Sometimes this diffusivity is called the neutral diffusivity or isopycnal diffusivity or Redi diffusivity." frequency="yr" label="diftrelo" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="29" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="ocean tracer epineutral laplacian diffusivity" type="real" uid="baa4dc50-e5dd-11e5-8482-ac72891c3257" vid="b02d071fff99f2632aa8ac5e83e92215"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="co3nat" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="52" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Natural Carbonate ion Concentration" type="real" uid="c924dc6c-c5e8-11e6-84e6-5404a60d96b5" vid="c9793390-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrno3" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="NO3 aerosol mass mixing ratio" type="float" uid="19be4810-81b1-11e6-92de-ac72891c3257" vid="11619ca70c37ffd25d5b234c03ca4d4f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmroa" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Total organic aerosol mass mixing ratio" type="float" uid="19bfcf6e-81b1-11e6-92de-ac72891c3257" vid="79433cf8854f00ee833d6c2979fa5eb1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="zhalfo" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="This 3-d time dependent field should only be saved for models where it can't be calculated from the vertical coordinate information stored in the file." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="102" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Depth Below Geoid of Interfaces Between Ocean Layers" type="real" uid="5a4c1f6c-c77d-11e6-8a33-5404a60d96b5" vid="e4f788872546d474c64f89798a4cb8cb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="tnhus" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="40" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Specific Humidity" type="real" uid="a9558f0e-817c-11e6-a4e2-5404a60d96b5" vid="2a6093caf9e5cd42fb2fba6bdb73d6db"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="fGrazing" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" prov="Lmon ((isd.003))" provNote="" rowIndex="43" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Grazing on Land" type="real" uid="baad86fc-e5dd-11e5-8482-ac72891c3257" vid="b78f432cc8fbadf21b9a1fcf07d781a7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="tas" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="normally, the temperature should be reported at the 2 meter height" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="14" shuffle="" stid="f7e1ef26-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Near-Surface Air Temperature" type="real" uid="bab9237c-e5dd-11e5-8482-ac72891c3257" vid="5c4978e802ba55d5a298cf1b3bdc2b3a"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon from additional zooplankton component concentrations alone (e.g. Micro, meso).  Since the models all have different numbers of components, this variable has been included to provide a check for intercomparison between models since some phytoplankton groups are supersets." frequency="yr" label="zmisc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="23" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concetration of Other Zooplankton expressed as Carbon in sea water" type="real" uid="c9231382-c5e8-11e6-84e6-5404a60d96b5" vid="c9776970-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rlus" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1035" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Upwelling Longwave Radiation" type="real" uid="8008a27e-f906-11e6-a176-5404a60d96b5" vid="89027ee0079acb709750ddeac1c08899"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton iron component concentrations" frequency="mon" label="phyfe" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1048" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Total Phytoplankton expressed as Iron in sea water" type="real" uid="ba9fede4-e5dd-11e5-8482-ac72891c3257" vid="87f531b94bd9ca68e33e89d7e3e81be4"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of salt content for a grid cell from parameterized eddy advection (any form of eddy advection)." frequency="yr" label="osaltpadvect" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="21" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water salinity expressed as salt content due to parameterized eddy advection" type="real" uid="baa47bfc-e5dd-11e5-8482-ac72891c3257" vid="f507e49404f47a6255539751483d8bdc"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3sataragos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="56" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Carbonate Ion in Equilibrium with Pure Aragonite in sea water" type="real" uid="c91a73f8-c5e8-11e6-84e6-5404a60d96b5" vid="c96f0758-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Contributions to heat transport from parameterized eddy-induced advective transport due to any subgrid advective process. Diagnosed here as a function of latitude and basin.  Use Celsius for temperature scale." frequency="mon" label="hfbasinpadv" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, basin" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="53" shuffle="" stid="f949dcb2-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="northward ocean heat transport due to parameterized eddy advection" type="real" uid="baa5d952-e5dd-11e5-8482-ac72891c3257" vid="2e3e882a650986c1fdc5df05f5f10263"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the net mass flux of carbon between land and atmosphere calculated as photosynthesis MINUS the sum of  plant and soil respiration, carbonfluxes  from fire, harvest, grazing  and land use change. Positive flux  is into the land." frequency="mon" label="nbp" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="down" prov="Lmon ((isd.003))" provNote="" rowIndex="46" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux out of Atmosphere due to Net Biospheric Production on Land" type="real" uid="bab23634-e5dd-11e5-8482-ac72891c3257" vid="337d362541c3e2a3f907abcaffa5c262"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrpm10" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="PM10 mass mixing ratio" type="float" uid="19c00420-81b1-11e6-92de-ac72891c3257" vid="6aee2e2f22bb5a7a9aee1f88926dfd92"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll concentration from the diazotrophic phytoplankton component alone" frequency="mon" label="chldiaz" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1038" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mass Concentration of Diazotrophs expressed as Chlorophyll in sea water" type="real" uid="ba9fbfcc-e5dd-11e5-8482-ac72891c3257" vid="171d617ceca8a4351f53d090c0ead89c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Inorganic Carbon supply to ocean through runoff (separate from gas exchange)" frequency="mon" label="icfriver" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="164" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Flux of Inorganic Carbon Into Ocean Surface by Runoff" type="real" uid="baa0ed2a-e5dd-11e5-8482-ac72891c3257" vid="9c4f9fe04addd510e5fbedd35e01a5db"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface.  This is a 3-hour mean convective precipitation flux." frequency="3hr" label="prc" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="28" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Convective Precipitation" type="real" uid="bab40c20-e5dd-11e5-8482-ac72891c3257" vid="aa2bea81f238ad8f2c35a7e16ad97801"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrxybo2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="41" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer XY Biharmonic Diffusivity" type="real" uid="a929face-817c-11e6-a4e2-5404a60d96b5" vid="007c5380d1b91abef954c3b97871f018"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="yr" label="no3" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="31" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Dissolved Nitrate Concentration" type="real" uid="ba9e1d16-e5dd-11e5-8482-ac72891c3257" vid="96acc3ed79b2bd5e4dbd613a4c27720f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ta" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="62" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Air Temperature" type="real" uid="bab8fa0a-e5dd-11e5-8482-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculated as the mass of stratiform cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="mon" label="clws" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="44" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Mass Fraction of Stratiform Cloud Liquid Water" type="real" uid="baab0f3a-e5dd-11e5-8482-ac72891c3257" vid="e4dc8fb121d8dc2cbc44f1f28eea183b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="no2" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="NO2 volume mixing ratio" type="float" uid="19be3ce4-81b1-11e6-92de-ac72891c3257" vid="648f83bb87b09bb8c24aaf82bf3c9aef"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Total mass of liquid sea water. For Boussinesq models, report this diagnostic as Boussinesq reference density times total volume." frequency="dec" label="masso" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" prov="Odec ((isd.003))" provNote="" rowIndex="3" shuffle="" stid="f7dda574-562c-11e6-a2a4-ac72891c3257" title="Sea Water Mass" type="real" uid="4794f818-bb0b-11e6-8316-5980f7b176d1" vid="7619324f698659657f466d5dc6660b9d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the mean of the speed, not the speed computed from the mean u and v components of wind" frequency="subhr" label="sfcWind" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1022" shuffle="" stid="3cbb316e-1a15-11e7-8130-ac72891c3257" title="Near-Surface Wind Speed" type="real" uid="8007a11c-f906-11e6-a176-5404a60d96b5" vid="4b97609a32d53dff5b8e73729e4f258b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="To be specified only in  models which do not separate cloud, precipitation and boundary layer terms.  Includes all boundary layer terms including diffusive ones." frequency="mon" label="tntscpbl" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="27" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Air Temperature Due to Stratiform Cloud and Precipitation and Boundary Layer Mixing" type="real" uid="baba657a-e5dd-11e5-8482-ac72891c3257" vid="475dc209e9f9cd51eedee4d26caf9f67"/>
<item defaultPriority="1" deflate="" deflate_level="" description="The net mass flux should represent the difference between the updraft and downdraft components.  This is calculated as the convective mass flux divided by the area of the whole grid cell (not just the area of the updrafts)." frequency="subhr" label="mc" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="Report on model half-levels (i.e., interfaces between model layers)." prov="cfSites ((isd.003))" provNote="" rowIndex="18" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Convective Mass Flux" type="real" uid="a9548ee2-817c-11e6-a4e2-5404a60d96b5" vid="6d790fe4caa7feff46a41ae7b3811e52"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Surface ocean geoid defines z=0." frequency="mon" label="zossq" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="8" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Square of Sea Surface Height Above Geoid" type="real" uid="baa50c2a-e5dd-11e5-8482-ac72891c3257" vid="f7658de98a4b03f947f0ffb19eeca1fd"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This may differ from &quot;surface temperature&quot; in regions of sea ice.This may differ from &quot;surface temperature&quot; in regions of sea ice.For models using conservative temperature as prognostic field, they should report the SST as surface potent" frequency="mon" label="tosga" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="18" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Global Average Sea Surface Temperature" type="real" uid="baa53ace-e5dd-11e5-8482-ac72891c3257" vid="dbba7f5717d68960a82b228e03dea7b7"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="hfibthermds2d" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="If only the vertically integrated heat flux is available, report as this 2-d field; otherwise the row above should be used." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="89" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Heat Flux into Sea Water due to Iceberg Thermodynamics" type="real" uid="baa6a5bc-e5dd-11e5-8482-ac72891c3257" vid="bd938fec017c18d3eee106db55f924c5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="3hr" label="phalf" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" processing="provide this field for models in which the pressure can't be calculated from the vertical coordinate information stored already for each variable.  Thus, the pressures are needed for height or theta-coordinate models, for example, but not sigma- or eta-coordinate models." prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="20" shuffle="" stid="f7dc8770-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Pressure at Model Half-Levels" type="real" uid="bab34628-e5dd-11e5-8482-ac72891c3257" vid="154ab10964742eaff37de9cc5beef39c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." frequency="mon" label="tauuo" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="97" shuffle="" stid="00b9aebc-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_oth" title="Surface Downward X Stress" type="real" uid="baa6cf38-e5dd-11e5-8482-ac72891c3257" vid="d1cfe9e20a66d3e922554248677efaba"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="wetbc" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="wet deposition rate of black carbon aerosol mass" type="float" uid="19bf5674-81b1-11e6-92de-ac72891c3257" vid="0b3fc46bf32dfbd9d36cdb72e827eb29"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Integrate 3D emission field vertically to 2d field." frequency="mon" label="emiso2" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of so2" type="float" uid="19c023d8-81b1-11e6-92de-ac72891c3257" vid="e35112d35f6f5cc88e1ebceefbd09133"/>
<item defaultPriority="1" deflate="" deflate_level="" description="i.e., at the top of that portion of the atmosphere where dynamics are explicitly treated by the model. This is reported only if it differs from the net downward radiative flux at the top of the atmosphere." frequency="subhr" label="rtmt" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1050" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Net Downward Flux at Top of Model" type="real" uid="8009c7f8-f906-11e6-a176-5404a60d96b5" vid="26328c46dfcc65d454b6fd4c52ccb48f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="graz" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="110" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Total Grazing of Phytoplankton by Zooplankton" type="real" uid="baa00ab8-e5dd-11e5-8482-ac72891c3257" vid="28a54e8b5b73c4ae915a82ed99c74459"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difvmfdo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="24" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Vertical Momentum Diffusivity due to Form Drag" type="real" uid="baabe8b0-e5dd-11e5-8482-ac72891c3257" vid="62cb333ec6550e64596f563d114977af"/>
<item defaultPriority="1" deflate="" deflate_level="" description="2D monthly mean thermal tropopause calculated using WMO tropopause definition on 3d temperature" frequency="mon" label="ptp" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Tropopause Air Pressure" type="float" uid="19be3f96-81b1-11e6-92de-ac72891c3257" vid="1562cba76e80f37d1c133ccd079fa715"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="ccb" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="28" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="Air Pressure at Convective Cloud Base" type="real" uid="baa929ea-e5dd-11e5-8482-ac72891c3257" vid="13484743dd3369c69df93379e6dafbb5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="ua" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="20" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind" type="real" uid="a954a620-817c-11e6-a4e2-5404a60d96b5" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="edt" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="47" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Eddy Diffusivity Coefficient for Temperature Variable" type="real" uid="a955e2f6-817c-11e6-a4e2-5404a60d96b5" vid="c373986159daf18eee63ca731d52b6f7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="cLitter" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="34" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Litter Pool" type="real" uid="baa8b67c-e5dd-11e5-8482-ac72891c3257" vid="ece03799edff3053efe82e9512d55ed9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="isop" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Isoprene volume mixing ratio" type="float" uid="19beffda-81b1-11e6-92de-ac72891c3257" vid="d9c1ba0b5e1b43f738cd1fbe4a765906"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." frequency="3hr" label="reffrains" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="38" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Hydrometeor Effective Radius of Stratiform Rainfall" type="real" uid="bab4eb2c-e5dd-11e5-8482-ac72891c3257" vid="d7f5ed6071c26983b8097d0d4a29a4d0"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="nh4" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="32" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Dissolved Ammonium Concentration" type="real" uid="ba9e2158-e5dd-11e5-8482-ac72891c3257" vid="5a887812bc95f4c8377af5051a2566fe"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ch4global" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="For some simulations (e.g., prescribed concentration pi-control run), this will not vary from one year to the next, and so report instead the variable described in the next table entry.  If CH4 is spatially nonuniform, omit this field, but report Mole Fraction of CH4 (see the table entry before the previous one).  Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="77" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" title="Global Mean Mole Fraction of CH4" type="real" uid="baa9e22c-e5dd-11e5-8482-ac72891c3257" vid="dbc244f3e0bae5b1397ad42fb6cd6db3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrxybo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="31" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer XY Biharmonic Diffusivity" type="real" uid="baabda28-e5dd-11e5-8482-ac72891c3257" vid="007c5380d1b91abef954c3b97871f018"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difvso" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Vertical Salt Diffusivity" type="real" uid="baabefb8-e5dd-11e5-8482-ac72891c3257" vid="52b1076476b074a18a91b9da1baa6bc3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Primary (organic carbon) production by the calcite-producing phytoplankton component alone" frequency="yr" label="dpocdtcalc" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="74" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Tendency of Mole Concentration of Organic Carbon in sea water due to Net Primary Production by Calcareous Phytoplankton" type="real" uid="c9260a9c-c5e8-11e6-84e6-5404a60d96b5" vid="7519e042c1a5a9c6f835b44e6e62f401"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrnh4" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="NH4 mass mixing ratio" type="float" uid="19bfa084-81b1-11e6-92de-ac72891c3257" vid="fe6ccf42-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="n2o" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="N2O volume mixing ratio" type="float" uid="19bfccbc-81b1-11e6-92de-ac72891c3257" vid="942125e5a461fef57b1477b9a2bd5fa0"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This temperature is averaged over all the snow in the grid cell that rests on land or land ice.  When computing the time-mean here, the time samples, weighted by the mass of snow on the land portion of the grid cell, are accumulated and then divided by the sum of the weights.   Reported as &quot;missing in regions free of snow on land." frequency="mon" label="tsn" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="20" shuffle="" stid="f9478548-80ba-11e6-ab6e-5404a60d96b5" title="Snow Internal Temperature" type="real" uid="8bbac66a-4a5b-11e6-9cd2-ac72891c3257" vid="15fd6126b9fb057118c71df94403e30c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate organic phosphorus component concentrations" frequency="mon" label="pop" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1043" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Particulate Organic Matter expressed as Phosphorus in sea water" type="real" uid="ba9fd8ea-e5dd-11e5-8482-ac72891c3257" vid="562c99ff069851867df730ed9531c796"/>
<item defaultPriority="2" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by C4 PFTs (including grass and crops)." frequency="mon" label="c4PftFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="66" shuffle="" stid="fa2335a8-267c-11e7-9bed-ac72891c3257" title="Total C4 PFT Cover Fraction" type="real" uid="baa89f8e-e5dd-11e5-8482-ac72891c3257" vid="351c26a0f5a0cefa8f1183f2f12e1aa3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" frequency="mon" label="dissi13c" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1008" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Dissolved Inorganic 13Carbon Concentration" type="real" uid="c91aa80a-c5e8-11e6-84e6-5404a60d96b5" vid="59175660-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="abs550aer" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="ambient aerosol absorption optical thickness at 550 nm" type="float" uid="19bebf2a-81b1-11e6-92de-ac72891c3257" vid="0baf6a333b91c4db341b515c28cd2c05"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This field is physical, and it arises when rivers carry a nonzero salt content.  Often this is zero, with rivers assumed to be fresh." frequency="dec" label="sfriver" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Report on native horizontal grid as well as mapped onto sphere." prov="Odec ((isd.003))" provNote="" rowIndex="23" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Salt Flux into Sea Water from Rivers" type="real" uid="47960e88-bb0b-11e6-8316-5980f7b176d1" vid="ced45b8b1f2797c54425755202dce533"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="thkcello" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="11" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Ocean Model Cell Thickness" type="real" uid="baa518c8-e5dd-11e5-8482-ac72891c3257" vid="5aea9677ebbb40076a0e0b3b11fdb46f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="co" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="CO volume mixing ratio" type="float" uid="19bf3d88-81b1-11e6-92de-ac72891c3257" vid="fe6c8654-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate silica component concentrations" frequency="yr" label="bsi" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="45" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Particulate Organic Matter expressed as silicon in sea water" type="real" uid="ba9e5c72-e5dd-11e5-8482-ac72891c3257" vid="dcd2298237af35be0ed71c92ee9e7e79"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate calcite component concentrations (e.g. Phytoplankton, Detrital, etc.)" frequency="mon" label="calc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1014" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Calcite Concentration" type="real" uid="ba9f643c-e5dd-11e5-8482-ac72891c3257" vid="c85ac4ad4664c34898cdb9af2418c45a"/>
<item defaultPriority="3" deflate="" deflate_level="" description="where land over land: This is the mean thickness of the permafrost layer in the land portion of the grid cell.  Reported as 0.0 in permafrost-free regions." frequency="mon" label="tpf" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="19" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Permafrost Layer Thickness" type="real" uid="baba8cbc-e5dd-11e5-8482-ac72891c3257" vid="3e437daab5bc69123a859ad361babc59"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net time rate of change of dissolved inorganic silicon" frequency="mon" label="fddtdisi" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="181" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Net Dissolved Inorganic Silicon" type="real" uid="baa134b0-e5dd-11e5-8482-ac72891c3257" vid="ee10c562c1164acf3bf03955dd6fc00d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" frequency="mon" label="dissicos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="5" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Dissolved Inorganic Carbon Concentration" type="real" uid="803e5f7c-f906-11e6-a176-5404a60d96b5" vid="c96c3794-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="AOD from the ambient aerosls (i.e., includes aerosol water).  Does not include AOD from stratospheric aerosols if these are prescribed but includes other possible background aerosol types. Needs a comment attribute &quot;wavelength: 550 nm&quot;" frequency="day" label="od550aer" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="ambient aerosol optical thickness at 550 nm" type="float" uid="fda76476-96ec-11e6-b81e-c9e268aff03a" vid="8f2fb9e812c26ee6cb8d9673e09d2644"/>
<item defaultPriority="1" deflate="" deflate_level="" description="computed as the sea ice thermodynamic water flux into the ocean divided by the area of the ocean portion of the grid cell." frequency="mon" label="fsitherm" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean seaIce" mtid="MIPtable::Omon" positive="" processing="OMDP has this as priority=2. The sea-ice folks requested that the priority be raised to 1. Report on native horizontal grid as well as mapped onto sphere." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="67" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Water Flux into Sea Water due to Sea Ice Thermodynamics" type="real" uid="baa63136-e5dd-11e5-8482-ac72891c3257" vid="f718ef1940e6feab018d81f508bd87c2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="wetoa" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="wet deposition rate of dry aerosol total organic matter" type="float" uid="19bf34d2-81b1-11e6-92de-ac72891c3257" vid="646edc2e8f1c393b5569dba5d598f8c8"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Store flux as Nitrogen. Anthropogenic fraction. NOx=NO+NO2, Includes agricultural waste burning but no other biomass burning. Integrate 3D emission field vertically to 2d field." frequency="mon" label="emianox" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="anthropogenic emission rate of nox" type="float" uid="19bf9c2e-81b1-11e6-92de-ac72891c3257" vid="691673a210102ac652eed2b784dd2ab4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="evu" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="38" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Eddy Viscosity Coefficients for Momentum" type="real" uid="a94c9fc0-817c-11e6-a4e2-5404a60d96b5" vid="52c137a21845ae294b27ad40eaca096d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rlucs4co2" mipTable="cfMon" mipTableSection="cfMon_3dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_3dmod" rowIndex="58" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dmod" title="Upwelling Clear-Sky Longwave Radiation 4XCO2 Atmosphere" type="real" uid="bab571f0-e5dd-11e5-8482-ac72891c3257" vid="5951b6df2bd5a02e11213ea42620fa89"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="rv850" mipTable="6hrPlevPt" mipTableSection="aer6hr" modeling_realm="atmos" mtid="MIPtable::6hrPlevPt" positive="" prov="6hrPlev ((isd.003))" provNote="aer6hr" rowIndex="-1" shuffle="" stid="62eedca2-1617-11e7-a126-5404a60d96b5" title="Relative Vorticity at 850 hPa" type="float" uid="7c70ee64-1ab7-11e7-8dfc-5404a60d96b5" vid="590ece46-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="carbon concentration from additional phytoplankton component alone" frequency="mon" label="phymisc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1020" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Miscellaneous Phytoplankton expressed as Carbon in sea water" type="real" uid="ba9f7d50-e5dd-11e5-8482-ac72891c3257" vid="9a7cb6c8481412d525ba1101f82b892d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Clouds detected by CALIPSO but below the detectability threshold of CloudSat" frequency="subhr" label="clcalipso2" mipTable="cfOff" modeling_realm="atmos" mtid="MIPtable::cfOff" positive="" processing="40 height levels" prov="cfOff ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7e0026a-562c-11e6-a2a4-ac72891c3257" title="CALIPSO Cloud Fraction Undetected by CloudSat" type="real" uid="baaa635a-e5dd-11e5-8482-ac72891c3257" vid="0245fef16f6eb29465d7fa55923fd12d"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="pbfe" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="58" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Biogenic Iron Production" type="real" uid="ba9e9412-e5dd-11e5-8482-ac72891c3257" vid="a336fa5c0a328636d04ea8f648dcd7c7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net biological terms in time rate of change of alkalinity" frequency="mon" label="fbddtalk" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="188" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Biological Alkalinity due to Biological Activity" type="real" uid="baa1522e-e5dd-11e5-8482-ac72891c3257" vid="d66b7d75af3d1ed4e83b2f15a51ca731"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes both liquid and solid phases." frequency="day" label="prc" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="33" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Convective Precipitation" type="real" uid="bab3fde8-e5dd-11e5-8482-ac72891c3257" vid="aa2bea81f238ad8f2c35a7e16ad97801"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrblo2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="36" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer Bolus Laplacian Diffusivity" type="real" uid="a929be38-817c-11e6-a4e2-5404a60d96b5" vid="1cf6c7fa0adedf95b3eaad5fb3f96b1c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="chlorophyll concentration from the picophytoplankton (&lt;2 um) component alone" frequency="mon" label="chlpicoos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="41" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mass Concentration of Picophytoplankton expressed as Chlorophyll in sea water" type="real" uid="c919953c-c5e8-11e6-84e6-5404a60d96b5" vid="c96e35a8-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3satcalcos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="55" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Carbonate Ion in Equilibrium with Pure Calcite in sea water" type="real" uid="c91a6598-c5e8-11e6-84e6-5404a60d96b5" vid="c96ef9ac-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Diagnostic should be contributed even for models using conservative temperature as prognostic field." frequency="dec" label="thetao" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Note change from CMIP5 K to CMIP6 C. Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Odec ((isd.003))" provNote="" rowIndex="6" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sea Water Potential Temperature" type="real" uid="479522ca-bb0b-11e6-8316-5980f7b176d1" vid="cf53bdf4168a9107354d059ff39b5753"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rldcs4co2" mipTable="cfMon" mipTableSection="cfMon_3dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="down" prov="cfMon ((isd.003))" provNote="cfMon_3dmod" rowIndex="60" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dmod" title="Downwelling Clear-Sky Longwave Radiation 4XCO2 Atmosphere" type="real" uid="bab52196-e5dd-11e5-8482-ac72891c3257" vid="bc0982cd4cc45a7ad96524f549a468c4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="o3" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Ozone volume mixing ratio" type="float" uid="fda70c24-96ec-11e6-b81e-c9e268aff03a" vid="1d4594c97188efd47935238a429e02e4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="includes both evaporation and sublimation" frequency="mon" label="hfls" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="32" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Upward Latent Heat Flux" type="real" uid="baaefe2e-e5dd-11e5-8482-ac72891c3257" vid="95cbf6ac889c8fe7d92e20e8c34960d1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="uas" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="normally, the the wind component should be reported at the 10 meter height" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="20" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" subGroup="Amon_2d" title="Eastward Near-Surface Wind" type="real" uid="babb67c2-e5dd-11e5-8482-ac72891c3257" vid="e72b243a2a1c8691ab0168d8b62534c2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="total alkalinity equivalent concentration (including carbonate, borate, phosphorus, silicon, and nitrogen components)" frequency="mon" label="talkos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="25" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Total Alkalinity" type="real" uid="c91897f4-c5e8-11e6-84e6-5404a60d96b5" vid="c96d5426-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; flux of water into the atmosphere due to conversion of both liquid and solid phases to vapor (from underlying surface and vegetation)" frequency="subhr" label="evspsbl" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1028" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Evaporation" type="real" uid="80081890-f906-11e6-a176-5404a60d96b5" vid="089961a3af4d54d5fb045cf3750e760c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="includes both evaporation and sublimation" frequency="subhr" label="hfls" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1032" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Upward Latent Heat Flux" type="real" uid="80086598-f906-11e6-a176-5404a60d96b5" vid="95cbf6ac889c8fe7d92e20e8c34960d1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the area fraction at the ocean surface." frequency="fx" label="sftof" mipTable="Ofx" modeling_realm="ocean" mtid="MIPtable::Ofx" positive="" processing="Should this be recorded as a function of depth?  Report on the same grid that ocean fields are reported (i.e., the ocean native grid, or the grid that ocean data has been provided to CMIP.  For completeness, provide this even if the ocean grid is the same as the atmospheric grid." prov="Ofx ((isd.003))" provNote="" rowIndex="5" shuffle="" stid="62eebbb4-1617-11e7-a126-5404a60d96b5" title="Sea Area Fraction" type="real" uid="baa3f2e0-e5dd-11e5-8482-ac72891c3257" vid="20e7d22ad09b324af00f41f6060701a7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hfsifrazil2d" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean seaIce" mtid="MIPtable::Omon" positive="" processing="If only the vertically integrated heat flux is available, report as this 2-d field; otherwise the row above should be used." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="87" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Heat Flux into Sea Water due to Frazil Ice Formation" type="real" uid="baa69504-e5dd-11e5-8482-ac72891c3257" vid="1b7e762395c4de9ec5c5c7bda3ce3781"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rh" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" prov="Lmon ((isd.003))" provNote="" rowIndex="41" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Heterotrophic Respiration on Land" type="real" uid="bab4f95a-e5dd-11e5-8482-ac72891c3257" vid="93723bb54a2c43450d75403102e618ac"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rlut4co2" mipTable="cfMon" mipTableSection="cfMon_2dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_2dmod" rowIndex="51" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_2dmod" title="TOA Outgoing Longwave Radiation 4XCO2 Atmosphere" type="real" uid="bab59a22-e5dd-11e5-8482-ac72891c3257" vid="0888eef64215cf18affe93ca142c95ad"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1051" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Carbonate ion Concentration" type="real" uid="ba9ffa46-e5dd-11e5-8482-ac72891c3257" vid="9791ce56083fe450761a27a7dc158225"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="rMaint" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" processing="This flux and the one in the previous row provide a breakdown of the higher priority &quot;Autotrophic (Plant) Respiration&quot; in an earlier row of this table; thus the sum should be identical to that." prov="Lmon ((isd.003))" provNote="" rowIndex="68" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Maintenance Autotrophic Respiration on Land" type="real" uid="bab4bc2e-e5dd-11e5-8482-ac72891c3257" vid="640213ff812312e3ac8bf134f483ed0d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="ONLY provide the sum of all the HO2/RO2 + NO reactions (as k*[HO2]*[NO])" frequency="mon" label="o3prod" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="O3 production rate" type="float" uid="19be78c6-81b1-11e6-92de-ac72891c3257" vid="9799d95c5c691eec9bb4c1bf9b050191"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Primary (organic carbon) production by diazotroph components alone" frequency="yr" label="ppdiaz" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="77" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Net Primary Mole Productivity of Carbon by Diazotrophs" type="real" uid="ba9ed300-e5dd-11e5-8482-ac72891c3257" vid="e52644bc-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Contains contributions from all physical processes affecting the northward heat transport, including resolved advection, parameterized advection, lateral diffusion, etc. Diagnosed here as a function of latitude and basin.   Use Celsius for temperature scale." frequency="mon" label="hfbasin" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, basin" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="49" shuffle="" stid="f949dcb2-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Northward Ocean Heat Transport" type="real" uid="baa5c87c-e5dd-11e5-8482-ac72891c3257" vid="1f5bb8c9dd54043a9d5f71dfe38f5a19"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is the rate of carbon uptake by leaves due to NPP" frequency="mon" label="nppLeaf" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="down" prov="Lmon ((isd.003))" provNote="" rowIndex="69" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux due to NPP Allocation to Leaf" type="real" uid="bab26e24-e5dd-11e5-8482-ac72891c3257" vid="df06d844bd95ddd2f0f62f54941c4b88"/>
<item defaultPriority="2" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by secondary deciduous trees." frequency="mon" label="treeFracSecDec" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="63" shuffle="" stid="fa2370fe-267c-11e7-9bed-ac72891c3257" title="Total Secondary Deciduous Tree Cover Fraction" type="real" uid="babaca24-e5dd-11e5-8482-ac72891c3257" vid="e9289080901a39eba6ade178d596795a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="&quot;skin&quot; temperature of all surfaces except open ocean." frequency="day" label="tslsi" mipTable="day" mipTableSection="day_ss" modeling_realm="land" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="31" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Surface Temperature Where Land or Sea Ice" type="real" uid="babb0eb2-e5dd-11e5-8482-ac72891c3257" vid="2a92e434b37059d90e72b193bdbcce0f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limirrdiaz" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="118" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Irradiance limitation of Diazotrophs" type="real" uid="baa02bc4-e5dd-11e5-8482-ac72891c3257" vid="9d815caba4e72a31b250865a534d95bd"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net time rate of change of total alkalinity" frequency="mon" label="fddtalk" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="182" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Total Alkalinity" type="real" uid="baa138fc-e5dd-11e5-8482-ac72891c3257" vid="3e0c9853afc682db9a950cc5bc3c1c3a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Contributions to heat transport from parameterized mesoscale eddy-induced advective transport. Diagnosed here as a function of latitude and basin.  Use Celsius for temperature scale." frequency="mon" label="hfbasinpmadv" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, basin" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="50" shuffle="" stid="f949dcb2-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="northward ocean heat transport due to parameterized mesoscale advection" type="real" uid="baa5ccb4-e5dd-11e5-8482-ac72891c3257" vid="32cbc6ae59c0abfe8e9c526e548452cc"/>
<item defaultPriority="1" deflate="" deflate_level="" description="for the whole atmospheric column, as seen from the surface or the top of the atmosphere. Include both large-scale and convective cloud." frequency="mon" label="clt" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="47" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Total Cloud Fraction" type="real" uid="baaad7e0-e5dd-11e5-8482-ac72891c3257" vid="7c2249d424dde72f8616d42870a9d425"/>
<item defaultPriority="1" deflate="" deflate_level="" description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1 (abiotic component).." frequency="yr" label="phabio" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="28" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Abiotic pH" type="real" uid="c9236db4-c5e8-11e6-84e6-5404a60d96b5" vid="c977c2da-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Convective cloud fraction" frequency="mon" label="cltc" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Convective Cloud Area Fraction" type="float" uid="01d412d0-c792-11e6-aa58-5404a60d96b5" vid="4e6ce0bc3ad0814b4c0523304965513f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="for the whole atmospheric column, as seen from the surface or the top of the atmosphere. Includes both large-scale and convective cloud." frequency="day" label="clt" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="30" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Total Cloud Fraction" type="real" uid="baaace4e-e5dd-11e5-8482-ac72891c3257" vid="7c2249d424dde72f8616d42870a9d425"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ch4" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="CH4 volume mixing ratio" type="float" uid="19bfc492-81b1-11e6-92de-ac72891c3257" vid="7f4c49e8abe3230e87fa7299b73448fa"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ta" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="23" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Air Temperature" type="real" uid="bab8ff64-e5dd-11e5-8482-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CMIP5 called this &quot;due to Bolus Advection&quot;.  Name change respects the more general physics of the mesoscale parameterizations." frequency="mon" label="msftmzmpa" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, Z, basin.   Also see note above." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="43" shuffle="" stid="529e94b4-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="ocean meridional overturning mass streamfunction due to parameterized mesoscale advection" type="real" uid="baa5af36-e5dd-11e5-8482-ac72891c3257" vid="bd75f065fbaddd5d92f4767c6d6baaff"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difvmto" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="23" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Vertical Momentum Diffusivity due to Tides" type="real" uid="baabed60-e5dd-11e5-8482-ac72891c3257" vid="9e50f2bc84a18f56a9c317be11770663"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at the top of the atmosphere (to be compared with satellite measurements)" frequency="subhr" label="rlut" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1043" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="TOA Outgoing Longwave Radiation" type="real" uid="80094026-f906-11e6-a176-5404a60d96b5" vid="63345d9732c72b97ca395f24ce2d6642"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difmxylo2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="43" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Ocean Momentum XY Laplacian Diffusivity" type="real" uid="a92a1360-817c-11e6-a4e2-5404a60d96b5" vid="64c32fcf490e2e5e9918a5401fa48424"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net biological terms in time rate of change of phosphorus" frequency="mon" label="fbddtdip" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="185" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Dissolved Inorganic Phosphorus due to Biological Activity" type="real" uid="baa1457c-e5dd-11e5-8482-ac72891c3257" vid="2f046f30404d6cfcd5286a2a7f12d8fa"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Contributions to heat transport from parameterized mesoscale eddy-induced advective transport. Diagnosed here as a function of latitude and basin.  Use Celsius for temperature scale." frequency="mon" label="hfbasinpsmadv" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, basin" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="52" shuffle="" stid="f949dcb2-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="northward ocean heat transport due to parameterized submesoscale advection" type="real" uid="baa5d524-e5dd-11e5-8482-ac72891c3257" vid="cfc72744e73c1f6116661e251316c04f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." frequency="mon" label="hurs" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="express as a percentage.  Normally, the relative humidity  should be reported at the 2 meter height" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="23" shuffle="" stid="f7e1ef26-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Near-Surface Relative Humidity" type="real" uid="baaff41e-e5dd-11e5-8482-ac72891c3257" vid="c75f684ec69602e9de82b48e53afb2cc"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ch3coch3" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="CH3COCH3  volume mixing ratio" type="float" uid="19be4d92-81b1-11e6-92de-ac72891c3257" vid="fe6c8d8e-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="anthropogenic part of chepsoa" frequency="mon" label="chepasoa" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total net production of anthropogenic secondary organic aerosol" type="float" uid="19bf7d0c-81b1-11e6-92de-ac72891c3257" vid="4ffc1f50b844980dbbae006dbcfca869"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Full column sum of density*cell thickness*salinity. If the model is Boussinesq, then use Boussinesq reference density for the density factor." frequency="yr" label="somint" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="5" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="integral wrt depth of product of sea water density and salinity" type="real" uid="1aaf4d2c-b006-11e6-9289-ac72891c3257" vid="180d4bd9a18a9d5ecf3d45690b8e9c75"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Prognostic x-ward velocity component resolved by the model." frequency="dec" label="uo" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Odec ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" title="Sea Water X Velocity" type="real" uid="4795ac40-bb0b-11e6-8316-5980f7b176d1" vid="1ed3e3be3675e589a5327ce82016ab72"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Ocean tracer diffusivity associated with parameterized eddy-induced advective transport. Sometimes this diffusivity is called the &quot;thickness&quot; diffusivity. For CMIP5, this diagnostic was called &quot;ocean tracer bolus laplacian diffusivity&quot;.  The CMIP6 name is physically more relevant." frequency="yr" label="diftrblo" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="28" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="ocean tracer diffusivity due to parameterized mesoscale advection" type="real" uid="baa4d82c-e5dd-11e5-8482-ac72891c3257" vid="1cf6c7fa0adedf95b3eaad5fb3f96b1c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="hr" label="sfno2" mipTable="aerhourly" mipTableSection="aerhourly" modeling_realm="aerosol" mtid="MIPtable::aerhourly" positive="" prov="aerhourly ((isd.003))" provNote="aerhourly" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="NO2 volume mixing ratio in lowest model layer" type="float" uid="19c0775c-81b1-11e6-92de-ac72891c3257" vid="fe6ca864-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="uas" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1020" shuffle="" stid="3cbb316e-1a15-11e7-8130-ac72891c3257" title="Eastward Near-Surface Wind" type="real" uid="80077a3e-f906-11e6-a176-5404a60d96b5" vid="e72b243a2a1c8691ab0168d8b62534c2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="ps" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="15" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="Surface Air Pressure" type="real" uid="bab46db4-e5dd-11e5-8482-ac72891c3257" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="o2" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1029" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Dissolved Oxygen Concentration" type="real" uid="ba9f9e7a-e5dd-11e5-8482-ac72891c3257" vid="c2705ac5fb7561a3aa5744c1163bf2d7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Gas exchange flux of DMS (positive into atmosphere)" frequency="mon" label="fgdms" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="163" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Upward Flux of DMS" type="real" uid="baa0e906-e5dd-11e5-8482-ac72891c3257" vid="190f38cb06f9a1f3133c3dcf66e0421e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes also the fluxes at the surface and TOA." frequency="mon" label="rldcs" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="down" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="21" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Downwelling Clear-Sky Longwave Radiation" type="real" uid="bab5268c-e5dd-11e5-8482-ac72891c3257" vid="e79eb59d74038643b2201bb0556e720a"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon concentration from the diazotrophic phytoplankton component alone" frequency="yr" label="phydiaz" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="17" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Diazotrophs Expressed as Carbon in sea water" type="real" uid="ba9de1c0-e5dd-11e5-8482-ac72891c3257" vid="ad7df7199759ad25164da83e37a6da17"/>
<item defaultPriority="1" deflate="" deflate_level="" description="computed as the water  flux into the ocean divided by the area of the ocean portion of the grid cell.  This is the sum of the next two variables in this table." frequency="mon" label="wfo" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="net flux of water into sea water, including any flux correction. Report on native horizontal grid as well as mapped onto sphere." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="68" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Water Flux into Sea Water" type="real" uid="baa63578-e5dd-11e5-8482-ac72891c3257" vid="c3805ef555348a5f525cf09ccb254af4"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of detrital organic carbon component concentrations" frequency="mon" label="detocos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="14" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Detrital Organic Carbon Concentration" type="real" uid="c917fcb8-c5e8-11e6-84e6-5404a60d96b5" vid="c96cb7e6-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="od550ss" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="sea salt aod@550nm" type="float" uid="19bec380-81b1-11e6-92de-ac72891c3257" vid="a4105b51d498d46985677801436e7649"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CFADs (Cloud Frequency Altitude Diagrams) are joint height - radar reflectivity (or lidar scattering ratio) distributions." frequency="subhr" label="cfadLidarsr532" mipTable="cfOff" modeling_realm="atmos" mtid="MIPtable::cfOff" positive="" processing="40 levelsx15 bins" prov="cfOff ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7e2f25e-562c-11e6-a2a4-ac72891c3257" title="CALIPSO Scattering Ratio" type="real" uid="baa98250-e5dd-11e5-8482-ac72891c3257" vid="823b0a0d39e3f3f3a992c49948fde77c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="3hr" label="ta" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="21" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Air Temperature" type="real" uid="bab8fbc2-e5dd-11e5-8482-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="zg" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="atmos" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Geopotential Height" type="float" uid="fda6ad38-96ec-11e6-b81e-c9e268aff03a" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="o2os" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="30" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Dissolved Oxygen Concentration" type="real" uid="c918f7d0-c5e8-11e6-84e6-5404a60d96b5" vid="c96d9daa-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at the top of the atmosphere" frequency="subhr" label="rsut" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1042" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="TOA Outgoing Shortwave Radiation" type="real" uid="80092bcc-f906-11e6-a176-5404a60d96b5" vid="b907fef85d4c9571a9457ee1b259bb8f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="time-means weighted by the ISCCP Total Cloud Fraction - see http://cfmip.metoffice.com/COSP.html" frequency="mon" label="albisccp" mipTable="cfMon" mipTableSection="cfMon_sim" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_sim" rowIndex="63" shuffle="" stid="f948cdfe-80ba-11e6-ab6e-5404a60d96b5" subGroup="cfMon_sim" title="ISCCP Mean Cloud Albedo" type="real" uid="baa817c6-e5dd-11e5-8482-ac72891c3257" vid="bb4d31072e09cd4935f1c20a2c533bbd"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Potential temperature at the ocean bottom-most grid cell." frequency="mon" label="tob" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="17" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Sea Water Potential Temperature at Sea Floor" type="real" uid="baa53218-e5dd-11e5-8482-ac72891c3257" vid="3a9ebed36fac6d76f1c7d70b6cf06991"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Streamfunction or its approximation for free surface models. See OMDP document for details." frequency="mon" label="msftbarot" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="27" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Ocean Barotropic Mass Streamfunction" type="real" uid="baa57250-e5dd-11e5-8482-ac72891c3257" vid="5edcb9a162e51d0a2c8d42a75bed04ef"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rsus" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="up" prov="day ((isd.003))" provNote="day_ss" rowIndex="44" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Surface Upwelling Shortwave Radiation" type="real" uid="bab65ad4-e5dd-11e5-8482-ac72891c3257" vid="70bf79db957daa3b82413da949233ac7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="commonly referred to as &quot;omega&quot;, this represents the vertical component of velocity in pressure coordinates (positive down)" frequency="day" label="wap" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="53" shuffle="" stid="f7e6b556-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="omega (=dp/dt)" type="real" uid="babd0e56-e5dd-11e5-8482-ac72891c3257" vid="51fb29dd55442361fa9c5dbe23aca9c6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="AOD from the ambient aerosls (i.e., includes aerosol water).  Does not include AOD from stratospheric aerosols if these are prescribed but includes other possible background aerosol types. Needs a comment attribute &quot;wavelength: 870 nm&quot;" frequency="mon" label="od870aer" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="ambient aerosol optical thickness at 870 nm" type="float" uid="19c04a2a-81b1-11e6-92de-ac72891c3257" vid="0a9c3f8ff6151a5baa8bb93d5a1fa090"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Diagnostic should be contributed even for models using conservative temperature as prognostic field" frequency="dec" label="thetaoga" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Note change from CMIP5 K to CMIP6 C" prov="Odec ((isd.003))" provNote="" rowIndex="7" shuffle="" stid="f7e2e214-562c-11e6-a2a4-ac72891c3257" title="Global Average Sea Water Potential Temperature" type="real" uid="47953134-bb0b-11e6-8316-5980f7b176d1" vid="f0280734103f054b10012331ab1c0459"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." frequency="3hr" label="reffsnows" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="40" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Hydrometeor Effective Radius of Stratiform Snowfall" type="real" uid="bab4efa0-e5dd-11e5-8482-ac72891c3257" vid="3723cf3c0aef7741d065625c75d34d9a"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration at preindustrial atmospheric xCO2" frequency="mon" label="dissicnat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1005" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Natural Dissolved Inorganic Carbon Concentration" type="real" uid="ba9f3ef8-e5dd-11e5-8482-ac72891c3257" vid="2fcdf51262cdbc4279810b7a487b149e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="tauu" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="down" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="30" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Downward Eastward Wind Stress" type="real" uid="bab96cc4-e5dd-11e5-8482-ac72891c3257" vid="3abb7c5b4c4650e9d17a8439004aebea"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon  concentration from the microzooplankton (&lt;20 um) component alone" frequency="mon" label="zmicroos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="22" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Microzooplankton expressed as Carbon in Sea Water" type="real" uid="c9186d38-c5e8-11e6-84e6-5404a60d96b5" vid="c96d280c-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="monthly averaged atmospheric loss" frequency="mon" label="lossn2o" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Monthly Loss of atmospheric Nitrous Oxide" type="float" uid="fdb1c1c8-96ec-11e6-b81e-c9e268aff03a" vid="2b133ea2-1b42-11e6-a696-35cd2d8034df"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate aragonite components (e.g. Phytoplankton, Detrital, etc.)" frequency="yr" label="arag" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="15" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Aragonite Concentration" type="real" uid="ba9dd91e-e5dd-11e5-8482-ac72891c3257" vid="a72a0bcf271db9db3a7fb9b7f3e7b93a"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton silica component concentrations" frequency="yr" label="physi" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="49" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Total Phytoplankton expressed as Silicon in sea water" type="real" uid="ba9e6d5c-e5dd-11e5-8482-ac72891c3257" vid="6cde3055df67931d84608fc5b7694f65"/>
<item defaultPriority="3" deflate="" deflate_level="" description="chlorophyll concentration from the calcite-producing phytoplankton component alone" frequency="mon" label="chlcalcos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="40" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mass Concentration of Calcareous Phytoplankton expressed as Chlorophyll in sea water" type="real" uid="c919877c-c5e8-11e6-84e6-5404a60d96b5" vid="c96e2752-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="not, in general, the same as surface pressure" frequency="subhr" label="psl" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1018" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Sea Level Pressure" type="real" uid="800753d8-f906-11e6-a176-5404a60d96b5" vid="3d23c359f44d6a153c4dcab9e07d7cb6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="time-means are weighted by the ISCCP Total Cloud Fraction - see  http://cfmip.metoffice.com/COSP.html" frequency="day" label="pctisccp" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="40" shuffle="" stid="f948cdfe-80ba-11e6-ab6e-5404a60d96b5" subGroup="cfDay_2d" title="ISCCP Mean Cloud Top Pressure" type="real" uid="bab31da6-e5dd-11e5-8482-ac72891c3257" vid="987be9b68c051baf4f0c5b6e8c26b4d8"/>
<item defaultPriority="1" deflate="" deflate_level="" description="gas exchange flux of CFC12" frequency="mon" label="fgcfc12" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="8" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Surface Downward CFC12 flux" type="real" uid="ba9b4000-e5dd-11e5-8482-ac72891c3257" vid="e9e21426e4810d0bb2d3dddb24dbf4dc"/>
<item defaultPriority="2" deflate="" deflate_level="" description="carbon concentration from the diazotrophic phytoplankton component alone" frequency="mon" label="phydiaz" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1017" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Diazotrophs Expressed as Carbon in sea water" type="real" uid="ba9f70bc-e5dd-11e5-8482-ac72891c3257" vid="ad7df7199759ad25164da83e37a6da17"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net time rate of change of dissolved inorganic iron" frequency="mon" label="fddtdife" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="180" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Net Dissolved Inorganic Iron" type="real" uid="baa13064-e5dd-11e5-8482-ac72891c3257" vid="df087f7801b9ca8b671eba159de9b6e7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Primary (organic carbon) production by other phytoplankton components alone" frequency="yr" label="ppmisc" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="80" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Net Primary Organic Carbon Production by Other Phytoplankton" type="real" uid="ba9ee3a4-e5dd-11e5-8482-ac72891c3257" vid="e5278b06-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CMIP5 called this &quot;due to Bolus Advection&quot;.  Name change respects the more general physics of the mesoscale parameterizations." frequency="mon" label="msftyrhompa" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of Y, rho, basin.  Also see note above." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="46" shuffle="" stid="529d692c-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="ocean Y overturning mass streamfunction due to parameterized mesoscale advection" type="real" uid="baa5bbe8-e5dd-11e5-8482-ac72891c3257" vid="66a6e45b205b239932b72fa67a6500ed"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the total runoff (including &quot;drainage&quot; through the base of the soil model) leaving the land portion of the grid cell divided by the land area in the grid cell, averaged over the 3-hour interval." frequency="3hr" label="mrro" mipTable="3hr" modeling_realm="land" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="30" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Runoff" type="real" uid="bab177b2-e5dd-11e5-8482-ac72891c3257" vid="e0a0f457ec117b27ca8353b11bf9d4fa"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Sum of dissolved carbon component concentrations explicitly represented (i.e. not ~40 uM refractory unless explicit)" frequency="mon" label="dissocos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="10" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Dissolved Organic Carbon Concentration" type="real" uid="c917c48c-c5e8-11e6-84e6-5404a60d96b5" vid="c96c8078-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes also the fluxes at the surface and TOA." frequency="mon" label="rsucs" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="20" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Upwelling Clear-Sky Shortwave Radiation" type="real" uid="bab64ee0-e5dd-11e5-8482-ac72891c3257" vid="eb72b66b6365daed79aefeda9d3d30b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="evu" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="46" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Eddy Viscosity Coefficient for Momentum Variables" type="real" uid="a955d662-817c-11e6-a4e2-5404a60d96b5" vid="52c137a21845ae294b27ad40eaca096d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Flux corresponding to rsutcs resulting fom aerosol-free call to radiation" frequency="mon" label="rsutcsaf" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="toa outgoing clear-sky shortwave radiation" type="float" uid="8feac232-267c-11e7-8933-ac72891c3257" vid="c9a70b4e-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="medium is meant as lifetime of more than than 10 years and less than 100 years for  reference climate conditions (20 C, no water limitations)" frequency="mon" label="cSoilMedium" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="58" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Medium Soil Pool" type="real" uid="baa8f326-e5dd-11e5-8482-ac72891c3257" vid="da701000818e31103a9b7d9eedee14a2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="hfls" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="up" prov="day ((isd.003))" provNote="day_ss" rowIndex="39" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Surface Upward Latent Heat Flux" type="real" uid="baaf0a9a-e5dd-11e5-8482-ac72891c3257" vid="95cbf6ac889c8fe7d92e20e8c34960d1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is a 3-hour mean flux." frequency="3hr" label="rsdsdiff" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="36" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Diffuse Downwelling Shortwave Radiation" type="real" uid="bab61768-e5dd-11e5-8482-ac72891c3257" vid="f27656eeae247192e82aa1032c911399"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="obvfsq" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="32" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Square of Brunt Vaisala Frequency in Sea Water" type="real" uid="1aab5d20-b006-11e6-9289-ac72891c3257" vid="d4eeac2e-b00f-11e6-a1f0-ac72891c3257"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limirrmisc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="121" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Irradiance Limitation of Other Phytoplankton" type="real" uid="baa03826-e5dd-11e5-8482-ac72891c3257" vid="883fe8c76f1bd133e9075182240b1ca0"/>
<item defaultPriority="2" deflate="" deflate_level="" description="From all advective mass transport processes, resolved and parameterized." frequency="mon" label="sltovgyre" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, basin" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="58" shuffle="" stid="f7df8fce-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Northward Ocean Salt Transport due to Gyre" type="real" uid="baa5f7de-e5dd-11e5-8482-ac72891c3257" vid="9e64d2aadc59070a13e29979b6c9541b"/>
<item defaultPriority="3" deflate="" deflate_level="" description="square of temperature of liquid ocean, averaged over the day." frequency="day" label="tossq" mipTable="Oday" modeling_realm="ocean" mtid="MIPtable::Oday" positive="" processing="Report on the ocean horizontal native grid." prov="Oday ((isd.003))" provNote="" rowIndex="2" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Square of Sea Surface Temperature" type="real" uid="baa71c7c-e5dd-11e5-8482-ac72891c3257" vid="d1b497a4f7f4cb666757ec97d152079e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Droplets are liquid only.  This is the effective radius &quot;&quot;as seen from space&quot;&quot; over liquid cloudy portion of grid cell. This is the value from uppermost model layer with liquid cloud or, if available, or for some models it is the sum over all liquid cloud tops, no matter where they occur, as long as they are seen from the top of the atmosphere.TOA) each time sample when computing monthly mean. Reported values are weighted by total liquid cloud top fraction of  (as seen from TOA) each time sample when computing monthly mean." frequency="mon" label="reffclwtop" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="cloud-top effective droplet radius" type="float" uid="19bef6d4-81b1-11e6-92de-ac72891c3257" vid="83d1d066c3325c7402b6265eee068056"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="tnta" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="25" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Air Temperature due to Advection" type="real" uid="baba4f22-e5dd-11e5-8482-ac72891c3257" vid="ea55d8afe6bacbfa1029c0048717eaaa"/>
<item defaultPriority="1" deflate="" deflate_level="" description="time-means are weighted by the ISCCP Total Cloud Fraction - see  http://cfmip.metoffice.com/COSP.html" frequency="day" label="albisccp" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="39" shuffle="" stid="f948cdfe-80ba-11e6-ab6e-5404a60d96b5" subGroup="cfDay_2d" title="ISCCP Mean Cloud Albedo" type="real" uid="baa8144c-e5dd-11e5-8482-ac72891c3257" vid="bb4d31072e09cd4935f1c20a2c533bbd"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is the in-cloud optical depth obtained by considering only the cloudy portion of the grid cell." frequency="3hr" label="dtaus" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="41" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Stratiform Cloud Optical Depth" type="real" uid="baac7a96-e5dd-11e5-8482-ac72891c3257" vid="ffa75c4442ad340cb0cdeb11aa19f044"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hus" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="65" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Specific Humidity" type="real" uid="bab00b98-e5dd-11e5-8482-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rsds" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="down" prov="day ((isd.003))" provNote="day_ss" rowIndex="43" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Surface Downwelling Shortwave Radiation" type="real" uid="bab5ecd4-e5dd-11e5-8482-ac72891c3257" vid="6e7b9f984d3bba15daccaaa18039a85d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ua" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="63" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Eastward Wind" type="real" uid="babb4b34-e5dd-11e5-8482-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="dms" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1050" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Dimethyl Sulphide in sea water" type="real" uid="a95f9e04-817c-11e6-a4e2-5404a60d96b5" vid="04f25e5e4c98a0a98575bc3d805bb03a"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as &quot;where ice_free_sea over sea&quot;" frequency="mon" label="rlntds" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="90" shuffle="" stid="f948921c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Net Downward Longwave Radiation" type="real" uid="1ded891c-b00c-11e6-bdc9-ac72891c3257" vid="b16fab4e82317586d4bc72d786a6a1db"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="hus" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="48" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Specific Humidity" type="real" uid="bab00d50-e5dd-11e5-8482-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Primary (organic carbon) production by picophytoplankton components alone" frequency="yr" label="pppico" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="79" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Net Primary Mole Productivity of Carbon by Picophytoplankton" type="real" uid="ba9edb84-e5dd-11e5-8482-ac72891c3257" vid="e527532a-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="the precipitation flux that is intercepted by the vegetation canopy (if present in model) before reaching the ground." frequency="mon" label="prveg" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="19" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Precipitation onto Canopy" type="real" uid="bab45658-e5dd-11e5-8482-ac72891c3257" vid="e54a3eda3d5fc42a9cd1354038ad45ed"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="c2h6" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="C2H6 volume mixing ratio" type="float" uid="19be6ac0-81b1-11e6-92de-ac72891c3257" vid="7ec31850a34ee43e98c5d526770fb581"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Aerosol Extinction @550nm" frequency="6hr" label="ec550aer" mipTable="6hrLev_aer" mipTableSection="aer6hr" modeling_realm="aerosol" mtid="MIPtable::6hrLev_aer" positive="" prov="6hrLev [aer] ((isd.002))" provNote="aer6hr" rowIndex="-1" shuffle="" stid="62ef559c-1617-11e7-a126-5404a60d96b5" title="Aerosol extinction coefficient" type="float" uid="8feccd66-267c-11e7-8933-ac72891c3257" vid="be9cffbb781e32b0bc311b22fa5c0322"/>
<item defaultPriority="2" deflate="" deflate_level="" description="total alkalinity equivalent concentration (including carbonate, borate, phosphorus, silicon, and nitrogen components)" frequency="mon" label="talk" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1024" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Total Alkalinity" type="real" uid="ba9f91f0-e5dd-11e5-8482-ac72891c3257" vid="d90bac355dae4e53a6d0e5df81a090ad"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton nitrogen component concentrations" frequency="mon" label="phyn" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1046" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Total Phytoplankton expressed as Nitrogen in sea water" type="real" uid="ba9fe560-e5dd-11e5-8482-ac72891c3257" vid="80f337469efdd0d5392ad995a90fd15c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="va" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="54" shuffle="" stid="f7e6b556-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Northward Wind" type="real" uid="babbbbe6-e5dd-11e5-8482-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="3" deflate="" deflate_level="" description="chlorophyll concentration from the diazotrophic phytoplankton component alone" frequency="mon" label="chldiazos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="39" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mass Concentration of Diazotrophs expressed as Chlorophyll in sea water" type="real" uid="c91979b2-c5e8-11e6-84e6-5404a60d96b5" vid="c96e19b0-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="pbsi" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1059" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Biogenic Silica Production" type="real" uid="c92565b0-c5e8-11e6-84e6-5404a60d96b5" vid="683b8f723c94f4a3b3e65569b975d648"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsut4co2" mipTable="cfMon" mipTableSection="cfMon_2dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_2dmod" rowIndex="50" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_2dmod" title="TOA Outgoing Shortwave Radiation in 4XCO2 Atmosphere" type="real" uid="bab68158-e5dd-11e5-8482-ac72891c3257" vid="58bbe37eb1035d22ab051fcfa10c67d9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CFADs (Cloud Frequency Altitude Diagrams) are joint height - radar reflectivity (or lidar scattering ratio) distributions  ." frequency="subhr" label="cfadDbze94" mipTable="cfOff" modeling_realm="atmos" mtid="MIPtable::cfOff" positive="" processing="40 levelsx15 bins" prov="cfOff ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7ddfaba-562c-11e6-a2a4-ac72891c3257" title="CloudSat Radar Reflectivity" type="real" uid="baa97de6-e5dd-11e5-8482-ac72891c3257" vid="5a6730cdd3fef77dc53ea1f61b23821f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="fx" label="areacella" mipTable="fx" modeling_realm="atmos land" mtid="MIPtable::fx" positive="" processing="For atmospheres with more than 1 mesh (e.g., staggered grids), report areas that apply to surface vertical fluxes of energy." prov="fx ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7decc10-562c-11e6-a2a4-ac72891c3257" title="Atmosphere Grid-Cell Area" type="real" uid="baa83a12-e5dd-11e5-8482-ac72891c3257" vid="c47a4040603c03d250c73e9c266a24bb"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="cfc12" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="5" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Moles Per Unit Mass of CFC-12 in sea water" type="real" uid="ba9b21d8-e5dd-11e5-8482-ac72891c3257" vid="3ab8e10027d7014f18f9391890369235"/>
<item defaultPriority="1" deflate="" deflate_level="" description="monthly mean of the daily-maximum near-surface air temperature." frequency="mon" label="tasmax" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="normally, this should be reported at the 2 meter height." prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="17" shuffle="" stid="f7e04194-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Daily Maximum Near-Surface Air Temperature" type="real" uid="bab942a8-e5dd-11e5-8482-ac72891c3257" vid="2dd48e8c50b4b88a83ff07d308e4e642"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Primary (organic carbon) production by phytoplankton due to nitrate uptake alone" frequency="mon" label="pnitrate" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1057" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Primary Carbon Production by Phytoplankton due to Nitrate Uptake Alone" type="real" uid="c9253cb6-c5e8-11e6-84e6-5404a60d96b5" vid="a3dd8da8b39dde98682ad859d8f5f5c2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Geopotential height on the 100 hPa surface" frequency="day" label="zg100" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="62eef566-1617-11e7-a126-5404a60d96b5" title="Geopotential Height at 100 hPa" type="float" uid="19be0332-81b1-11e6-92de-ac72891c3257" vid="b1644981b0abd369ad35fac3fc930873"/>
<item defaultPriority="1" deflate="" deflate_level="" description="ONLY provide the sum of the following reactions: (i) O(1D)+H2O; (ii) O3+HO2; (iii) O3+OH; (iv) O3+alkenes (isoprene, ethene,...)" frequency="mon" label="o3loss" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="O3 destruction rate" type="float" uid="19bec7d6-81b1-11e6-92de-ac72891c3257" vid="8f702d9afa69b3f0e0fb2a64470e12d8"/>
<item defaultPriority="1" deflate="" deflate_level="" description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition" frequency="mon" label="drynh3" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of nh3" type="float" uid="19bf8acc-81b1-11e6-92de-ac72891c3257" vid="9fd5c69c5f00bd2434436f2e9033f545"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="hr" label="sfo3" mipTable="aerhourly" mipTableSection="aerhourly" modeling_realm="aerosol" mtid="MIPtable::aerhourly" positive="" prov="aerhourly ((isd.003))" provNote="aerhourly" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="O3 volume mixing ratio in lowest model layer" type="float" uid="19c07cca-81b1-11e6-92de-ac72891c3257" vid="fe6cecca-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fraction of time that shallow convection occurs in the grid cell." frequency="subhr" label="sci" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1054" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Fraction of Time Shallow Convection Occurs" type="real" uid="800a1640-f906-11e6-a176-5404a60d96b5" vid="8de0f30b91b15720398fc10fd712a182"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="cllcalipso" mipTable="cfMon" mipTableSection="cfMon_sim" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_sim" rowIndex="67" shuffle="" stid="f7de3bd8-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_sim" title="CALIPSO Percentage Low Level Cloud" type="real" uid="baaab4b8-e5dd-11e5-8482-ac72891c3257" vid="0bbbf303ac691061a69938846f32b23b"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="epsi100" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="at 100 m depth." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="144" shuffle="" stid="f948813c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Downward Flux of Particulate Silica" type="real" uid="5a35f1ba-c77d-11e6-8a33-5404a60d96b5" vid="f0260f7e851aaf39ac2349b365db89b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculate as the mass of stratiform cloud ice  in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  Include precipitating hydrometeors ONLY if the precipitating hydrometeor affects the calculation of radiative transfer in model." frequency="3hr" label="clis" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="24" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Mass Fraction of Stratiform Cloud Ice" type="real" uid="baaa8f4c-e5dd-11e5-8482-ac72891c3257" vid="4dbe7bd9b38439125b341edba15aa66a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hno3" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="HNO3 volume mixing ratio" type="float" uid="fda6c5d4-96ec-11e6-b81e-c9e268aff03a" vid="07ae8a0c132c9bf65a2722885a2fcd08"/>
<item defaultPriority="1" deflate="" deflate_level="" description="The snow and ice sublimation flux is the loss of snow and ice mass resulting from their conversion to water vapor.  Computed as the total sublimation on the land portion of the grid cell divided by the land area in the grid cell; reported as 0.0 for snow-free land regions; reported as 0.0 where the land fraction is 0." frequency="mon" label="sbl" mipTable="LImon" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="18" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Snow and Ice Sublimation Flux" type="real" uid="bab6bba0-e5dd-11e5-8482-ac72891c3257" vid="3a8e1636a31c82fbdd9a1ae45ab3be7d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="tas" mipTable="day" mipTableSection="day_oth" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally report this at 2 meters above the surface" prov="day ((isd.003))" provNote="day_oth" rowIndex="17" shuffle="" stid="f7e1ef26-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Near-Surface Air Temperature" type="real" uid="bab928ae-e5dd-11e5-8482-ac72891c3257" vid="5c4978e802ba55d5a298cf1b3bdc2b3a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="va" mipTable="6hrLev" modeling_realm="atmos" mtid="MIPtable::6hrLev" positive="" processing="on all model levels" prov="6hrLev ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f94870ca-80ba-11e6-ab6e-5404a60d96b5" title="Northward Wind" type="real" uid="babbaebc-e5dd-11e5-8482-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon from the diatom phytoplankton component concentration alone" frequency="yr" label="phydiat" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="16" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Diatoms expressed as Carbon in sea water" type="real" uid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257" vid="5880ab9386066d5d620774a46840cc25"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." frequency="mon" label="tauucorr" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="If this does not vary from one year to the next, report only a single year. Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="99" shuffle="" stid="00b9aebc-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_oth" title="Surface Downward X Stress Correction" type="real" uid="baa6d78a-e5dd-11e5-8482-ac72891c3257" vid="06942529e05aac1e9a39ca1f5737af2f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="cod" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="cloud optical depth" type="float" uid="19bf238e-81b1-11e6-92de-ac72891c3257" vid="db3d77eebc6dc2fbcab4e0f894e46037"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rsdscs" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="down" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="18" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="Surface Downwelling Clear-Sky Shortwave Radiation" type="real" uid="bab60b42-e5dd-11e5-8482-ac72891c3257" vid="d0a35d5c99a0aa93ad4069cfe83bf748"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is actual height above mean sea level, not geopotential height.  This is actual height above mean sea level, not geopotential height.  Includes both the top of the model atmosphere and surface levels." frequency="3hr" label="zhalf" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="18" shuffle="" stid="f7dc8770-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Altitude of Model Half-Levels" type="real" uid="babdb2b6-e5dd-11e5-8482-ac72891c3257" vid="211dfdaa-b89b-11e6-a189-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Ozone tracer intended to map out strat-trop exchange (STE) of ozone." frequency="mon" label="o3ste" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Ozone volume mixing ratio" type="float" uid="fdb19130-96ec-11e6-b81e-c9e268aff03a" vid="218a6b28-8995-11e6-b63d-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="fast is meant as lifetime of more than 100 years for  reference climate conditions (20 C, no water limitations)" frequency="mon" label="cSoilSlow" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="59" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Slow Soil Pool" type="real" uid="baa8faf6-e5dd-11e5-8482-ac72891c3257" vid="369a3a9e55ca8e6729a62a79bf701e5d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="cfc11" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="4" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Moles Per Unit Mass of CFC-11 in sea water" type="real" uid="ba9ad9c6-e5dd-11e5-8482-ac72891c3257" vid="42625c97b8fe75124a345962c4430982"/>
<item defaultPriority="1" deflate="" deflate_level="" description="sum of chlorophyll from all phytoplankton group concentrations.  In most models this is equal to chldiat+chlmisc, that is the sum of &quot;Diatom Chlorophyll Mass Concentration&quot; plus &quot;Other Phytoplankton Chlorophyll Mass Concentration&quot;" frequency="yr" label="chl" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="36" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mass Concentration of Total Chlorophyll in sea water" type="real" uid="ba9e3274-e5dd-11e5-8482-ac72891c3257" vid="ab60603d901dfa1c47f4d2fd7784f8ea"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Primary (organic carbon) production by phytoplankton due to nitrate uptake alone" frequency="yr" label="pnitrate" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="57" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Primary Carbon Production by Phytoplankton due to Nitrate Uptake Alone" type="real" uid="ba9e8fb2-e5dd-11e5-8482-ac72891c3257" vid="a3dd8da8b39dde98682ad859d8f5f5c2"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll concentration from the calcite-producing phytoplankton component alone" frequency="mon" label="chlcalc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1039" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mass Concentration of Calcareous Phytoplankton expressed as Chlorophyll in sea water" type="real" uid="ba9fc3fa-e5dd-11e5-8482-ac72891c3257" vid="df96c61c07957da1c4e8212f0553fa98"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Rate that work is done against vertical stratification, as measured by the vertical heat and salt diffusivity. Report here as depth integrated two-dimensional field." frequency="yr" label="tnpeo" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="27" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of ocean potential energy content" type="real" uid="baa4b4e6-e5dd-11e5-8482-ac72891c3257" vid="dfd869cd3463de6a57b2a9e10605efe7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="od550bc" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="black carbon aod@550nm" type="float" uid="19bf8f18-81b1-11e6-92de-ac72891c3257" vid="15f4ad18bed7c35304209c651ef3758a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="anthropogenic part of emioa" frequency="mon" label="emiaoa" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission of anthropogenic  organic aerosol" type="float" uid="19bfaf84-81b1-11e6-92de-ac72891c3257" vid="a4e52f0f3833b395c09c73f1b6f3f748"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." frequency="3hr" label="reffclws" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="27" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Hydrometeor Effective Radius of Stratiform Cloud Liquid Water" type="real" uid="bab4dfc4-e5dd-11e5-8482-ac72891c3257" vid="ed2fff61c68d8a09d5034168e82ae862"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This includes any horizontal or vertical numerical moisture diffusion not associated with the parametrized moist physics or the resolved dynamics.  For example, any vertical diffusion which is part of the boundary layer mixing scheme should be excluded, as should any diffusion which is included in the terms from the resolved dynamics.   This term is required to check the closure of the moisture budget." frequency="subhr" label="tnhusd" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="43" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Specific Humidity due to Numerical Diffusion" type="real" uid="a955b11e-817c-11e6-a4e2-5404a60d96b5" vid="2c8cb564bae033f641135194947da163"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrxylo2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="40" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer XY Laplacian Diffusivity" type="real" uid="a929ef2a-817c-11e6-a4e2-5404a60d96b5" vid="478c43820503be64675fb49227d2f999"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Total volume of liquid sea water." frequency="dec" label="volo" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" prov="Odec ((isd.003))" provNote="" rowIndex="4" shuffle="" stid="f7dda574-562c-11e6-a2a4-ac72891c3257" title="Sea Water Volume" type="real" uid="47950696-bb0b-11e6-8316-5980f7b176d1" vid="a86d0b2abcfe5055d91478b5c771bf34"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." frequency="day" label="hur" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="51" shuffle="" stid="f7e6b556-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Relative Humidity" type="real" uid="baafec80-e5dd-11e5-8482-ac72891c3257" vid="3cc6766c2d001a58d18dfe7f60fd5e66"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the mass per unit area  (summed over all soil layers) of water in all phases." frequency="mon" label="mrso" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Soil Moisture Content" type="real" uid="bab1a782-e5dd-11e5-8482-ac72891c3257" vid="af574f1ac4a9f44a2d943352a455cfeb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at the top of the atmosphere" frequency="mon" label="rsdt" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="down" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="41" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="TOA Incident Shortwave Radiation" type="real" uid="bab6219a-e5dd-11e5-8482-ac72891c3257" vid="a21e250a10f96b1c1ad6d742206a157e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="sfcWindmax" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally, report this at 10 meters above the surface" prov="day ((isd.003))" provNote="day_ss" rowIndex="38" shuffle="" stid="f7de8a48-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Daily Maximum Near-Surface Wind Speed" type="real" uid="bab709de-e5dd-11e5-8482-ac72891c3257" vid="1c15d05ab96de917359e54b16c4fbf14"/>
<item defaultPriority="1" deflate="" deflate_level="" description="total alkalinity equivalent concentration (including carbonate, borate, phosphorus, silicon, and nitrogen components) at preindustrial atmospheric xCO2" frequency="mon" label="talknatos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="26" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Natural Total Alkalinity" type="real" uid="c918a5be-c5e8-11e6-84e6-5404a60d96b5" vid="c96d62fe-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="no3os" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="32" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Dissolved Nitrate Concentration" type="real" uid="c91915f8-c5e8-11e6-84e6-5404a60d96b5" vid="c96db98e-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Diagnostic should be contributed even for models using conservative temperature as prognostic field." frequency="mon" label="thetao" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Note change from CMIP5 K to CMIP6 C. Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="12" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Sea Water Potential Temperature" type="real" uid="baa51d00-e5dd-11e5-8482-ac72891c3257" vid="cf53bdf4168a9107354d059ff39b5753"/>
<item defaultPriority="2" deflate="" deflate_level="" description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1 (abiotic component).." frequency="mon" label="phabio" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1028" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Abiotic pH" type="real" uid="c91b93a0-c5e8-11e6-84e6-5404a60d96b5" vid="c977c2da-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="monClim" label="co2massClim" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="Report only for simulations (e.g., prescribed concentration pi-control run), in which the CO2 does not vary from one year to the next. Report 12 monthly values, starting with January, even if the values don't vary seasonally.  When calling CMOR, identify this variable as co2massClim, not co2mass.  If CO2 is spatially nonuniform, omit this field, but report Mole Fraction of CO2 (see the table entry before the previous one)." prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="74" shuffle="" stid="e9f96386-c1ce-11e6-8067-ac72891c3257" title="Total Atmospheric Mass of CO2" type="real" uid="a92e1244-817c-11e6-a4e2-5404a60d96b5" vid="ddf060894b16cf89e906ecfedbba4ffb"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="hfsnthermds2d" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="If only the vertically integrated heat flux is available, report as this 2-d field; otherwise the row above should be used." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="85" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Heat Flux into Sea Water due to Snow Thermodynamics" type="real" uid="baa68c80-e5dd-11e5-8482-ac72891c3257" vid="22fae57fa6f2e7e2744a3a9fe3c0dbca"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fraction of time that convection occurs in the grid cell ." frequency="mon" label="ci" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="53" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Fraction of Time Convection Occurs" type="real" uid="baaa3984-e5dd-11e5-8482-ac72891c3257" vid="29fae9ea0f236a3eb144026e1bafde28"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is the rate of carbon uptake by roots due to NPP" frequency="mon" label="nppRoot" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="down" prov="Lmon ((isd.003))" provNote="" rowIndex="71" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux due to NPP Allocation to Roots" type="real" uid="bab275d6-e5dd-11e5-8482-ac72891c3257" vid="091b217c2450d012fb2e192dee04053f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="fraction of grid cell occupied by &quot;permanent&quot; ice (i.e., glaciers)." frequency="fx" label="sftgif" mipTable="fx" modeling_realm="land" mtid="MIPtable::fx" positive="" processing="For atmospheres with more than 1 mesh (e.g., staggered grids), report areas that apply to surface vertical fluxes of energy." prov="fx ((isd.003))" provNote="" rowIndex="18" shuffle="" stid="f7decc10-562c-11e6-a2a4-ac72891c3257" title="Fraction of Grid Cell Covered with Glacier" type="real" uid="bab73a76-e5dd-11e5-8482-ac72891c3257" vid="a1d2e309c6f25017442ad6c79c4f9eca"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="tnkebto" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="32" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Tendency of Ocean Eddy Kinetic Energy Content due to Bolus Transport" type="real" uid="bab9e3fc-e5dd-11e5-8482-ac72891c3257" vid="bb27046ce21470dfbbecdd4f7eca546a"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is the flux into the surface of liquid sea water only. This excludes shortwave flux absorbed by sea ice, but includes any light that passes through the ice and is absorbed by the ocean." frequency="mon" label="rsntds" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="93" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Net Downward Shortwave Radiation at Sea Water Surface" type="real" uid="baa6b66a-e5dd-11e5-8482-ac72891c3257" vid="1ace52320dc433dd648bb3dfbfc79935"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="epn100" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="at 100 m depth." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="141" shuffle="" stid="f948813c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Downward Flux of Particulate Nitrogen" type="real" uid="c91df87a-c5e8-11e6-84e6-5404a60d96b5" vid="5a17eb002c56c129c27f6e2b8e0c06d7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="surface pressure (not mean sea-level pressure), 2-D field to calculate the 3-D pressure field from hybrid coordinates" frequency="hr" label="ps" mipTable="aerhourly" mipTableSection="aerhourly" modeling_realm="atmos" mtid="MIPtable::aerhourly" positive="" prov="aerhourly ((isd.003))" provNote="aerhourly" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface pressure" type="float" uid="19c071f8-81b1-11e6-92de-ac72891c3257" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." frequency="subhr" label="hurs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1023" shuffle="" stid="3cbc5abc-1a15-11e7-8130-ac72891c3257" title="Near-Surface Relative Humidity" type="real" uid="8007b4ea-f906-11e6-a176-5404a60d96b5" vid="c75f684ec69602e9de82b48e53afb2cc"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculated as the convective mass flux divided by the area of the whole grid cell (not just the area of the cloud)." frequency="mon" label="mcd" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="down" processing="Report on model half-levels (i.e., model layer bounds and not standard pressures)." prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="47" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Downdraft Convective Mass Flux" type="real" uid="bab12118-e5dd-11e5-8482-ac72891c3257" vid="e889a99259ce24104c8b21894ace22da"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limfecalc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="124" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Iron limitation of Calcareous Phytoplankton" type="real" uid="baa0449c-e5dd-11e5-8482-ac72891c3257" vid="4e0d59a6102625043f701d5527c44957"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="ua" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="55" shuffle="" stid="f7e6b556-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Eastward Wind" type="real" uid="babb5084-e5dd-11e5-8482-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="tnhusa" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="41" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Specific Humidity due to Advection" type="real" uid="a9559a80-817c-11e6-a4e2-5404a60d96b5" vid="150d0829eec06aeaf75d22d08d328ffa"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="co3" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="51" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Carbonate ion Concentration" type="real" uid="ba9e75ae-e5dd-11e5-8482-ac72891c3257" vid="9791ce56083fe450761a27a7dc158225"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of zooplankton carbon component concentrations" frequency="mon" label="zooc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1011" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Zooplankton Carbon Concentration" type="real" uid="ba9f57bc-e5dd-11e5-8482-ac72891c3257" vid="be62c57dff12142bf51fc73c70cfb050"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate aragonite components (e.g. Phytoplankton, Detrital, etc.)" frequency="mon" label="arag" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1015" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Aragonite Concentration" type="real" uid="ba9f686a-e5dd-11e5-8482-ac72891c3257" vid="a72a0bcf271db9db3a7fb9b7f3e7b93a"/>
<item defaultPriority="2" deflate="" deflate_level="" description="From all advective mass transport processes, resolved and parameterized." frequency="mon" label="htovovrt" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, basin" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="57" shuffle="" stid="f7df8fce-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Northward Ocean Heat Transport due to Overturning" type="real" uid="baa5f3ba-e5dd-11e5-8482-ac72891c3257" vid="2e1651d57e5cc5036810331a67ef6ed7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="computed as the water  flux into the ocean divided by the area of the ocean portion of the grid cell.  This is the sum of the next two variables in this table." frequency="dec" label="wfo" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="net flux of water into seawater, including any flux correction. Report on native horizontal grid as well as mapped onto sphere." prov="Odec ((isd.003))" provNote="" rowIndex="21" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Water Flux into Sea Water" type="real" uid="4795f2d6-bb0b-11e6-8316-5980f7b176d1" vid="c3805ef555348a5f525cf09ccb254af4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="proposed name: tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_due_to_aqueous_phase_net_chemical_production" frequency="mon" label="cheaqpso4" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Aqueous-phase production rate of SO4" type="float" uid="19c0326a-81b1-11e6-92de-ac72891c3257" vid="5b189f73a6cbef54f224217d8a6b284a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Contains contributions from all physical processes affecting the northward heat transport, including resolved advection, parameterized advection, lateral diffusion, etc. Diagnosed here as a function of latitude and basin.   Use Celsius for temperature scale." frequency="dec" label="hfbasin" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="function of latitude, basin" prov="Odec ((isd.003))" provNote="" rowIndex="20" shuffle="" stid="f949dcb2-80ba-11e6-ab6e-5404a60d96b5" title="Northward Ocean Heat Transport" type="real" uid="4795e390-bb0b-11e6-8316-5980f7b176d1" vid="1f5bb8c9dd54043a9d5f71dfe38f5a19"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="epc100" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="at 100 m depth." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="140" shuffle="" stid="f948813c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Downward Flux of Particle Organic Carbon" type="real" uid="5a35b628-c77d-11e6-8a33-5404a60d96b5" vid="4500aac3ce5985eff562e6a170a88574"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="frn" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="170" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Nitrogen Loss to Sediments and through Denitrification" type="real" uid="baa106c0-e5dd-11e5-8482-ac72891c3257" vid="c73793c9a403918cf29279cbc374d509"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Net time rate of change of nitrogen nutrients (e.g. NO3+NH4)" frequency="mon" label="fddtdin" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="178" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Net Dissolved Inorganic Nitrogen" type="real" uid="baa12812-e5dd-11e5-8482-ac72891c3257" vid="d3e6e20c91db32a83bcf3d8d8d9dafd3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="tossq" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="19" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Square of Sea Surface Temperature" type="real" uid="baa53ee8-e5dd-11e5-8482-ac72891c3257" vid="d1b497a4f7f4cb666757ec97d152079e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="maximum boundary layer height during the day (add cell_methods attribute: &quot;time: maximum&quot;)" frequency="day" label="maxpblz" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="22364c54-c1d0-11e6-9285-ac72891c3257" title="maximum PBL height" type="float" uid="19bdcaac-81b1-11e6-92de-ac72891c3257" vid="f70b088300f35ad3b19c67d2490612dd"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="cllcalipso" mipTable="cfOff" modeling_realm="atmos" mtid="MIPtable::cfOff" positive="" prov="cfOff ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7de3bd8-562c-11e6-a2a4-ac72891c3257" title="CALIPSO Low Level Cloud Fraction" type="real" uid="baaab68e-e5dd-11e5-8482-ac72891c3257" vid="0bbbf303ac691061a69938846f32b23b"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difmxybo2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="44" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Ocean Momentum XY Biharmonic Diffusivity" type="real" uid="a92a1efa-817c-11e6-a4e2-5404a60d96b5" vid="84115d24881654a3deceba63b22cba06"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate organic phosphorus component concentrations" frequency="yr" label="pop" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="43" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Particulate Organic Matter expressed as Phosphorus in sea water" type="real" uid="ba9e540c-e5dd-11e5-8482-ac72891c3257" vid="562c99ff069851867df730ed9531c796"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="spco2" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="150" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Aqueous Partial Pressure of CO2" type="real" uid="baa0c7a0-e5dd-11e5-8482-ac72891c3257" vid="88d79ec028b6e797cd2db6f00f9b6910"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of abiotic CO2 (positive into ocean)" frequency="mon" label="fgco2abio" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="down" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="159" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Flux of Abiotic CO2" type="real" uid="baa0dc68-e5dd-11e5-8482-ac72891c3257" vid="042e575e61a271e122d317ca7b39dcb4"/>
<item defaultPriority="2" deflate="" deflate_level="" description="zero for models using real water fluxes." frequency="mon" label="vsfriver" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="73" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Virtual Salt Flux into Sea Water From Rivers" type="real" uid="baa65224-e5dd-11e5-8482-ac72891c3257" vid="86e9eba62a2d7875705086a75ba7f78c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of particulate organic nitrogen component concentrations" frequency="mon" label="ponos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="43" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Particulate Organic Matter expressed as Nitrogen in sea water" type="real" uid="c919b7b0-c5e8-11e6-84e6-5404a60d96b5" vid="c96e5132-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of phytoplankton iron component concentrations" frequency="mon" label="phyfeos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="49" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mass Concentration of Diazotrophs expressed as Chlorophyll in sea water" type="real" uid="c91a0cec-c5e8-11e6-84e6-5404a60d96b5" vid="c96ea5e2-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="clmcalipso" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="43" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="CALIPSO Mid Level Cloud Fraction" type="real" uid="baaabf08-e5dd-11e5-8482-ac72891c3257" vid="fe9d4b45792f7d6430fe2a9c9b7234b1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Calculated as the mass of  cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="day" label="clw" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="53" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Mass Fraction of Cloud Liquid Water" type="real" uid="baaafefa-e5dd-11e5-8482-ac72891c3257" vid="86b2b3318a73839edfafa9d46864aadc"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="monClim" label="n2oglobalClim" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="Report only for simulations (e.g., prescribed concentration pi-control run), in which the N2O does not vary from one year to the next. Report 12 monthly values, starting with January, even if the values don't vary seasonally.  When calling CMOR, identify this variable as ch4globalClim, not ch4global.  If N2O is spatially nonuniform, omit this field, but report Global Mean Mole Fraction of N2O (see the table entry before the previous one).  Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="82" shuffle="" stid="e9f96386-c1ce-11e6-8067-ac72891c3257" title="Global Mean Mole Fraction of N2O" type="real" uid="a92e6316-817c-11e6-a4e2-5404a60d96b5" vid="09c328529f2fac58c1b016da33ba394c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="parag" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="61" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Aragonite Production" type="real" uid="ba9ea0b0-e5dd-11e5-8482-ac72891c3257" vid="6aec29521de81a361630aac9ffc69f8f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of natural CO2 (positive into ocean)" frequency="mon" label="fgco2nat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="down" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="158" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Flux of Natural CO2" type="real" uid="baa0d844-e5dd-11e5-8482-ac72891c3257" vid="97c037c3357f24c4e06c07123224b400"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="cVeg" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="33" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Vegetation" type="real" uid="baa90258-e5dd-11e5-8482-ac72891c3257" vid="3434c274f8ad8754f594d2b23c2d37db"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes both liquid and solid phases from all types of clouds (both large-scale and convective)" frequency="mon" label="pr" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="25" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Precipitation" type="real" uid="bab3cb52-e5dd-11e5-8482-ac72891c3257" vid="62f26742cf240c1b5169a5cd511196b6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="dec" label="so" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Odec ((isd.003))" provNote="" rowIndex="11" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sea Water Salinity" type="real" uid="4795682a-bb0b-11e6-8316-5980f7b176d1" vid="31eb8d2a1ed4d82ef8bebe4227ec90b9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." frequency="dec" label="tauvo" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="down" processing="Report on native horizontal grid." prov="Odec ((isd.003))" provNote="" rowIndex="26" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Y Stress" type="real" uid="ac270e9a-bb0d-11e6-83c8-bf7187cdbd68" vid="593ed46e925a8bce9de9eb47f5e72632"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from parameterized dianeutral mixing. Reported only for models that use potential temperature as prognostic field." frequency="yr" label="opottempdiff" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="12" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water potential temperature expressed as heat content due to parameterized dianeutral mixing" type="real" uid="baa4461e-e5dd-11e5-8482-ac72891c3257" vid="2aa31f177542022b5d6ca809cf01eff5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from parameterized dianeutral mixing. Reported only for models that use conservative temperature as prognostic field." frequency="yr" label="ocontempdiff" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="18" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water conservative temperature expressed as heat content due to parameterized dianeutral mixing" type="real" uid="baa46770-e5dd-11e5-8482-ac72891c3257" vid="c4b3f6005f73f2fc2d0e348fdff3c2bc"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon  concentration from mesozooplankton (20-200 um) component alone" frequency="yr" label="zmeso" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="22" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Mesozooplankton expressed as Carbon in sea water" type="real" uid="c922fcda-c5e8-11e6-84e6-5404a60d96b5" vid="30a7a10d4c71066f19eae9a89ddfafba"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Tendencies from cumulus convection scheme." frequency="subhr" label="tnhusc" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="42" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Specific Humidity due to Convection" type="real" uid="a955a5c0-817c-11e6-a4e2-5404a60d96b5" vid="a1d576b3fc447c37d782926441428ffd"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate organic nitrogen component concentrations" frequency="yr" label="pon" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="42" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Particulate Organic Matter expressed as Nitrogen in sea water" type="real" uid="ba9e4fca-e5dd-11e5-8482-ac72891c3257" vid="14e5a31ac93e26c50f8c01ed9a032168"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Diagnostic should be contributed even for models using conservative temperature as prognostic field" frequency="mon" label="thetaoga" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Note change from CMIP5 K to CMIP6 C" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="13" shuffle="" stid="f7e2e214-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Global Average Sea Water Potential Temperature" type="real" uid="baa52138-e5dd-11e5-8482-ac72891c3257" vid="f0280734103f054b10012331ab1c0459"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difmxybo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="34" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Momentum XY Biharmonic Diffusivity" type="real" uid="baabb6c4-e5dd-11e5-8482-ac72891c3257" vid="84115d24881654a3deceba63b22cba06"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="hus" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="52" shuffle="" stid="f7e6b556-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Specific Humidity" type="real" uid="bab0135e-e5dd-11e5-8482-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface.  Includes precipitation of all forms water in the solid phase.  This is the 3-hour mean snowfall flux." frequency="3hr" label="prsn" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="29" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Snowfall Flux" type="real" uid="bab42912-e5dd-11e5-8482-ac72891c3257" vid="051919eddec810e292c883205c944ceb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is sampled synoptically." frequency="3hr" label="tas" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" processing="normally, report at 2 meters above the surface" prov="3hr ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7e8b996-562c-11e6-a2a4-ac72891c3257" title="Near-Surface Air Temperature" type="real" uid="bab91b20-e5dd-11e5-8482-ac72891c3257" vid="5c4978e802ba55d5a298cf1b3bdc2b3a"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Full column sum of density*cell thickness*conservative temperature. If the model is Boussinesq, then use Boussinesq reference density for the density factor." frequency="yr" label="ocontempmint" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="4" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="integral wrt depth of product of sea water density and conservative temperature" type="real" uid="1aaf3ea4-b006-11e6-9289-ac72891c3257" vid="117c89cc-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="dec" label="thkcello" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Odec ((isd.003))" provNote="" rowIndex="5" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Ocean Model Cell Thickness" type="real" uid="479514a6-bb0b-11e6-8316-5980f7b176d1" vid="5aea9677ebbb40076a0e0b3b11fdb46f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="dec" label="sos" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Odec ((isd.003))" provNote="" rowIndex="13" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Sea Surface Salinity" type="real" uid="47958396-bb0b-11e6-8316-5980f7b176d1" vid="74a9891bcab2667dbcb66574c6370c86"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate aragonite components (e.g. Phytoplankton, Detrital, etc.)" frequency="mon" label="aragos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="16" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Aragonite Concentration" type="real" uid="c9181982-c5e8-11e6-84e6-5404a60d96b5" vid="c96cd366-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="wa" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Upward Air Velocity" type="float" uid="19beefc2-81b1-11e6-92de-ac72891c3257" vid="9982868916859ae8b64cc83cbed896af"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculated as the mass of convective cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="3hr" label="clwc" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="25" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Mass Fraction of Convective Cloud Liquid Water" type="real" uid="baab0968-e5dd-11e5-8482-ac72891c3257" vid="9b75db3b829a01b02dfe952824150a33"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Accumulated stomatal ozone flux over the threshold of 0 mol m-2 s-1; Computation: Time Integral of (hourly above canopy ozone concentration * stomatal conductance * Rc/(Rb+Rc) )" frequency="mon" label="pod0" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Phytotoxic ozone dose" type="float" uid="01d364ca-c792-11e6-aa58-5404a60d96b5" vid="c9a5b6b8-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrbbo2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="37" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer Bolus Biharmonic Diffusivity" type="real" uid="a929cb4e-817c-11e6-a4e2-5404a60d96b5" vid="b21073e1a8fa421ecd21766bc8442acd"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="cLeaf" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="This field and some of the following may sum to yield some of the more generic carbon pool totals given above." prov="Lmon ((isd.003))" provNote="" rowIndex="50" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Leaves" type="real" uid="baa8aed4-e5dd-11e5-8482-ac72891c3257" vid="50e31118c282faf3bfc90b25909433c1"/>
<item defaultPriority="2" deflate="" deflate_level="" description="carbon from additional zooplankton component concentrations alone (e.g. Micro, meso).  Since the models all have different numbers of components, this variable has been included to provide a check for intercomparison between models since some phytoplankton groups are supersets." frequency="mon" label="zmisc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1023" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concetration of Other Zooplankton expressed as Carbon in sea water" type="real" uid="c91b5aa2-c5e8-11e6-84e6-5404a60d96b5" vid="c9776970-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of abiotic CO2 (positive into ocean)" frequency="yr" label="fgco2abio" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="" rowIndex="92" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Flux of Abiotic CO2" type="real" uid="c926ce28-c5e8-11e6-84e6-5404a60d96b5" vid="042e575e61a271e122d317ca7b39dcb4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Diagnostic should be contributed only for models using conservative temperature as prognostic field." frequency="dec" label="bigthetaoga" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" prov="Odec ((isd.003))" provNote="" rowIndex="8" shuffle="" stid="f7e2e214-562c-11e6-a2a4-ac72891c3257" title="Global Average Sea Water Conservative Temperature" type="real" uid="47953f1c-bb0b-11e6-8316-5980f7b176d1" vid="6901f6894f7382d628084809e7208c4b"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Sum of dissolved carbon component concentrations explicitly represented (i.e. not ~40 uM refractory unless explicit)" frequency="mon" label="dissoc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1009" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Dissolved Organic Carbon Concentration" type="real" uid="ba9f4f60-e5dd-11e5-8482-ac72891c3257" vid="b4ae9d56d038ff977f0db7f578841c5a"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3satarag" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1055" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Carbonate ion Concentration for sea water in equilibrium with pure Aragonite" type="real" uid="baa00284-e5dd-11e5-8482-ac72891c3257" vid="065edaa295c376f0e9bc1985bc3f491c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Geopotential height on the 10 hPa surface" frequency="day" label="zg10" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="62eed4c8-1617-11e7-a126-5404a60d96b5" title="Geopotential Height at 10 hPa" type="float" uid="19bdc1ec-81b1-11e6-92de-ac72891c3257" vid="fc0bedbaf6d676fb85fe189310c871a8"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Cloud Droplet Number Concentration in liquid water clouds." frequency="mon" label="cdnc" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Cloud Liquid Droplet Number Concentration" type="float" uid="19be52f6-81b1-11e6-92de-ac72891c3257" vid="cfe4bddb7dbbfc57c19837e7f99d2dda"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes also the fluxes at the surface and TOA." frequency="mon" label="rsdcs" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="down" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="22" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Downwelling Clear-Sky Shortwave Radiation" type="real" uid="bab5d898-e5dd-11e5-8482-ac72891c3257" vid="38806cec3ba894d7745fada80c9f6fe6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="ta" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="47" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Air Temperature" type="real" uid="bab8fd84-e5dd-11e5-8482-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rlus" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="35" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Upwelling Longwave Radiation" type="real" uid="bab578d0-e5dd-11e5-8482-ac72891c3257" vid="89027ee0079acb709750ddeac1c08899"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of abiotic 14CO2 (positive into ocean)" frequency="yr" label="fg14co2abio" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="" rowIndex="93" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Flux of Abiotic 14CO2" type="real" uid="c926dc1a-c5e8-11e6-84e6-5404a60d96b5" vid="f36046ab9a8a24ce4d7431e2defd9cf6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Vertically integrated total primary (organic carbon) production by phytoplankton.  This should equal the sum of intpdiat+intpphymisc, but those individual components may be unavailable in some models." frequency="mon" label="intpp" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="127" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Primary Organic Carbon Production by All Types of Phytoplankton" type="real" uid="baa054f0-e5dd-11e5-8482-ac72891c3257" vid="f240d371c4585a7647bd775cc97abbee"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Organic Carbon supply to ocean through runoff (separate from gas exchange)" frequency="mon" label="ocfriver" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="166" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Flux of Organic Carbon Into Ocean Surface by Runoff" type="real" uid="baa0f57c-e5dd-11e5-8482-ac72891c3257" vid="5be0620fea71e2541aa08aac57ed9243"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon  concentration from the microzooplankton (&lt;20 um) component alone" frequency="yr" label="zmicro" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="21" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Microzooplankton expressed as Carbon in sea water" type="real" uid="c922e600-c5e8-11e6-84e6-5404a60d96b5" vid="e9dc036ef43db84bc4651ce95b0fed94"/>
<item defaultPriority="1" deflate="" deflate_level="" description="calculate mass of condensed (liquid + ice) water in the column divided by the area of the column (not just the area of the cloudy portion of the column). This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="day" label="clwvi" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="24" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="Condensed Water Path" type="real" uid="baab15a2-e5dd-11e5-8482-ac72891c3257" vid="80a1dd605b563e9f09c718a5ba9cb9cc"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CMIP5 called this &quot;due to Bolus Advection&quot;.  Name change respects the more general physics of the mesoscale parameterizations." frequency="mon" label="msftyzmpa" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of Y, Z, basin.  Also see note above." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="45" shuffle="" stid="529d9136-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="ocean Y overturning mass streamfunction due to parameterized mesoscale advection" type="real" uid="baa5b79c-e5dd-11e5-8482-ac72891c3257" vid="481469b8223841a5382d43e7c6ae204e"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of phytoplankton nitrogen component concentrations" frequency="mon" label="phynos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="47" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Phytoplankton Nitrogen in sea water" type="real" uid="c919f022-c5e8-11e6-84e6-5404a60d96b5" vid="c96e895e-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="total organic aerosol AOD due to secondary aerosol formation" frequency="mon" label="od550soa" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="soa aod@550nm" type="float" uid="0facb764-817d-11e6-b80b-5404a60d96b5" vid="c682767d841fcdb714a3914519fabf93"/>
<item defaultPriority="1" deflate="" deflate_level="" description="total ozone column in DU" frequency="day" label="toz" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Total Column Ozone" type="float" uid="19bdaba8-81b1-11e6-92de-ac72891c3257" vid="79fec430c1dca1ac4b48b0fc36c48449"/>
<item defaultPriority="1" deflate="" deflate_level="" description="minimum boundary layer height during the day (add cell_methods attribute: &quot;time: minimum&quot;)" frequency="day" label="minpblz" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="e9f91796-c1ce-11e6-8067-ac72891c3257" title="minimum PBL height" type="float" uid="19bdd8ee-81b1-11e6-92de-ac72891c3257" vid="a503e8c8011c952b0b832e6074ad387d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." frequency="mon" label="dryss" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of seasalt" type="float" uid="19c00b32-81b1-11e6-92de-ac72891c3257" vid="9b53f7b02bc4f1e2af69632f52a18b28"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmraerh2o" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Aerosol water mass mixing ratio" type="float" uid="19c04782-81b1-11e6-92de-ac72891c3257" vid="e3fdfe758c0165caf74dcbb2531c83b3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="va" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="21" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Northward Wind" type="real" uid="a954b1b0-817c-11e6-a4e2-5404a60d96b5" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="monClim" label="ch4Clim" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="Report only for simulations (e.g., prescribed concentration pi-control run), in which the CH4 does not vary from one year to the next. Report 12 monthly values, starting with January, even if the values don't vary seasonally.  When calling CMOR, identify this variable as ch4global, not ch4.   If  CH4 is spatially uniform, omit this field, but report Global Mean Mole Fraction of CH4 (see the table entry after the next).  Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="76" shuffle="" stid="e9f98ed8-c1ce-11e6-8067-ac72891c3257" title="Mole Fraction of CH4" type="real" uid="a92e26e4-817c-11e6-a4e2-5404a60d96b5" vid="7f4c49e8abe3230e87fa7299b73448fa"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll from additional phytoplankton component concentrations alone" frequency="yr" label="chlmisc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="41" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mass Concentration of Other Phytoplankton expressed as Chlorophyll in sea water" type="real" uid="ba9e4b7e-e5dd-11e5-8482-ac72891c3257" vid="98fab6148c36b25a158062a11c0c5965"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="pbsi" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="59" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Biogenic Silica Production" type="real" uid="ba9e984a-e5dd-11e5-8482-ac72891c3257" vid="683b8f723c94f4a3b3e65569b975d648"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net  time rate of change of phosphate" frequency="mon" label="fddtdip" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="179" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Net Dissolved Inorganic Phosphate" type="real" uid="baa12c36-e5dd-11e5-8482-ac72891c3257" vid="80a2832b0619764647393e3815ff399b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the 3-hour mean flux." frequency="3hr" label="rsds" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="down" prov="3hr ((isd.003))" provNote="" rowIndex="20" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Downwelling Shortwave Radiation" type="real" uid="bab5df78-e5dd-11e5-8482-ac72891c3257" vid="6e7b9f984d3bba15daccaaa18039a85d"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of phytoplankton phosphorus components" frequency="mon" label="phypos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="48" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Total Phytoplankton expressed as Phosphorus in sea water" type="real" uid="c919fe46-c5e8-11e6-84e6-5404a60d96b5" vid="c96e9778-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="wetnh4" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="wet deposition rate of nh4" type="float" uid="19be22b8-81b1-11e6-92de-ac72891c3257" vid="86b2899d1c267c92e3fbaccd21b55472"/>
<item defaultPriority="1" deflate="" deflate_level="" description="vertically integrated through the atmospheric column" frequency="subhr" label="prw" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1046" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Water Vapor Path" type="real" uid="8009791a-f906-11e6-a176-5404a60d96b5" vid="fc637f1c75e58be8a6e4112411a00f36"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes also the fluxes at the surface and TOA." frequency="mon" label="rsu" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="16" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Upwelling Shortwave Radiation" type="real" uid="bab64814-e5dd-11e5-8482-ac72891c3257" vid="c323f38340e4846931ad4891232d839d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="ta700" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" processing="at 700 hPa level" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="27" shuffle="" stid="f7e6a4b2-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="Air Temperature" type="real" uid="bab8e876-e5dd-11e5-8482-ac72891c3257" vid="60149d7950df0e17e492caf344b9a5f2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="shortwave heating rates" frequency="mon" label="tntrs" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Shortwave heating rate" type="float" uid="01d3ff0c-c792-11e6-aa58-5404a60d96b5" vid="59173c0c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limfemisc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="126" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Iron Limitation of Other Phytoplankton" type="real" uid="baa04cda-e5dd-11e5-8482-ac72891c3257" vid="86b89f8138a6ec9830def56892753017"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difvmo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="21" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Vertical Momentum Diffusivity" type="real" uid="baabeb12-e5dd-11e5-8482-ac72891c3257" vid="5f19c4be9ae133db06403c986c8136d6"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Inorganic Carbon loss to sediments" frequency="mon" label="fric" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="165" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Downward Inorganic Carbon Flux at Ocean Bottom" type="real" uid="baa0f14e-e5dd-11e5-8482-ac72891c3257" vid="e799552047be54bf13ccbe494c73cc81"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Direct primary emission does not include secondary sulfate production. Integrate 3D emission field vertically to 2d field." frequency="mon" label="emiso4" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total direct emission rate of so4" type="float" uid="19befb70-81b1-11e6-92de-ac72891c3257" vid="e479e7abd9bcef1806494ce9b50f39b3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="huss" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1024" shuffle="" stid="3cbc5abc-1a15-11e7-8130-ac72891c3257" title="Near-Surface Specific Humidity" type="real" uid="8007c976-f906-11e6-a176-5404a60d96b5" vid="ebfefc2ab8716ef597b128171b275945"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hus" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="31" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Specific Humidity" type="real" uid="bab00f1c-e5dd-11e5-8482-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="clisccp" mipTable="cfMon" mipTableSection="cfMon_sim" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" processing="7 levels x 7 tau" prov="cfMon ((isd.003))" provNote="cfMon_sim" rowIndex="65" shuffle="" stid="f7e8acd0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_sim" title="ISCCP Percentage Cloud Area" type="real" uid="2ab325ee-c07e-11e6-8775-5404a60d96b5" vid="fa7666d61b92de5bad1ad76561b8b850"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes both liquid and solid phases from all types of clouds (both large-scale and convective)" frequency="day" label="pr" mipTable="day" mipTableSection="day_oth" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_oth" rowIndex="18" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Precipitation" type="real" uid="bab3d692-e5dd-11e5-8482-ac72891c3257" vid="62f26742cf240c1b5169a5cd511196b6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the net flux of heat entering the liquid water column through its upper surface (excluding any &quot;flux adjustment&quot;) ." frequency="dec" label="hfds" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="down" processing="Report on native horizontal grid as well as remapped onto a latitude/longitude grid." prov="Odec ((isd.003))" provNote="" rowIndex="24" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Downward Heat Flux at Sea Water Surface" type="real" uid="ac26ebd6-bb0d-11e6-83c8-bf7187cdbd68" vid="db14915fa8f71225f7775d0d922197ec"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="yr" label="cfc12" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="4" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of CFC-12 in sea water" type="real" uid="ba9a8d04-e5dd-11e5-8482-ac72891c3257" vid="3ab8e10027d7014f18f9391890369235"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton carbon component concentrations.  In most (all?) cases this is the sum of phycdiat and phycmisc (i.e., &quot;Diatom Carbon Concentration&quot; and &quot;Non-Diatom Phytoplankton Carbon Concentration&quot;" frequency="mon" label="phyc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1010" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Phytoplankton Carbon Concentration" type="real" uid="ba9f5398-e5dd-11e5-8482-ac72891c3257" vid="54eb2f6651441ff52f9aea4d43a83024"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of phytoplankton organic carbon component concentrations at the sea surface" frequency="day" label="phycos" mipTable="Oday" modeling_realm="ocnBgchem" mtid="MIPtable::Oday" positive="" prov="Oday ((isd.003))" provNote="" rowIndex="4" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" title="Sea Surface Phytoplankton Carbon Concentration" type="real" uid="baa165e8-e5dd-11e5-8482-ac72891c3257" vid="314e3eb73c9ccbdd132899317d87d856"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes also the fluxes at the surface and TOA." frequency="mon" label="rsd" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="down" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="18" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Downwelling Shortwave Radiation" type="real" uid="bab5d424-e5dd-11e5-8482-ac72891c3257" vid="eb9ac643cd9c73cae960d6d2db7b901d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="cltcalipso" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="41" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="CALIPSO Total Cloud Fraction" type="real" uid="baaaf2e8-e5dd-11e5-8482-ac72891c3257" vid="ce9ab9b945fcc86013ad10431d8f252e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rsdcs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="Report on model half-levels (i.e., interfaces between model layers)." prov="cfSites ((isd.003))" provNote="" rowIndex="33" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Downwelling Clear-Sky Shortwave Radiation" type="real" uid="a9553cfc-817c-11e6-a4e2-5404a60d96b5" vid="38806cec3ba894d7745fada80c9f6fe6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="tnta" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="35" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Advection" type="real" uid="a9555412-817c-11e6-a4e2-5404a60d96b5" vid="ea55d8afe6bacbfa1029c0048717eaaa"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="yr" label="si" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="35" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Total Dissolved Inorganic Silicon Concentration" type="real" uid="ba9e2e28-e5dd-11e5-8482-ac72891c3257" vid="56a5fa6dd6b7c4aa711f362d5d5414f6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes both large-scale and convective cloud." frequency="mon" label="cl" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="Report on model layers (not standard pressures)." prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="58" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Cloud Area Fraction" type="real" uid="baaa4302-e5dd-11e5-8482-ac72891c3257" vid="e0ecf1c1305c1bdc69bee0e7ba1e2e03"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Net of biological terms in time rate of change of dissolved inorganic silicon" frequency="yr" label="bddtdisi" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="85" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Dissolved Inorganic silicon due to Biological Activity" type="real" uid="ba9efa42-e5dd-11e5-8482-ac72891c3257" vid="2157a343384243be18fe8a06826aecb5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="carbon from the diatom phytoplankton component concentration alone" frequency="mon" label="phydiat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1016" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Diatoms expressed as Carbon in sea water" type="real" uid="ba9f6c98-e5dd-11e5-8482-ac72891c3257" vid="5880ab9386066d5d620774a46840cc25"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from parameterized  eddy advection (all forms of eddy advection). Reported only for models that use potential temperature as prognostic field." frequency="yr" label="opottemppadvect" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="9" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water potential temperature expressed as heat content due to parameterized eddy advection" type="real" uid="baa4353e-e5dd-11e5-8482-ac72891c3257" vid="8530ec1d1281da71f660df7c61571e38"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="nh4os" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="33" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Dissolved Ammonium Concentration" type="real" uid="c9192462-c5e8-11e6-84e6-5404a60d96b5" vid="c96dc79e-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes also the fluxes at the surface and TOA." frequency="mon" label="rlu" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="15" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Upwelling Longwave Radiation" type="real" uid="bab56d68-e5dd-11e5-8482-ac72891c3257" vid="bcfeacf77d49ef51a6ee66a1ab0ebcb4"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="3hr" label="cls" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="46" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Stratiform Cloud Area Fraction" type="real" uid="baaac584-e5dd-11e5-8482-ac72891c3257" vid="2cd1940e7201d5adb02ba157a74fc33e"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="dispkexyfo2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="45" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Ocean Kinetic Energy Dissipation Per Unit Area due to XY Friction" type="real" uid="a92a2a80-817c-11e6-a4e2-5404a60d96b5" vid="f56a3a44b60650b58309b1d8cf58b913"/>
<item defaultPriority="2" deflate="" deflate_level="" description="carbon concentration from the picophytoplankton (&lt;2 um) component alone" frequency="mon" label="phypico" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1019" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Picophytoplankton expressed as Carbon in sea water" type="real" uid="ba9f792c-e5dd-11e5-8482-ac72891c3257" vid="3aa265a13ddf4caa82a8e1e3d4482f42"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate calcite component concentrations (e.g. Phytoplankton, Detrital, etc.)" frequency="mon" label="calcos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="15" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Calcite Concentration" type="real" uid="c9180bae-c5e8-11e6-84e6-5404a60d96b5" vid="c96cc5b0-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Prognostic y-ward velocity component resolved by the model." frequency="dec" label="vo" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Odec ((isd.003))" provNote="" rowIndex="17" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" title="Sea Water Y Velocity" type="real" uid="4795b9ce-bb0b-11e6-8316-5980f7b176d1" vid="3e3ddc77800e7d421834b9cb808602d7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsdcs4co2" mipTable="cfMon" mipTableSection="cfMon_3dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="down" prov="cfMon ((isd.003))" provNote="cfMon_3dmod" rowIndex="61" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dmod" title="Downwelling Clear-Sky Shortwave Radiation 4XCO2 Atmosphere" type="real" uid="bab5d65e-e5dd-11e5-8482-ac72891c3257" vid="b8acc50c52fa48b40a4512d06d2d6435"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is actual height above mean sea level, not geopotential height" frequency="3hr" label="zfull" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="17" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Altitude of Model Full-Levels" type="real" uid="babd7828-e5dd-11e5-8482-ac72891c3257" vid="216ab26c-b89b-11e6-a189-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Upward mass transport from residual mean (resolved plus parameterized) advective transport." frequency="mon" label="wmo" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="36" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Upward Ocean Mass Transport" type="real" uid="baa58f74-e5dd-11e5-8482-ac72891c3257" vid="05b30c1e249f6854ffc0b3f7676eed73"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsds" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="down" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="36" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Downwelling Shortwave Radiation" type="real" uid="bab5e1b2-e5dd-11e5-8482-ac72891c3257" vid="6e7b9f984d3bba15daccaaa18039a85d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." frequency="day" label="hursmin" mipTable="day" mipTableSection="day_oth" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally report this at 2 meters above the surface" prov="day ((isd.003))" provNote="day_oth" rowIndex="27" shuffle="" stid="f7e59f36-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Surface Daily Minimum Relative Humidity" type="real" uid="5a0711f6-c77d-11e6-8a33-5404a60d96b5" vid="59152bba-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This includes sources and sinks from parametrized moist physics (e.g. convection, boundary layer, stratiform condensation/evaporation, etc.) and excludes sources and sinks from resolved dynamics or from horizontal or vertical numerical diffusion not associated with model physicsl.  For example any diffusive mixing by the boundary layer scheme would be included." frequency="mon" label="tnhusmp" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="37" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Specific Humidity due to Model Physics" type="real" uid="bab9db28-e5dd-11e5-8482-ac72891c3257" vid="6e30ba1e2c19dcbd85faa176d4eae596"/>
<item defaultPriority="2" deflate="" deflate_level="" description="computed as the iceberg melt water flux into the ocean divided by the area of the ocean portion of the grid cell." frequency="mon" label="ficeberg2d" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="If only the vertically integrated melt water flux is available, report as this 2-d field; otherwise the row above should be used." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="66" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Water Flux into Sea Water From Icebergs" type="real" uid="baa62cea-e5dd-11e5-8482-ac72891c3257" vid="0638f32ebcc32d63faad121d5a83e3be"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="vas" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally, report this at 10 meters above the surface" prov="day ((isd.003))" provNote="day_ss" rowIndex="37" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" subGroup="day_ss" title="Northward Near-Surface Wind" type="real" uid="babbd25c-e5dd-11e5-8482-ac72891c3257" vid="86b1cd51f370e346ecb20f1e80cb6ea4"/>
<item defaultPriority="2" deflate="" deflate_level="" description="zero for models using real water fluxes." frequency="mon" label="vsfpr" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="71" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Virtual Salt Flux into Sea Water due to Rainfall" type="real" uid="baa649d2-e5dd-11e5-8482-ac72891c3257" vid="7002f5a3bc5218f16a39f3dfabf42244"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Integrate 3D emission field vertically to 2d field" frequency="mon" label="emiisop" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of isoprene" type="float" uid="19c03ecc-81b1-11e6-92de-ac72891c3257" vid="811a140bb9962156e6c3cbc16a144f8d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rlutcs4co2" mipTable="cfMon" mipTableSection="cfMon_2dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_2dmod" rowIndex="53" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_2dmod" title="TOA Outgoing Clear-Sky Longwave Radiation 4XCO2 Atmosphere" type="real" uid="bab5b822-e5dd-11e5-8482-ac72891c3257" vid="71a3667c9d9a8b9af56e22757461b7d0"/>
<item defaultPriority="1" deflate="" deflate_level="" description="AOD from the ambient aerosols in clear skies if od550aer is for all-sky (i.e., includes aerosol water).  Does not include AOD from stratospheric aerosols if these are prescribed but includes other possible background aerosol types. Needs a comment attribute &quot;wavelength: 550 nm&quot;" frequency="mon" label="od550csaer" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="ambient aerosol optical thickness at 550 nm" type="float" uid="01d4dfbc-c792-11e6-aa58-5404a60d96b5" vid="c9a72dd6-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="sampled synoptically to diagnose atmospheric tides, this is better than mean sea level pressure." frequency="3hr" label="ps" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="34" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Air Pressure" type="real" uid="bab47354-e5dd-11e5-8482-ac72891c3257" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by shrub." frequency="mon" label="shrubFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="add scalar coordinate typeshrub and add &quot;shrub&quot; to the CF area type table.  Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="27" shuffle="" stid="fa22430a-267c-11e7-9bed-ac72891c3257" title="Shrub Fraction" type="real" uid="bab76b9a-e5dd-11e5-8482-ac72891c3257" vid="bdb1045bec7f58e9e6221cd39bb34c2f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Full column sum of density*cell thickness*potential temperature. If the model is Boussinesq, then use Boussinesq reference density for the density factor." frequency="yr" label="opottempmint" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="3" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="integral wrt depth of product of sea water density and potential temperature" type="real" uid="1aaf2e6e-b006-11e6-9289-ac72891c3257" vid="59133ddc-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="dec" label="agessc" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Odec ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sea Water Age Since Surface Contact" type="real" uid="47959ea8-bb0b-11e6-8316-5980f7b176d1" vid="1bb6dca6b08a4e887ded8a455ef04941"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of abiotic 13CO2 (positive into ocean)" frequency="mon" label="fg13co2" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="down" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="161" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Flux of Abiotic 13CO2" type="real" uid="804534f0-f906-11e6-a176-5404a60d96b5" vid="590e5b82-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll from additional phytoplankton component concentrations alone" frequency="mon" label="chlmisc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1041" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mass Concentration of Other Phytoplankton expressed as Chlorophyll in sea water" type="real" uid="ba9fcc88-e5dd-11e5-8482-ac72891c3257" vid="98fab6148c36b25a158062a11c0c5965"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Primary (organic carbon) production by the diazotrophic phytoplankton component alone" frequency="yr" label="dpocdtdiaz" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="73" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Tendency of Mole Concentration of Organic Carbon in sea water due to Net Primary Production by Diazotrophs" type="real" uid="c925fd0e-c5e8-11e6-84e6-5404a60d96b5" vid="6e3f4e2b5b8d007f2e660d89a730d96e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="zg" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="atmos" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Geopotential Height" type="float" uid="19bea74c-81b1-11e6-92de-ac72891c3257" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="hfss" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1033" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Upward Sensible Heat Flux" type="real" uid="80087844-f906-11e6-a176-5404a60d96b5" vid="a13ed886b17e20cdae8b89b9ff8e4610"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rlds" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1034" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Downwelling Longwave Radiation" type="real" uid="80088d2a-f906-11e6-a176-5404a60d96b5" vid="70d7d6fc0e9c2f14624a0270bf2b99b9"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" frequency="mon" label="dissic" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1004" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Dissolved Inorganic Carbon Concentration" type="real" uid="ba9f3ac0-e5dd-11e5-8482-ac72891c3257" vid="13654e951d583dc7d02b5c23485e6eb5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrbbo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="27" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer Bolus Biharmonic Diffusivity" type="real" uid="baabc09c-e5dd-11e5-8482-ac72891c3257" vid="b21073e1a8fa421ecd21766bc8442acd"/>
<item defaultPriority="1" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by trees." frequency="mon" label="treeFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="add scalar coordinate typetree and add &quot;tree&quot; to the CF area type table.  Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="25" shuffle="" stid="fa21f210-267c-11e7-9bed-ac72891c3257" title="Tree Cover Fraction" type="real" uid="babab3ae-e5dd-11e5-8482-ac72891c3257" vid="d3eb8c36759afa5ef2c8363e0c16db88"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="sf6" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="3" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Moles Per Unit Mass of SF6 in sea water" type="real" uid="ba9b2d36-e5dd-11e5-8482-ac72891c3257" vid="82b5e315b8be441e26a9c45e95fe7573"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of detrital organic carbon component concentrations" frequency="mon" label="detoc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1013" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Detrital Organic Carbon Concentration" type="real" uid="ba9f6018-e5dd-11e5-8482-ac72891c3257" vid="b0a9616ddee15d1f3740ce445bd82fb1"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertically integrated total primary (organic carbon) production by other phytoplankton components alone" frequency="mon" label="intppmisc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="133" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Net Primary Organic Carbon Production by Other Phytoplankton" type="real" uid="baa079e4-e5dd-11e5-8482-ac72891c3257" vid="e5289ab4-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="computed as the total mass of water vapor evaporating from the ice-free portion of the ocean  divided by the area of the ocean portion of the grid cell." frequency="mon" label="evs" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="63" shuffle="" stid="f948921c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Water Evaporation Flux Where Ice Free Ocean over Sea" type="real" uid="baa6204c-e5dd-11e5-8482-ac72891c3257" vid="70ecea904324e6f3b891276634412350"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="day" label="sos" mipTable="Oday" modeling_realm="ocean" mtid="MIPtable::Oday" positive="" processing="Report on the ocean horizontal native grid." prov="Oday ((isd.003))" provNote="" rowIndex="5" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Sea Surface Salinity" type="real" uid="baa72514-e5dd-11e5-8482-ac72891c3257" vid="74a9891bcab2667dbcb66574c6370c86"/>
<item defaultPriority="1" deflate="" deflate_level="" description="geopotential height on the 500 hPa surface" frequency="day" label="zg500" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="7040a0b0-f2a0-11e6-9a05-5404a60d96b5" title="Geopotential Height at 500 hPa" type="float" uid="0fabb742-817d-11e6-b80b-5404a60d96b5" vid="c0007a5e2b555d399d9bfe49f7502f1b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="c3h8" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="C3H8  volume mixing ratio" type="float" uid="19be27a4-81b1-11e6-92de-ac72891c3257" vid="fe6c7b96-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrbc" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Elemental carbon mass mixing ratio" type="float" uid="19bf20dc-81b1-11e6-92de-ac72891c3257" vid="d63c4dd912d79edc6221c0e09da24a79"/>
<item defaultPriority="2" deflate="" deflate_level="" description="fast is meant as lifetime of less than 10 years for  reference climate conditions (20 C, no water limitations)." frequency="mon" label="cSoilFast" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="57" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Fast Soil Pool" type="real" uid="baa8eb2e-e5dd-11e5-8482-ac72891c3257" vid="e072c35c161c93f2320579511ed1849f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="reported &quot;where land&quot;: divide the total water holding capacity of all the soil in the grid cell by the land area in the grid cell;  reported as &quot;missing&quot; where the land fraction is 0." frequency="fx" label="mrsofc" mipTable="fx" modeling_realm="land" mtid="MIPtable::fx" positive="" prov="fx ((isd.003))" provNote="" rowIndex="19" shuffle="" stid="f7decc10-562c-11e6-a2a4-ac72891c3257" title="Capacity of Soil to Store Water" type="real" uid="bab1c08c-e5dd-11e5-8482-ac72891c3257" vid="ec6da64bcabf72243b381d6b50bffa5f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fraction of time that shallow convection occurs in the grid cell." frequency="mon" label="sci" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="For models with a distinct shallow convection scheme only." prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="54" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Fraction of Time Shallow Convection Occurs" type="real" uid="bab6d180-e5dd-11e5-8482-ac72891c3257" vid="8de0f30b91b15720398fc10fd712a182"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll concentration from the calcite-producing phytoplankton component alone" frequency="yr" label="chlcalc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="39" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mass Concentration of Calcareous Phytoplankton expressed as Chlorophyll in sea water" type="real" uid="ba9e3f08-e5dd-11e5-8482-ac72891c3257" vid="df96c61c07957da1c4e8212f0553fa98"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as &quot;where ice_free_sea over sea&quot;; i.e., the total flux (considered here) entering the ice-free portion of the grid cell divided by the area of the ocean portion of the grid cell.  All such heat fluxes are computed based on Celsius scale." frequency="mon" label="hfrainds" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="80" shuffle="" stid="f948921c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Temperature Flux due to Rainfall Expressed as Heat Flux into Sea Water" type="real" uid="baa67768-e5dd-11e5-8482-ac72891c3257" vid="af7707ac309cab4b2f2ce461f89ab741"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" frequency="yr" label="dissi13c" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="8" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Dissolved Inorganic 13Carbon Concentration" type="real" uid="c9221d38-c5e8-11e6-84e6-5404a60d96b5" vid="59175660-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Geopotential height on the 1000 hPa surface" frequency="day" label="zg1000" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="atmos" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="62efb118-1617-11e7-a126-5404a60d96b5" title="Geopotential Height at 1000 hPa" type="float" uid="19bdf1c6-81b1-11e6-92de-ac72891c3257" vid="a36df015f59d91b021f2534321986440"/>
<item defaultPriority="1" deflate="" deflate_level="" description="proposed name: tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_due_to_wet_deposition" frequency="mon" label="wetso4" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="wet deposition rate of so4" type="float" uid="19be330c-81b1-11e6-92de-ac72891c3257" vid="a3383a3abeddbcb0d27368a8cf9b9503"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Simulated reflectance from PARASOL as seen at the top of the atmosphere for 5 solar zenith angles. Valid only over ocean and for one viewing direction (viewing zenith angle of 30 degrees and relative azimuth angle 320 degrees)." frequency="subhr" label="parasolRefl" mipTable="cfOff" modeling_realm="atmos" mtid="MIPtable::cfOff" positive="" prov="cfOff ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7e7cf9a-562c-11e6-a2a4-ac72891c3257" title="PARASOL Reflectance" type="real" uid="bab3073a-e5dd-11e5-8482-ac72891c3257" vid="a06b8e83250b870d9f39dc1f6534efcb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rldscs" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="down" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="20" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="Surface Downwelling Clear-Sky Longwave Radiation" type="real" uid="bab55792-e5dd-11e5-8482-ac72891c3257" vid="7b2d1e1a3ece1169d8ac61af4b758ed2"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="3hr" label="prcprof" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" processing="report on model half-levels" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="32" shuffle="" stid="f7dc8770-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Convective Rainfall Flux" type="real" uid="bab40e64-e5dd-11e5-8482-ac72891c3257" vid="efca52ebca27f2ee5c0c7926f776ac1d"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of detrital organic carbon component concentrations" frequency="yr" label="detoc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="13" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Detrital Organic Carbon Concentration" type="real" uid="ba9dcf28-e5dd-11e5-8482-ac72891c3257" vid="b0a9616ddee15d1f3740ce445bd82fb1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="i.e., at the top of that portion of the atmosphere where dynamics are explicitly treated by the model. This is reported only if it differs from the net downward radiative flux at the top of the atmosphere." frequency="mon" label="rtmt" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="down" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="50" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Net Downward Flux at Top of Model" type="real" uid="bab6a91c-e5dd-11e5-8482-ac72891c3257" vid="26328c46dfcc65d454b6fd4c52ccb48f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="tauv" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="down" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="31" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Downward Northward Wind Stress" type="real" uid="bab9888a-e5dd-11e5-8482-ac72891c3257" vid="bd10cebbde1593b65e5220911f9a997c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="cod" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="cloud optical depth" type="float" uid="19bdb4c2-81b1-11e6-92de-ac72891c3257" vid="db3d77eebc6dc2fbcab4e0f894e46037"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculated as the mass of stratiform cloud ice  in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="mon" label="clis" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="45" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Mass Fraction of Stratiform Cloud Ice" type="real" uid="baaa8cd6-e5dd-11e5-8482-ac72891c3257" vid="4dbe7bd9b38439125b341edba15aa66a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ta" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Air Temperature" type="float" uid="fda700b2-96ec-11e6-b81e-c9e268aff03a" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="yr" label="o2" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="29" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Dissolved Oxygen Concentration" type="real" uid="ba9e1460-e5dd-11e5-8482-ac72891c3257" vid="c2705ac5fb7561a3aa5744c1163bf2d7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="cfc11global" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="83" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" title="Global Mean Mole Fraction of CFC11" type="real" uid="baa9918c-e5dd-11e5-8482-ac72891c3257" vid="4f875cf09480e892812e0d76a67aff79"/>
<item defaultPriority="1" deflate="" deflate_level="" description="&quot;skin&quot; temperature (i.e., SST for open ocean)" frequency="mon" label="ts" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="15" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Temperature" type="real" uid="babaef0e-e5dd-11e5-8482-ac72891c3257" vid="90c49fce92dc1f21647dad07d1342843"/>
<item defaultPriority="2" deflate="" deflate_level="" description="total primary (organic carbon) production by phytoplankton" frequency="yr" label="pp" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="56" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Primary Carbon Production by Total Phytoplankton" type="real" uid="ba9e8a26-e5dd-11e5-8482-ac72891c3257" vid="41cef8aa37d1f0164ae061f293d4361c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="wetss" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="wet deposition rate of seasalt" type="float" uid="19c0606e-81b1-11e6-92de-ac72891c3257" vid="c97520628498eea6e19cc1be19c73677"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." frequency="day" label="hurs" mipTable="day" mipTableSection="day_oth" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally report this at 2 meters above the surface" prov="day ((isd.003))" provNote="day_oth" rowIndex="26" shuffle="" stid="f7e1ef26-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Near-Surface Relative Humidity" type="real" uid="5a070350-c77d-11e6-8a33-5404a60d96b5" vid="c75f684ec69602e9de82b48e53afb2cc"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of chlorophyll from all phytoplankton group concentrations.  In most models this is equal to chldiat+chlmisc, that is the sum of &quot;Diatom Chlorophyll Mass Concentration&quot; plus &quot;Other Phytoplankton Chlorophyll Mass Concentration&quot;" frequency="mon" label="chl" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1036" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mass Concentration of Total Chlorophyll in sea water" type="real" uid="ba9fb75c-e5dd-11e5-8482-ac72891c3257" vid="ab60603d901dfa1c47f4d2fd7784f8ea"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="expc" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="down" prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="111" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Sinking Particulate Organic Carbon Flux" type="real" uid="baa00ed2-e5dd-11e5-8482-ac72891c3257" vid="4f309d6b2d689c19254dccc24c66e32d"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limnmisc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="116" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Nitrogen Limitation of Other Phytoplankton" type="real" uid="baa0237c-e5dd-11e5-8482-ac72891c3257" vid="ba8065ebbce734a631b427699ddbaf7e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the mass of surface snow on the land portion of the grid cell divided by the land area in the grid cell; reported as 0.0 where the land fraction is 0; excludes snow on vegetation canopy or on sea ice." frequency="day" label="snw" mipTable="day" mipTableSection="day_ss" modeling_realm="landIce land" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="32" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Surface Snow Amount" type="real" uid="bab820b2-e5dd-11e5-8482-ac72891c3257" vid="0e1704f8fbacbe223946d84392b8064e"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="dpco2abio" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Difference between atmospheric and oceanic partial pressure of CO2 (positive meaning ocean &gt; atmosphere) - abiotic component" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="155" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Abiotic Delta PCO2" type="real" uid="c91eacfc-c5e8-11e6-84e6-5404a60d96b5" vid="c97324c8-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." frequency="dec" label="tauuo" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="down" processing="Report on native horizontal grid." prov="Odec ((isd.003))" provNote="" rowIndex="25" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Surface Downward X Stress" type="real" uid="ac26fd4c-bb0d-11e6-83c8-bf7187cdbd68" vid="d1cfe9e20a66d3e922554248677efaba"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rsdscs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1038" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Downwelling Clear-Sky Shortwave Radiation" type="real" uid="8008dbd6-f906-11e6-a176-5404a60d96b5" vid="d0a35d5c99a0aa93ad4069cfe83bf748"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Calculated as the mass of cloud ice  in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="day" label="cli" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="54" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Mass Fraction of Cloud Ice" type="real" uid="baaa7c28-e5dd-11e5-8482-ac72891c3257" vid="dd916e3e2eca18cda5d9f81749d0c91c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="pfull" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" processing="This field is needed only for models in which the pressure can't be calculated from the vertical coordinate information stored already for each variable.  Thus, the pressures are needed for height or theta-coordinate models, for example, but not sigma- or eta-coordinate models." prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="58" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Pressure on Model Levels" type="real" uid="bab32ddc-e5dd-11e5-8482-ac72891c3257" vid="7a107875bd58c5e655e8f87152a3bad7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes both large-scale and convective cloud." frequency="subhr" label="cl" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Cloud Area Fraction" type="real" uid="a95468ae-817c-11e6-a4e2-5404a60d96b5" vid="e0ecf1c1305c1bdc69bee0e7ba1e2e03"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="expcalc" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="" rowIndex="67" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sinking Calcite Flux" type="real" uid="ba9eb9ce-e5dd-11e5-8482-ac72891c3257" vid="71480abb30ae62d262fcea6cfdd753cf"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="co2mass" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="For some simulations (e.g., prescribed concentration pi-control run), this will not vary from one year to the next, and so report instead the variable described in the next table entry.  If CO2 is spatially nonuniform, omit this field, but report Mole Fraction of CO2 (see the table entry before the previous one)." prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="73" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" title="Total Atmospheric Mass of CO2" type="real" uid="baab2d9e-e5dd-11e5-8482-ac72891c3257" vid="ddf060894b16cf89e906ecfedbba4ffb"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="expp" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="64" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sinking Particulate Organic Phosphorus Flux" type="real" uid="ba9ead44-e5dd-11e5-8482-ac72891c3257" vid="60f0a8f8a0311f9c386e64e0b62cf3bd"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="darag" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="71" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Aragonite Dissolution" type="real" uid="ba9ecaa4-e5dd-11e5-8482-ac72891c3257" vid="402d88cf81105fe603118df92bb9eecb"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3natos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="53" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Natural Carbonate ion Concentration" type="real" uid="c91a46ee-c5e8-11e6-84e6-5404a60d96b5" vid="c96eddd2-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="proposed name: tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_due_to_gas_phase_net_chemical_production" frequency="mon" label="chegpso4" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Gas-phase production rate of SO4" type="float" uid="19bfb81c-81b1-11e6-92de-ac72891c3257" vid="ef1d823bb688b3e2a3f8374bb29fe0bf"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Organic Carbon loss to sediments" frequency="mon" label="froc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="167" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Downward Organic Carbon Flux at Ocean Bottom" type="real" uid="baa0f9b4-e5dd-11e5-8482-ac72891c3257" vid="5895b847e6247f0058199d1b26772655"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of salt content for a grid cell from parameterized dianeutral mixing." frequency="yr" label="osaltdiff" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="24" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water salinity expressed as salt content due to parameterized dianeutral mixing" type="real" uid="baa48caa-e5dd-11e5-8482-ac72891c3257" vid="a41ce7d71eb9622c88b8f18438cbe36c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This field is physical, and it arises since sea ice has a nonzero salt content, so it exchanges salt with the liquid ocean upon melting and freezing." frequency="mon" label="sfdsi" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean seaIce" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as mapped onto sphere." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="77" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Downward Sea Ice Basal Salt Flux" type="real" uid="baa662fa-e5dd-11e5-8482-ac72891c3257" vid="8d0958ad5a4eabc97fc1896e847b00fe"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is the rate of carbon uptake by wood due to NPP" frequency="mon" label="nppWood" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="down" prov="Lmon ((isd.003))" provNote="" rowIndex="70" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux due to NPP Allocation to Wood" type="real" uid="bab27d2e-e5dd-11e5-8482-ac72891c3257" vid="fb5bd0286cdca991d0f67c498513f602"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="emiss" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of seasalt" type="float" uid="19bf3086-81b1-11e6-92de-ac72891c3257" vid="377058633cbc6b6700caad600fb06009"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="va" mipTable="6hrPlevPt" modeling_realm="atmos" mtid="MIPtable::6hrPlevPt" positive="" processing="on the following pressure levels: 850, 500, 250 hPa" prov="6hrPlev ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7e9888a-562c-11e6-a2a4-ac72891c3257" title="Northward Wind" type="real" uid="8bae5aba-4a5b-11e6-9cd2-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rlucs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="Report on model half-levels (i.e., interfaces between model layers)." prov="cfSites ((isd.003))" provNote="" rowIndex="30" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Upwelling Clear-Sky Longwave Radiation" type="real" uid="a9551a74-817c-11e6-a4e2-5404a60d96b5" vid="a8607fe15cb4f2997228523340233d91"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="jno2" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="photolysis rate of NO2" type="float" uid="01d3111e-c792-11e6-aa58-5404a60d96b5" vid="dd6aa1c1ecadd98014d1c1a7bbcb0429"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Net of biological terms in time rate of change of nitrogen nutrients (e.g. NO3+NH4)" frequency="yr" label="bddtdin" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="82" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Nitrogen Nutrient due to Biological Activity" type="real" uid="ba9eebf6-e5dd-11e5-8482-ac72891c3257" vid="c075ee7167ef3bc43fef7ce624f960af"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hfcorr" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="If this does not vary from one year to the next, report only a single year.  Positive indicates correction adds heat to ocean. Report on native horizontal grid as well as remapped onto a latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="95" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Heat Flux Correction" type="real" uid="baa6beda-e5dd-11e5-8482-ac72891c3257" vid="0312fb7cbaaff353e66b17c21fb13482"/>
<item defaultPriority="2" deflate="" deflate_level="" description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1 (natural component)." frequency="mon" label="phnat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1027" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Natural pH" type="real" uid="c9235f04-c5e8-11e6-84e6-5404a60d96b5" vid="c97004d2-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ua" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind" type="float" uid="f1f36fa2-aa70-11e6-9736-5404a60d96b5" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="clmcalipso" mipTable="cfMon" mipTableSection="cfMon_sim" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_sim" rowIndex="68" shuffle="" stid="f7df415e-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_sim" title="CALIPSO Percentage Mid Level Cloud" type="real" uid="baaac0de-e5dd-11e5-8482-ac72891c3257" vid="fe9d4b45792f7d6430fe2a9c9b7234b1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rsut" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="up" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="17" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="TOA Outgoing Shortwave Radiation" type="real" uid="bab68392-e5dd-11e5-8482-ac72891c3257" vid="b907fef85d4c9571a9457ee1b259bb8f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." frequency="subhr" label="hur" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="23" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Relative Humidity" type="real" uid="a954c8a8-817c-11e6-a4e2-5404a60d96b5" vid="3cc6766c2d001a58d18dfe7f60fd5e66"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ho2" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="HO2 volume mixing ratio" type="float" uid="fda6f4fa-96ec-11e6-b81e-c9e268aff03a" vid="96f51020-b096-11e6-aab6-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="longitude" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="Note that the CF convention and CMOR2 require that this field will be included in each file that contains a variable that is a function of the &quot;site&quot; dimension, so there is no need to save this field by itself.  It is included here simply to indicate that longitudes should be stored for the site grid in each file written." prov="cfSites ((isd.003))" provNote="" rowIndex="50" shuffle="" stid="f7e3efba-562c-11e6-a2a4-ac72891c3257" title="Longitude" type="real" uid="a95605f6-817c-11e6-a4e2-5404a60d96b5" vid="21ef5e4c-b894-11e6-a189-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="latitude" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="the above comment also applies to latitude." prov="cfSites ((isd.003))" provNote="" rowIndex="51" shuffle="" stid="f7e3efba-562c-11e6-a2a4-ac72891c3257" title="Latitude" type="real" uid="a9561136-817c-11e6-a4e2-5404a60d96b5" vid="2260e24c-b894-11e6-a189-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Abiotic Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" frequency="yr" label="dissi14cabio" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="7" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Abiotic Dissolved Inorganic 14Carbon Concentration" type="real" uid="ba9db7cc-e5dd-11e5-8482-ac72891c3257" vid="1391b0d99790cec6597b02ce4d7c5a67"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Primary (organic carbon) production by diatom phytoplankton components alone" frequency="yr" label="ppdiat" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="76" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Net Primary Organic Carbon Production by Diatoms" type="real" uid="ba9eced2-e5dd-11e5-8482-ac72891c3257" vid="e525bed4-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Contains all contributions to &quot;x-ward&quot; heat transport from resolved and parameterized processes.  Use Celsius for temperature scale." frequency="mon" label="hfx" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="3d field for CMIP6. Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="54" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_3d" title="Ocean Heat X Transport" type="real" uid="baa5e2e4-e5dd-11e5-8482-ac72891c3257" vid="26542cc98f984d1b098796374a7ed264"/>
<item defaultPriority="2" deflate="" deflate_level="" description="computed as the iceberg melt water  flux into the ocean divided by the area of the ocean portion of the grid cell." frequency="mon" label="ficeberg" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="65" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Water Flux into Sea Water From Icebergs" type="real" uid="baa628c6-e5dd-11e5-8482-ac72891c3257" vid="0638f32ebcc32d63faad121d5a83e3be"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon  concentration from mesozooplankton (20-200 um) component alone" frequency="mon" label="zmesoos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="23" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Mesozooplankton expressed as Carbon in Sea Water" type="real" uid="c9187c60-c5e8-11e6-84e6-5404a60d96b5" vid="c96d36ee-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrsoa" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Secondary organic aerosol mass mixing ratio" type="float" uid="19bf1006-81b1-11e6-92de-ac72891c3257" vid="8c58644da8e357d61b70eac2a0afb4f9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="clisccp" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" processing="7 levels x 7 tau" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="57" shuffle="" stid="f7e8acd0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="ISCCP Cloud Area Fraction" type="real" uid="2ab66434-c07e-11e6-8775-5404a60d96b5" vid="fa7666d61b92de5bad1ad76561b8b850"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="phalf" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" processing="This field is needed only for models in which the pressure can't be calculated from the vertical coordinate information stored already for each variable.  Thus, the pressures are needed for height or theta-coordinate models, for example, but not sigma- or eta-coordinate models." prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="59" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Pressure on Model Half-Levels" type="real" uid="bab33ec6-e5dd-11e5-8482-ac72891c3257" vid="154ab10964742eaff37de9cc5beef39c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="includes all phases of water" frequency="3hr" label="h2o" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="22" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Mass Fraction of Water" type="real" uid="baaea62c-e5dd-11e5-8482-ac72891c3257" vid="a7cf325e9bf994ade073a1297378a57c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rldscs" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="down" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="40" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Downwelling Clear-Sky Longwave Radiation" type="real" uid="bab5540e-e5dd-11e5-8482-ac72891c3257" vid="7b2d1e1a3ece1169d8ac61af4b758ed2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="eparag100" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="at 100 m depth." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="146" shuffle="" stid="f948813c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Downward Flux of Aragonite" type="real" uid="5a361136-c77d-11e6-8a33-5404a60d96b5" vid="f43d7527cd48c992f075339b2bbbf9ef"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Dissolved Fe removed through nonbiogenic scavenging onto particles" frequency="yr" label="fescav" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="87" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Nonbiogenic Iron Scavenging" type="real" uid="ba9f05e6-e5dd-11e5-8482-ac72891c3257" vid="9a9dda6b54b64f67bda703c77465cceb"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll from diatom phytoplankton component concentration alone" frequency="mon" label="chldiat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1037" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mass Concentration of Diatom expressed as Chlorophyll in sea water" type="real" uid="ba9fbb80-e5dd-11e5-8482-ac72891c3257" vid="c947141b54f1ab48dba4a84cec99c5d3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertically integrated biogenic phosphorus production" frequency="mon" label="intpbp" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="135" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Phosphorus Production" type="real" uid="baa08420-e5dd-11e5-8482-ac72891c3257" vid="923468afd1b3d19662d02978682c305f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at the top of the atmosphere (to be compared with satellite measurements)" frequency="mon" label="rlut" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="43" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="TOA Outgoing Longwave Radiation" type="real" uid="bab5aad0-e5dd-11e5-8482-ac72891c3257" vid="63345d9732c72b97ca395f24ce2d6642"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="tnpeo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="18" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Tendency of Ocean Potential Energy Content" type="real" uid="bab9e8c0-e5dd-11e5-8482-ac72891c3257" vid="dfd869cd3463de6a57b2a9e10605efe7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="dpco2" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Difference between atmospheric and oceanic partial pressure of CO2 (positive meaning ocean &gt; atmosphere)" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="153" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Delta PCO2" type="real" uid="baa0cbc4-e5dd-11e5-8482-ac72891c3257" vid="011e37046b327b256ca0e6b5f8722699"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of particulate silica component concentrations" frequency="mon" label="bsios" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="46" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Particulate Organic Matter expressed as Silicon in sea water" type="real" uid="c919e186-c5e8-11e6-84e6-5404a60d96b5" vid="c96e7b08-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="The net mass flux represents the difference between the updraft and downdraft components.  For models with a distinct shallow convection scheme, this is calculated as convective mass flux divided by the area of the whole grid cell (not just the area of the cloud)." frequency="mon" label="smc" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" processing="Report on model half-levels (i.e., model layer bounds and not standard pressures)." prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="48" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Shallow Convective Mass Flux" type="real" uid="bab7bdf2-e5dd-11e5-8482-ac72891c3257" vid="706324a93b4c3976da22db8a6e9d78b0"/>
<item defaultPriority="2" deflate="" deflate_level="" description="The net mass flux  represents the difference between the updraft and downdraft components.   This is calculated as the convective mass flux divided by the area of the whole grid cell (not just the area of the cloud)." frequency="mon" label="dmc" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" processing="Report on model half-levels (i.e., model layer bounds and not standard pressures)." prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="49" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Deep Convective Mass Flux" type="real" uid="baac1790-e5dd-11e5-8482-ac72891c3257" vid="517f72b8577df7e97ce2dea8f1143e94"/>
<item defaultPriority="1" deflate="" deflate_level="" description="time-means weighted by the ISCCP Total Cloud Fraction - see http://cfmip.metoffice.com/COSP.html" frequency="mon" label="pctisccp" mipTable="cfMon" mipTableSection="cfMon_sim" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_sim" rowIndex="64" shuffle="" stid="f948cdfe-80ba-11e6-ab6e-5404a60d96b5" subGroup="cfMon_sim" title="ISCCP Mean Cloud Top Pressure" type="real" uid="bab31f68-e5dd-11e5-8482-ac72891c3257" vid="987be9b68c051baf4f0c5b6e8c26b4d8"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This includes sources and sinks from parametrized physics (e.g. radiation, convection, boundary layer, stratiform condensation/evaporation, etc.). It excludes sources and sinks from resolved dynamics and numerical diffusion not associated with parametrized physics.  For example, any vertical diffusion which is part of the boundary layer mixing scheme should be included, while numerical diffusion applied in addition to physics or resolved dynamics should be excluded.  This term is required to check the closure of the heat budget." frequency="subhr" label="tntmp" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="36" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Model Physics" type="real" uid="a9555f5c-817c-11e6-a4e2-5404a60d96b5" vid="621681bc7c376de66228fdde13b97516"/>
<item defaultPriority="1" deflate="" deflate_level="" description="mass of ice water in the column divided by the area of the column (not just the area of the cloudy portion of the column). Includes precipitating frozen hydrometeors ONLY if the precipitating hydrometeor affects the calculation of radiative transfer in model." frequency="subhr" label="clivi" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1049" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Ice Water Path" type="real" uid="8009b4de-f906-11e6-a176-5404a60d96b5" vid="73c496f5669cc122cf1cddfe4df2a27a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This includes sources and sinks from parametrized moist physics (e.g. convection, boundary layer, stratiform condensation/evaporation, etc.) and excludes sources and sinks from resolved dynamics or from horizontal or vertical numerical diffusion not associated with model physicsl.  For example any diffusive mixing by the boundary layer scheme would be included." frequency="subhr" label="tnhusmp" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="45" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Specific Humidity due to Model Physics" type="real" uid="a955ca28-817c-11e6-a4e2-5404a60d96b5" vid="6e30ba1e2c19dcbd85faa176d4eae596"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="huss" mipTable="day" mipTableSection="day_oth" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally, report this at 2 meters above the surface" prov="day ((isd.003))" provNote="day_oth" rowIndex="14" shuffle="" stid="f7e1ef26-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Near-Surface Specific Humidity" type="real" uid="bab0238a-e5dd-11e5-8482-ac72891c3257" vid="ebfefc2ab8716ef597b128171b275945"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the mass of water in all phases in a thin surface soil layer." frequency="3hr" label="mrsos" mipTable="3hr" modeling_realm="land" mtid="MIPtable::3hr" positive="" processing="integrate over uppermost 10 cm" prov="3hr ((isd.003))" provNote="" rowIndex="25" shuffle="" stid="f7e54ec8-562c-11e6-a2a4-ac72891c3257" title="Moisture in Upper Portion of Soil Column" type="real" uid="bab1c668-e5dd-11e5-8482-ac72891c3257" vid="40c091a01dc9db6d6d5901528c375ab3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the mass of water in all phases in a thin surface soil layer." frequency="mon" label="mrsos" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="integrate over uppermost 10 cm" prov="Lmon ((isd.003))" provNote="" rowIndex="14" shuffle="" stid="f7e71b5e-562c-11e6-a2a4-ac72891c3257" title="Moisture in Upper Portion of Soil Column" type="real" uid="bab1c85c-e5dd-11e5-8482-ac72891c3257" vid="40c091a01dc9db6d6d5901528c375ab3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fraction of each grid cell that is occupied by snow that rests on land portion of cell." frequency="mon" label="snc" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Snow Area Fraction" type="real" uid="bab7c2d4-e5dd-11e5-8482-ac72891c3257" vid="e53e97d7e904fe67aa54b721b3c6a290"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="yr" label="po4" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="33" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Total Dissolved Inorganic Phosphorus Concentration" type="real" uid="ba9e25a4-e5dd-11e5-8482-ac72891c3257" vid="72366111fcb3d2a0d14dc917e8fca8eb"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="dms" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="50" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Dimethyl Sulphide in sea water" type="real" uid="ba9e7180-e5dd-11e5-8482-ac72891c3257" vid="04f25e5e4c98a0a98575bc3d805bb03a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="for the whole atmospheric column, as seen from the surface or the top of the atmosphere. Include both large-scale and convective cloud." frequency="subhr" label="clt" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1047" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Total Cloud Fraction" type="real" uid="80098e0a-f906-11e6-a176-5404a60d96b5" vid="7c2249d424dde72f8616d42870a9d425"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is requested only for the emission-driven coupled carbon climate model runs.  Does not include natural fire sources but, includes all anthropogenic sources, including fossil fuel use, cement production, agricultural burning, and sources associated with anthropogenic land use change excluding forest regrowth." frequency="subhr" label="fco2antt" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1055" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Carbon Mass Flux into Atmosphere Due to All Anthropogenic Emissions of CO2" type="real" uid="800a2a40-f906-11e6-a176-5404a60d96b5" vid="cc1b9e3073d751143fe8ab63ca9fcc45"/>
<item defaultPriority="1" deflate="" deflate_level="" description="For Boussinesq models, report this diagnostic as Boussinesq reference density times grid celll volume." frequency="mon" label="masscello" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="10" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Sea Water Mass Per Unit Area" type="real" uid="baa5147c-e5dd-11e5-8482-ac72891c3257" vid="9122e7b627c429163fd0857dc366e14e"/>
<item defaultPriority="2" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by primary evergreen trees." frequency="mon" label="treeFracPrimEver" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="62" shuffle="" stid="fa227410-267c-11e7-9bed-ac72891c3257" title="Total Primary Evergreen Tree Cover Fraction" type="real" uid="babac2c2-e5dd-11e5-8482-ac72891c3257" vid="1e93ae651487e683206b923c11fd6db1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="The atmospheric pressure at the model layer midpoints for all times and levels in the associated output variables" frequency="mon" label="pfull" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Air Pressure" type="float" uid="01d46078-c792-11e6-aa58-5404a60d96b5" vid="7a107875bd58c5e655e8f87152a3bad7"/>
<item defaultPriority="2" deflate="" deflate_level="" description="From all advective mass transport processes, resolved and parameterized." frequency="mon" label="sltovovrt" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, basin" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="59" shuffle="" stid="f7df8fce-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Northward Ocean Salt Transport due to Overturning" type="real" uid="baa5fc0c-e5dd-11e5-8482-ac72891c3257" vid="d0f7da4833bd90226f521ddbf0dbcb63"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the total runoff (including &quot;drainage&quot; through the base of the soil model) leaving the land portion of the grid cell." frequency="mon" label="mrro" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="18" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Runoff" type="real" uid="bab17a6e-e5dd-11e5-8482-ac72891c3257" vid="e0a0f457ec117b27ca8353b11bf9d4fa"/>
<item defaultPriority="3" deflate="" deflate_level="" description="chlorophyll from diatom phytoplankton component concentration alone" frequency="mon" label="chldiatos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="38" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mass Concentration of Diatoms expressed as Chlorophyll in sea water" type="real" uid="c9196b52-c5e8-11e6-84e6-5404a60d96b5" vid="c96e0c22-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of phytoplankton silica component concentrations" frequency="mon" label="physios" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="50" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Total Phytoplankton expressed as Silicon in sea water" type="real" uid="c91a1b7e-c5e8-11e6-84e6-5404a60d96b5" vid="c96eb3e8-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="NOy is the sum of all simulated oxidized nitrogen species, out of NO, NO2, HNO3, HNO4, NO3aerosol, NO3(radical), N2O5, PAN, other organic nitrates." frequency="mon" label="wetnoy" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="wet deposition of noy incl aerosol nitrate" type="float" uid="19beaf58-81b1-11e6-92de-ac72891c3257" vid="ecfae3e2adc49321ec4c9d664fd425ec"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="day" label="sossq" mipTable="Oday" modeling_realm="ocean" mtid="MIPtable::Oday" positive="" processing="Report on the ocean horizontal native grid." prov="Oday ((isd.003))" provNote="" rowIndex="4" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Square of Sea Surface Salinity" type="real" uid="1aa81340-b006-11e6-9289-ac72891c3257" vid="d4eb6956-b00f-11e6-a1f0-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This may differ from &quot;surface temperature&quot; in regions of sea ice.This may differ from &quot;surface temperature&quot; in regions of sea ice.For models using conservative temperature as prognostic field, they should report the SST as surface potent" frequency="dec" label="tosga" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" prov="Odec ((isd.003))" provNote="" rowIndex="10" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" title="Global Average Sea Surface Temperature" type="real" uid="47955a92-bb0b-11e6-8316-5980f7b176d1" vid="dbba7f5717d68960a82b228e03dea7b7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="phalf" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This field is needed only for models in which the pressure can't be calculated from the vertical coordinate information stored already for each variable.  Thus, the pressures are needed for height or theta-coordinate models, for example, but not sigma- or eta-coordinate models." prov="cfSites ((isd.003))" provNote="" rowIndex="49" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Pressure on Model Half-Levels" type="real" uid="a955fa84-817c-11e6-a4e2-5404a60d96b5" vid="154ab10964742eaff37de9cc5beef39c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="exparag" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="" rowIndex="68" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sinking Aragonite Flux" type="real" uid="ba9ebdfc-e5dd-11e5-8482-ac72891c3257" vid="684d3f3543045a89ecbb0ca81ba6705f"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="limirrdiat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="117" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Irradiance limitation of Diatoms" type="real" uid="baa027a0-e5dd-11e5-8482-ac72891c3257" vid="3f25d295551edcd3949776cccca7656c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertically integrated aragonite production" frequency="mon" label="intparag" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="139" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Aragonite Production" type="real" uid="baa0999c-e5dd-11e5-8482-ac72891c3257" vid="baf651d5dbd448df196faedae8a97b22"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="dms" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="DMS volume mixing ratio" type="float" uid="19bfc1d6-81b1-11e6-92de-ac72891c3257" vid="04f25e5e4c98a0a98575bc3d805bb03a"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="epfe100" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="at 100 m depth." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="143" shuffle="" stid="f948813c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Downward Flux of Particulate Iron" type="real" uid="5a35e288-c77d-11e6-8a33-5404a60d96b5" vid="5ad003b9cbc58ca2c9117bb2d144605f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="clhcalipso" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="44" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="CALIPSO High Level Cloud Fraction" type="real" uid="baaa766a-e5dd-11e5-8482-ac72891c3257" vid="7308096ae00ff52340909b2a59415f82"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" frequency="yr" label="dissic" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="4" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Dissolved Inorganic Carbon Concentration" type="real" uid="ba9da994-e5dd-11e5-8482-ac72891c3257" vid="13654e951d583dc7d02b5c23485e6eb5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rlds" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="down" prov="day ((isd.003))" provNote="day_ss" rowIndex="41" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Surface Downwelling Longwave Radiation" type="real" uid="bab538d4-e5dd-11e5-8482-ac72891c3257" vid="70d7d6fc0e9c2f14624a0270bf2b99b9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Computed as the total surface melt water on the land portion of the grid cell divided by the land area in the grid cell; report as 0.0 for snow-free land regions; report as 0.0 where the land fraction is 0." frequency="mon" label="snm" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="17" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Snow Melt" type="real" uid="bab802f8-e5dd-11e5-8482-ac72891c3257" vid="5652800cc64fd945cc990547aee633a1"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="day" label="zg" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="56" shuffle="" stid="f7e6b556-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Geopotential Height" type="real" uid="babda032-e5dd-11e5-8482-ac72891c3257" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="sosga" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="24" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Global Average Sea Surface Salinity" type="real" uid="1aaaf7fe-b006-11e6-9289-ac72891c3257" vid="d4ee4806-b00f-11e6-a1f0-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="total alkalinity equivalent concentration (including carbonate, borate, phosphorus, silicon, and nitrogen components) at preindustrial atmospheric xCO2" frequency="mon" label="talknat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1025" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Natural Total Alkalinity" type="real" uid="ba9f9628-e5dd-11e5-8482-ac72891c3257" vid="ba20ea537eb672813c5a364655855b38"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="od550no3" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="nitrate aod@550nm" type="float" uid="19bfd216-81b1-11e6-92de-ac72891c3257" vid="9e383b9714070f2b9f44effca08f50ac"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="hus" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="22" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Specific Humidity" type="real" uid="a954bd36-817c-11e6-a4e2-5404a60d96b5" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="remoc" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="69" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Remineralization of Organic Carbon" type="real" uid="ba9ec220-e5dd-11e5-8482-ac72891c3257" vid="6b8715466e3423119e9642776eacb693"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrebo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="29" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer Epineutral Biharmonic Diffusivity" type="real" uid="baabcbe6-e5dd-11e5-8482-ac72891c3257" vid="00460a02b5fde2d2bc592e8ac81af0c5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="npp" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="down" processing="needed for any model that does not compute GPP" prov="Lmon ((isd.003))" provNote="" rowIndex="40" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux out of Atmosphere due to Net Primary Production on Land" type="real" uid="bab26690-e5dd-11e5-8482-ac72891c3257" vid="b3267e6a8cd7e4a5401e7fbca2c4bf5a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at the top of the atmosphere." frequency="day" label="rlut" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="up" prov="day ((isd.003))" provNote="day_ss" rowIndex="45" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="TOA Outgoing Longwave Radiation" type="real" uid="bab59c66-e5dd-11e5-8482-ac72891c3257" vid="63345d9732c72b97ca395f24ce2d6642"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the 3-hour mean flux." frequency="3hr" label="rsus" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="up" prov="3hr ((isd.003))" provNote="" rowIndex="21" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Upwelling Shortwave Radiation" type="real" uid="bab65138-e5dd-11e5-8482-ac72891c3257" vid="70bf79db957daa3b82413da949233ac7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Dissolution, remineralization and desorption of iron back to the dissolved phase" frequency="yr" label="fediss" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="88" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Particle Source of Dissolved Iron" type="real" uid="ba9f0a14-e5dd-11e5-8482-ac72891c3257" vid="9af5cb75998bb01d32958af3aeb30083"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Vertically integrated POC" frequency="mon" label="intpoc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="149" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Particulate Organic Carbon Content" type="real" uid="baa0c37c-e5dd-11e5-8482-ac72891c3257" vid="ede7b0fb492e75c5fb9139996880695a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Sigma T is potential density referenced to ocean surface." frequency="mon" label="mlotstmax" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="30" shuffle="" stid="f7e37f76-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Maximum Ocean Mixed Layer Thickness Defined by Sigma T" type="real" uid="1aab3e76-b006-11e6-9289-ac72891c3257" vid="d4ee907c-b00f-11e6-a1f0-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Prognostic z-ward velocity component resolved by the model." frequency="dec" label="wo" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Odec ((isd.003))" provNote="" rowIndex="18" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" title="Sea Water Z Velocity" type="real" uid="4795c766-bb0b-11e6-8316-5980f7b176d1" vid="d476e6113f5c466d27fd3aa9e9c35411"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." frequency="3hr" label="reffsnowc" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="39" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Hydrometeor Effective Radius of Convective Snowfall" type="real" uid="bab4ed66-e5dd-11e5-8482-ac72891c3257" vid="40386a39f65c07f0fbb689b89eb3a004"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="fHarvest" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" prov="Lmon ((isd.003))" provNote="" rowIndex="44" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Crop Harvesting" type="real" uid="baad8e7c-e5dd-11e5-8482-ac72891c3257" vid="f126552ec807a8280d6d43ed084f2fc9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="clcalipso" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" processing="40 levels" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="56" shuffle="" stid="f7e0026a-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="CALIPSO Cloud Fraction" type="real" uid="baaa5bee-e5dd-11e5-8482-ac72891c3257" vid="400e5707b65c01e31f2ec6a59dd3983b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="monthly averaged atmospheric loss" frequency="mon" label="lossco" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Monthly Loss of atmospheric Carbon Monoxide" type="float" uid="fdabeffa-96ec-11e6-b81e-c9e268aff03a" vid="4b34ac408326ab2ca7b58f2ac846f3e5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrebo2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="39" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer Epineutral Biharmonic Diffusivity" type="real" uid="a929e2dc-817c-11e6-a4e2-5404a60d96b5" vid="00460a02b5fde2d2bc592e8ac81af0c5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes both large-scale and convective cloud.  This is calculated as the mass of cloud ice in the grid cell divided by the mass of air (including the water in all phases) in the grid cell. It includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="mon" label="cli" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="Report on model layers (not standard pressures)." prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="60" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Mass Fraction of Cloud Ice" type="real" uid="baaa8326-e5dd-11e5-8482-ac72891c3257" vid="dd916e3e2eca18cda5d9f81749d0c91c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net biological terms in time rate of change of dissolved inorganic carbon" frequency="mon" label="fbddtdic" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="183" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Dissolved Inorganic Carbon due to Biological Activity" type="real" uid="baa13d20-e5dd-11e5-8482-ac72891c3257" vid="0f19e65613afd83f8d9b888d2067ced4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Prognostic x-ward velocity component resolved by the model." frequency="mon" label="uo" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="33" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_3d" title="Sea Water X Velocity" type="real" uid="baa586e6-e5dd-11e5-8482-ac72891c3257" vid="1ed3e3be3675e589a5327ce82016ab72"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Report only if there is a submesoscale eddy parameterization." frequency="mon" label="msftmzsmpa" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, Z, basin.   Also see note above." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="47" shuffle="" stid="529e94b4-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="ocean meridional overturning mass streamfunction due to parameterized submesoscale advection" type="real" uid="baa5c020-e5dd-11e5-8482-ac72891c3257" vid="136d81b44d45d8f7c549469ff69a74a7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="The net mass flux should represent the difference between the updraft and downdraft components.  The flux is computed as the mass divided by the area of the grid cell." frequency="mon" label="mc" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" processing="Report on model half-levels (i.e., model layer bounds and not standard pressures)." prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="61" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" title="Convective Mass Flux" type="real" uid="bab117b8-e5dd-11e5-8482-ac72891c3257" vid="6d790fe4caa7feff46a41ae7b3811e52"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="dryoa" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of dry aerosol total organic matter" type="float" uid="19bf27e4-81b1-11e6-92de-ac72891c3257" vid="6f095163598ce89d463f74ae2a096270"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Integrate 3D emission field vertically to 2d field._If_ fixed molecular weight of NMVOC is not available in model, please provide in units of kilomole m-2 s-1 (i.e. kg m-2 s-1 as if model NMVOC had molecular weight of 1) and add a comment to your file." frequency="mon" label="emibvoc" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of biogenic nmvoc" type="float" uid="19bf3928-81b1-11e6-92de-ac72891c3257" vid="27f1a04b96a7ee0c588ad33c6e1f30fe"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hno3" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="HNO3 volume mixing ratio" type="float" uid="19bf7a5a-81b1-11e6-92de-ac72891c3257" vid="07ae8a0c132c9bf65a2722885a2fcd08"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="tas" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1014" shuffle="" stid="3cbc5abc-1a15-11e7-8130-ac72891c3257" title="Near-Surface Air Temperature" type="real" uid="8007104e-f906-11e6-a176-5404a60d96b5" vid="5c4978e802ba55d5a298cf1b3bdc2b3a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="ccb" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1051" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Air Pressure at Convective Cloud Base" type="real" uid="8009dc3e-f906-11e6-a176-5404a60d96b5" vid="13484743dd3369c69df93379e6dafbb5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="There is no CMIP6 request for zosga nor zossga." frequency="mon" label="zostoga" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="9" shuffle="" stid="f7e2e214-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Global Average Thermosteric Sea Level Change" type="real" uid="baa51058-e5dd-11e5-8482-ac72891c3257" vid="69c17331aebbebfc295d5b7af7f0ef8b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes both large-scale and convective cloud. This is the mass of  cloud ice  in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="subhr" label="cli" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="17" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Mass Fraction of Cloud Ice" type="real" uid="a954830c-817c-11e6-a4e2-5404a60d96b5" vid="dd916e3e2eca18cda5d9f81749d0c91c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="includes sublimation." frequency="mon" label="evspsblsoi" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" prov="Lmon ((isd.003))" provNote="" rowIndex="21" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Water Evaporation from Soil" type="real" uid="baad5d9e-e5dd-11e5-8482-ac72891c3257" vid="fb6dac37f41c49ca02fc234d4da1a782"/>
<item defaultPriority="1" deflate="" deflate_level="" description="a ratio obtained by dividing the total upper leaf surface area of vegetation by the (horizontal) surface area of the land on which it grows." frequency="mon" label="lai" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="37" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Leaf Area Index" type="real" uid="bab0919e-e5dd-11e5-8482-ac72891c3257" vid="6c3e8db1b45a6ae7e80ca5a265c0fd50"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes both liquid and solid phases." frequency="mon" label="prc" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="27" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Convective Precipitation" type="real" uid="bab3f8a2-e5dd-11e5-8482-ac72891c3257" vid="aa2bea81f238ad8f2c35a7e16ad97801"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsus" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="37" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Upwelling Shortwave Radiation" type="real" uid="bab6537c-e5dd-11e5-8482-ac72891c3257" vid="70bf79db957daa3b82413da949233ac7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at the top of the atmosphere" frequency="mon" label="rsut" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="42" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="TOA Outgoing Shortwave Radiation" type="real" uid="bab68ebe-e5dd-11e5-8482-ac72891c3257" vid="b907fef85d4c9571a9457ee1b259bb8f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net biological terms in time rate of change of dissolved inorganic silicon" frequency="mon" label="fbddtdisi" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="187" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Dissolved Inorganic Silicon due to Biological Activity" type="real" uid="baa14df6-e5dd-11e5-8482-ac72891c3257" vid="18060c6741a6b65c90435d19adfbbc98"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="ta" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="50" shuffle="" stid="f7e6b556-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Air Temperature" type="real" uid="bab902e8-e5dd-11e5-8482-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="tran" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" prov="Lmon ((isd.003))" provNote="" rowIndex="22" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Transpiration" type="real" uid="baba9752-e5dd-11e5-8482-ac72891c3257" vid="19e117c2298a016c96c496ee22f39976"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3nat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1052" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Natural Carbonate ion Concentration" type="real" uid="c924e52c-c5e8-11e6-84e6-5404a60d96b5" vid="c9793390-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Zonal wind on the 10 hPa surface" frequency="day" label="ua10" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="62eed4c8-1617-11e7-a126-5404a60d96b5" title="Eastward Wind at 10 hPa" type="float" uid="19bdde3e-81b1-11e6-92de-ac72891c3257" vid="0cde14f7745a201d47b856579bf6e759"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rlu" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="Report on model half-levels (i.e., interfaces between model layers)." prov="cfSites ((isd.003))" provNote="" rowIndex="26" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Upwelling Longwave Radiation" type="real" uid="a954ebee-817c-11e6-a4e2-5404a60d96b5" vid="bcfeacf77d49ef51a6ee66a1ab0ebcb4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="To be specified only in  models which do not separate budget terms for stratiform cloud, precipitation and boundary layer schemes.  Includes all bounday layer terms including and diffusive terms." frequency="subhr" label="tnhusscpbl" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="44" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Specific Humidity Due to Stratiform Cloud and Precipitation and Boundary Layer Mixing" type="real" uid="a955bd76-817c-11e6-a4e2-5404a60d96b5" vid="9e9e7476986ece18ce380652eaabe342"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrelo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="28" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer Epineutral Laplacian Diffusivity" type="real" uid="baabd41a-e5dd-11e5-8482-ac72891c3257" vid="b02d071fff99f2632aa8ac5e83e92215"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difvtrbo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Vertical Tracer Diffusivity due to Background" type="real" uid="baabf242-e5dd-11e5-8482-ac72891c3257" vid="4fb426293126d528f2bbf902b6ede847"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; flux of water into the atmosphere due to conversion of both liquid and solid phases to vapor (from underlying surface and vegetation)" frequency="mon" label="evspsbl" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="28" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Evaporation" type="real" uid="baad45c0-e5dd-11e5-8482-ac72891c3257" vid="089961a3af4d54d5fb045cf3750e760c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="surface pressure, not mean sea level pressure" frequency="6hr" label="ps" mipTable="6hrLev" modeling_realm="atmos" mtid="MIPtable::6hrLev" positive="" prov="6hrLev ((isd.003))" provNote="" rowIndex="18" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Air Pressure" type="real" uid="bab46b70-e5dd-11e5-8482-ac72891c3257" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="total alkalinity equivalent concentration (including carbonate, borate, phosphorus, silicon, and nitrogen components)" frequency="yr" label="talk" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="24" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Total Alkalinity" type="real" uid="ba9e0786-e5dd-11e5-8482-ac72891c3257" vid="d90bac355dae4e53a6d0e5df81a090ad"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Ocean bathymetry. Reported here is the sea floor depth for present day relative to z=0 geoid. Reported as missing for land grid cells." frequency="fx" label="deptho" mipTable="Ofx" modeling_realm="ocean" mtid="MIPtable::Ofx" positive="" processing="save both native and spherical" prov="Ofx ((isd.003))" provNote="" rowIndex="2" shuffle="" stid="62eebbb4-1617-11e7-a126-5404a60d96b5" title="Sea Floor Depth Below Geoid" type="real" uid="baa3e4d0-e5dd-11e5-8482-ac72891c3257" vid="f1b8ddb539cb96eb65453dce4c8bb978"/>
<item defaultPriority="2" deflate="" deflate_level="" description="computed as the total mass per unit time of solid-phase precipitation falling into the ice-free portion of the ocean divided by the area of the ocean portion of the grid cell.   (Snowfall flux includes all types of solid-phase precipitation.)" frequency="mon" label="prsn" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="atmos" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="62" shuffle="" stid="f948921c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Snowfall Flux where Ice Free Ocean over Sea" type="real" uid="baa61c28-e5dd-11e5-8482-ac72891c3257" vid="051919eddec810e292c883205c944ceb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="calculate mass of ice water in the column divided by the area of the column (not just the area of the cloudy portion of the column). This includes precipitating frozen hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="day" label="clivi" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="25" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="Ice Water Path" type="real" uid="baaa9cc6-e5dd-11e5-8482-ac72891c3257" vid="73c496f5669cc122cf1cddfe4df2a27a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="maximum near-surface ozone  (add cell_methods attribute &quot;time: maximum&quot;)" frequency="day" label="sfo3max" mipTable="aerdaily" mipTableSection="aerdaily" modeling_realm="aerosol" mtid="MIPtable::aerdaily" positive="" prov="aerdaily ((isd.003))" provNote="aerdaily" rowIndex="-1" shuffle="" stid="22364c54-c1d0-11e6-9285-ac72891c3257" title="daily maximum O3 volume mixing ratio in lowest model layer" type="float" uid="fda754f4-96ec-11e6-b81e-c9e268aff03a" vid="0656a67a-b896-11e6-a189-5404a60d96b5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from parameterized submesoscale eddy advection. Reported only for models that use conservative temperature as prognostic field." frequency="yr" label="ocontemppsmadvect" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="17" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water conservative temperature expressed as heat content due to parameterized submesoscale advection" type="real" uid="baa46342-e5dd-11e5-8482-ac72891c3257" vid="1742f769c80d35356bf80ab91789eec6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="cct" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="52" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Air Pressure at Convective Cloud Top" type="real" uid="baa96a0e-e5dd-11e5-8482-ac72891c3257" vid="0062272a6a4176b8c32af87642b062c5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the total surface runoff leaving the land portion of the grid cell." frequency="mon" label="mrros" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="17" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Runoff" type="real" uid="bab19ff8-e5dd-11e5-8482-ac72891c3257" vid="26a31ad76858198bd4d719aafeebe801"/>
<item defaultPriority="1" deflate="" deflate_level="" description="sum of chlorophyll from all phytoplankton group concentrations.  In most models this is equal to chldiat+chlmisc, that is the sum of &quot;Diatom Chlorophyll Mass Concentration&quot; plus &quot;Other Phytoplankton Chlorophyll Mass Concentration&quot;" frequency="mon" label="chlos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="37" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mass Concentration of Total Phytoplankton expressed as Chlorophyll in sea water" type="real" uid="c9195d60-c5e8-11e6-84e6-5404a60d96b5" vid="1c757370cf83e5619efc0de4d1241f47"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculated as the mass of convective cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="mon" label="clwc" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="41" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Mass Fraction of Convective Cloud Liquid Water" type="real" uid="baab0b2a-e5dd-11e5-8482-ac72891c3257" vid="9b75db3b829a01b02dfe952824150a33"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="agessc" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="26" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Sea Water Age Since Surface Contact" type="real" uid="baa56de6-e5dd-11e5-8482-ac72891c3257" vid="1bb6dca6b08a4e887ded8a455ef04941"/>
<item defaultPriority="1" deflate="" deflate_level="" description="in each soil layer, the mass of water in all phases, including ice.  Reported as &quot;missing&quot; for grid cells occupied entirely by &quot;sea&quot;" frequency="mon" label="mrlsl" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="If soil layer thicknesses vary from one location to another, interpolate to a standard set of depths.  Ideally, the interpolation should preserve the vertical integral." prov="Lmon ((isd.003))" provNote="" rowIndex="23" shuffle="" stid="f7ed82f0-562c-11e6-a2a4-ac72891c3257" title="Water Content of Soil Layer" type="real" uid="bab17032-e5dd-11e5-8482-ac72891c3257" vid="9f9b6ac3b6a206d024fb2a340dc338d5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rlutcs" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="44" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="TOA Outgoing Clear-Sky Longwave Radiation" type="real" uid="bab5bcdc-e5dd-11e5-8482-ac72891c3257" vid="921b8b8f6620826567d9324314c70410"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Sigma T is potential density referenced to ocean surface." frequency="mon" label="mlotst" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="28" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Ocean Mixed Layer Thickness Defined by Sigma T" type="real" uid="baa57688-e5dd-11e5-8482-ac72891c3257" vid="b1ac17c786f782027deb9a5985ad106e"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="dmsos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="51" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Dimethyl Sulphide in sea water" type="real" uid="c91a2a2e-c5e8-11e6-84e6-5404a60d96b5" vid="c96ec19e-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Prognostic z-ward velocity component resolved by the model." frequency="mon" label="wo" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="35" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_3d" title="Sea Water Z Velocity" type="real" uid="1aab80fc-b006-11e6-9289-ac72891c3257" vid="d476e6113f5c466d27fd3aa9e9c35411"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." frequency="day" label="hur" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="51" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Relative Humidity" type="real" uid="baafe744-e5dd-11e5-8482-ac72891c3257" vid="3cc6766c2d001a58d18dfe7f60fd5e66"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." frequency="mon" label="hur" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="66" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Relative Humidity" type="real" uid="baafe578-e5dd-11e5-8482-ac72891c3257" vid="3cc6766c2d001a58d18dfe7f60fd5e66"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes precipitation of all forms of water in the solid phase" frequency="mon" label="prsn" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="26" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Snowfall Flux" type="real" uid="bab42b88-e5dd-11e5-8482-ac72891c3257" vid="051919eddec810e292c883205c944ceb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes precipitation of all forms of water in the solid phase" frequency="day" label="prsn" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="34" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Snowfall Flux" type="real" uid="bab43b50-e5dd-11e5-8482-ac72891c3257" vid="051919eddec810e292c883205c944ceb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="not, in general, the same as surface pressure" frequency="mon" label="psl" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="18" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Sea Level Pressure" type="real" uid="bab48ce0-e5dd-11e5-8482-ac72891c3257" vid="3d23c359f44d6a153c4dcab9e07d7cb6"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Net of biological terms in time rate of change of alkalinity" frequency="yr" label="bddtalk" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="86" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Alkalinity due to Biological Activity" type="real" uid="ba9f017c-e5dd-11e5-8482-ac72891c3257" vid="e5a8a5a5c4ff0920fa237e5274df57ba"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Depth of calcite saturation horizon (0 if &lt; surface, &quot;missing&quot; if &gt; bottom, if two, then the shallower)" frequency="mon" label="zsatcalc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="175" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Calcite Saturation Depth" type="real" uid="baa11b92-e5dd-11e5-8482-ac72891c3257" vid="7324bbd4b756759ef380f305fe5856b2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="fraction of entire grid cell  that is land and is covered by &quot;non-vegetation&quot; and &quot;non-bare-soil&quot; (e.g., urban, ice, lakes, etc.)" frequency="mon" label="residualFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="add scalar coordinate type???and add &quot;???&quot; to the CF area type table." prov="Lmon ((isd.003))" provNote="" rowIndex="31" shuffle="" stid="fa23833c-267c-11e7-9bed-ac72891c3257" title="Fraction of Grid Cell that is Land but Neither Vegetation-Covered nor Bare Soil" type="real" uid="bab4f1e4-e5dd-11e5-8482-ac72891c3257" vid="e1ca31ce340d507b1dce7a537bbef951"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rsutcs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1045" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="TOA Outgoing Clear-Sky Shortwave Radiation" type="real" uid="80096614-f906-11e6-a176-5404a60d96b5" vid="12e0369ff0ba1a6f1a84e0d9565d4b07"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rld4co2" mipTable="cfMon" mipTableSection="cfMon_3dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="down" prov="cfMon ((isd.003))" provNote="cfMon_3dmod" rowIndex="56" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dmod" title="Downwelling Longwave Radiation 4XCO2 Atmosphere" type="real" uid="bab51a98-e5dd-11e5-8482-ac72891c3257" vid="e0279cf7335a5b9292a1a3c8f70a32a2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Abiotic Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" frequency="yr" label="dissicabio" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="6" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Abiotic Dissolved Inorganic Carbon Concentration" type="real" uid="ba9db38a-e5dd-11e5-8482-ac72891c3257" vid="55febff83b78e06576947e1c0e5b7a7d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="fx" label="hfgeou" mipTable="Ofx" modeling_realm="ocean" mtid="MIPtable::Ofx" positive="up" processing="If this field is time-dependent then save it instead as one of your Omon fields (see the Omon table)" prov="Ofx ((isd.003))" provNote="" rowIndex="7" shuffle="" stid="62eebbb4-1617-11e7-a126-5404a60d96b5" title="Upward Geothermal Heat Flux at Sea Floor" type="real" uid="baa3fb50-e5dd-11e5-8482-ac72891c3257" vid="1418ccb847c5c235176620baf22d7b33"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="mlotstsq" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="29" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Square of Ocean Mixed Layer Thickness Defined by Sigma T" type="real" uid="baa57ac0-e5dd-11e5-8482-ac72891c3257" vid="1c502fa4d453b20feafa63a862eaeb57"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="snc" mipTable="day" mipTableSection="day_ss" modeling_realm="landIce land" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="29" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Snow Area Fraction" type="real" uid="bab7c75c-e5dd-11e5-8482-ac72891c3257" vid="e53e97d7e904fe67aa54b721b3c6a290"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This field is physical, and it arises since sea ice has a nonzero salt content, so it exchanges salt with the liquid ocean upon melting and freezing." frequency="dec" label="sfdsi" mipTable="Odec" modeling_realm="ocean seaIce" mtid="MIPtable::Odec" positive="" processing="Report on native horizontal grid as well as mapped onto sphere." prov="Odec ((isd.003))" provNote="" rowIndex="22" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Downward Sea Ice Basal Salt Flux" type="real" uid="47960082-bb0b-11e6-8316-5980f7b176d1" vid="8d0958ad5a4eabc97fc1896e847b00fe"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from all processes. Reported only for models that use conservative temperature as prognostic field." frequency="yr" label="ocontemptend" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="13" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water conservative temperature expressed as heat content" type="real" uid="baa44e34-e5dd-11e5-8482-ac72891c3257" vid="c4c0cce59536f11df06a045fa8d0c091"/>
<item defaultPriority="1" deflate="" deflate_level="" description="total organic aerosol AOD, comprises all organic aerosols, primary + secondary ; natural + anthropogenic including biomasss burning organic aerosol" frequency="mon" label="od550oa" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total organic aerosol aod@550nm" type="float" uid="19c03a6c-81b1-11e6-92de-ac72891c3257" vid="88dbb9df33c0581eefa084932d25ad0a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes both liquid and solid phases from all types of clouds (both large-scale and convective)" frequency="subhr" label="pr" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1025" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Precipitation" type="real" uid="8007ddbc-f906-11e6-a176-5404a60d96b5" vid="62f26742cf240c1b5169a5cd511196b6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rldscs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1040" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Downwelling Clear-Sky Longwave Radiation" type="real" uid="800903fe-f906-11e6-a176-5404a60d96b5" vid="7b2d1e1a3ece1169d8ac61af4b758ed2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Flux corresponding to rlut resulting fom aerosol-free call to radiation" frequency="mon" label="rlutaf" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="toa outgoing longwave radiation" type="float" uid="8feba756-267c-11e7-8933-ac72891c3257" vid="c9a640b0-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difmxylo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="33" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Momentum XY Laplacian Diffusivity" type="real" uid="baabbbc4-e5dd-11e5-8482-ac72891c3257" vid="64c32fcf490e2e5e9918a5401fa48424"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of zooplankton carbon component concentrations" frequency="mon" label="zoocos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="12" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Zooplankton Carbon Concentration" type="real" uid="c917e0b6-c5e8-11e6-84e6-5404a60d96b5" vid="c96c9c52-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from all processes. Reported only for models that use potential temperature as prognostic field." frequency="yr" label="opottemptend" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="7" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water potential temperature expressed as heat content" type="real" uid="baa42c60-e5dd-11e5-8482-ac72891c3257" vid="d447c41b5f4e8c44f1fe64503cb4caa1"/>
<item defaultPriority="2" deflate="" deflate_level="" description="It is set to zero in models which receive a real water flux." frequency="mon" label="vsf" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="If this does not vary from one year to the next, report only a single year.  Positive flux implies correction increases salinity of water.  This includes all virtual salt flux, including that due to a salt flux correction.  Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="75" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Virtual Salt Flux into Sea Water" type="real" uid="baa65a76-e5dd-11e5-8482-ac72891c3257" vid="f45dc6b68a774051705e099da83e79cf"/>
<item defaultPriority="1" deflate="" deflate_level="" description="mass of condensed (liquid + ice) water in the column divided by the area of the column (not just the area of the cloudy portion of the column). Includes precipitating hydrometeors ONLY if the precipitating hydrometeor affects the calculation of radiative transfer in model." frequency="subhr" label="clwvi" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1048" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Condensed Water Path" type="real" uid="8009a17e-f906-11e6-a176-5404a60d96b5" vid="80a1dd605b563e9f09c718a5ba9cb9cc"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll from diatom phytoplankton component concentration alone" frequency="yr" label="chldiat" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="37" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mass Concentration of Diatom expressed as Chlorophyll in sea water" type="real" uid="ba9e36b6-e5dd-11e5-8482-ac72891c3257" vid="c947141b54f1ab48dba4a84cec99c5d3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate organic iron component concentrations" frequency="yr" label="bfe" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="44" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Particulate Organic Matter expressed as Iron in sea water" type="real" uid="ba9e583a-e5dd-11e5-8482-ac72891c3257" vid="f108633dc7e1585498ceccc06bdfd263"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="so" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="20" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Sea Water Salinity" type="real" uid="baa5491a-e5dd-11e5-8482-ac72891c3257" vid="31eb8d2a1ed4d82ef8bebe4227ec90b9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrpm1" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="PM1.0 mass mixing ratio" type="float" uid="19be3776-81b1-11e6-92de-ac72891c3257" vid="e3e6208c3cf8ae5ac917ee971cb42e29"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="lwp" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="liquid water path" type="float" uid="19bf71ae-81b1-11e6-92de-ac72891c3257" vid="e6b31a1928879fcd3c92fe7b592f070e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Integrate 3D emission field vertically to 2d field. _If_ fixed molecular weight of NMVOC is not available in model, please provide in units of kilomole m-2 s-1 (i.e. kg m-2 s-1 as if model NMVOC had molecular weight of 1) and add a comment to your file." frequency="mon" label="emivoc" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of nmvoc" type="float" uid="19c06d70-81b1-11e6-92de-ac72891c3257" vid="8198a7882dd91603f07b93e929ccdbd0"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hur" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="30" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Relative Humidity" type="real" uid="baafe8fc-e5dd-11e5-8482-ac72891c3257" vid="3cc6766c2d001a58d18dfe7f60fd5e66"/>
<item defaultPriority="1" deflate="" deflate_level="" description="total alkalinity equivalent concentration (including carbonate, borate, phosphorus, silicon, and nitrogen components) at preindustrial atmospheric xCO2" frequency="yr" label="talknat" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="25" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Natural Total Alkalinity" type="real" uid="ba9e0bd2-e5dd-11e5-8482-ac72891c3257" vid="ba20ea537eb672813c5a364655855b38"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rlds" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="down" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="34" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Downwelling Longwave Radiation" type="real" uid="bab52da8-e5dd-11e5-8482-ac72891c3257" vid="70d7d6fc0e9c2f14624a0270bf2b99b9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition" frequency="mon" label="dryso2" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of so2" type="float" uid="19bf521e-81b1-11e6-92de-ac72891c3257" vid="e49733975533eeec7407d54d8373b155"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes precipitation of all forms of water in the solid phase" frequency="subhr" label="prsn" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1026" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Snowfall Flux" type="real" uid="8007f180-f906-11e6-a176-5404a60d96b5" vid="051919eddec810e292c883205c944ceb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="cltcalipso" mipTable="cfMon" mipTableSection="cfMon_sim" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_sim" rowIndex="66" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_sim" title="CALIPSO Percentage Total Cloud" type="real" uid="baaaf4a0-e5dd-11e5-8482-ac72891c3257" vid="ce9ab9b945fcc86013ad10431d8f252e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rsdt" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="down" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="16" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="TOA Incident Shortwave Radiation" type="real" uid="bab625a0-e5dd-11e5-8482-ac72891c3257" vid="a21e250a10f96b1c1ad6d742206a157e"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrblo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="3-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="26" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer Bolus Laplacian Diffusivity" type="real" uid="baabc542-e5dd-11e5-8482-ac72891c3257" vid="1cf6c7fa0adedf95b3eaad5fb3f96b1c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="rGrowth" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" processing="This flux and the one in the following row provide a breakdown of the higher priority &quot;Autotrophic (Plant) Respiration&quot; in an earlier row of this table; thus the sum should be identical to that." prov="Lmon ((isd.003))" provNote="" rowIndex="67" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Growth Autotrophic Respiration on Land" type="real" uid="bab4b4a4-e5dd-11e5-8482-ac72891c3257" vid="f7237f04672f809d49922d1b995f281f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Primary (organic carbon) production by calcareous phytoplankton components alone" frequency="yr" label="ppcalc" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="78" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Net Primary Mole Productivity of Carbon by Calcareous Phytoplankton" type="real" uid="ba9ed724-e5dd-11e5-8482-ac72891c3257" vid="e526caea-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="mfo" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="60" shuffle="" stid="f7e05972-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Sea Water Transport" type="real" uid="baa60bf2-e5dd-11e5-8482-ac72891c3257" vid="91d62d57f0a58495fdf4358dc3ba1165"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Abiotic Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" frequency="mon" label="dissicabioos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="7" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Abiotic Dissolved Inorganic Carbon Concentration" type="real" uid="c91798e0-c5e8-11e6-84e6-5404a60d96b5" vid="c96c5576-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="va" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Northward Wind" type="float" uid="19bfc9f6-81b1-11e6-92de-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="1" deflate="" deflate_level="" description="dissolved iron in sea water is meant to include both Fe2+ and Fe3+ ions (but not, e.g., particulate detrital iron)" frequency="yr" label="dfe" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="34" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of Dissolved Iron in sea water" type="real" uid="ba9e29e6-e5dd-11e5-8482-ac72891c3257" vid="5250c73892803497448e18ba0310c423"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difvmbo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="22" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Vertical Momentum Diffusivity due to Background" type="real" uid="baabe63a-e5dd-11e5-8482-ac72891c3257" vid="f94930c327a257dddea9ef9d0e260ed3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the 3-hour mean flux." frequency="3hr" label="hfls" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="up" prov="3hr ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Upward Latent Heat Flux" type="real" uid="baaefbcc-e5dd-11e5-8482-ac72891c3257" vid="95cbf6ac889c8fe7d92e20e8c34960d1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hfss" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="33" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Upward Sensible Heat Flux" type="real" uid="baaf86a0-e5dd-11e5-8482-ac72891c3257" vid="a13ed886b17e20cdae8b89b9ff8e4610"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="c3h6" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="C3H6  volume mixing ratio" type="float" uid="19be1d4a-81b1-11e6-92de-ac72891c3257" vid="fe6b44a6-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculated as the mass of convective cloud ice  in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="mon" label="clic" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="42" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Mass Fraction of Convective Cloud Ice" type="real" uid="baaa8aa6-e5dd-11e5-8482-ac72891c3257" vid="76f247229d5b524d94dfaedd577eeb84"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rlu4co2" mipTable="cfMon" mipTableSection="cfMon_3dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_3dmod" rowIndex="54" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dmod" title="Upwelling Longwave Radiation 4XCO2 Atmosphere" type="real" uid="bab56b24-e5dd-11e5-8482-ac72891c3257" vid="01918a16b5ac9dbbe932d83357c06a21"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton silica component concentrations" frequency="mon" label="physi" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1049" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Total Phytoplankton expressed as Silicon in sea water" type="real" uid="ba9ff208-e5dd-11e5-8482-ac72891c3257" vid="6cde3055df67931d84608fc5b7694f65"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="frfe" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="172" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Iron Loss to Sediments" type="real" uid="baa10f12-e5dd-11e5-8482-ac72891c3257" vid="ae3a674b4f541f95d2b05da4a84507e7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon from additional zooplankton component concentrations alone (e.g. Micro, meso).  Since the models all have different numbers of components, this variable has been included to provide a check for intercomparison between models since some phytoplankton groups are supersets." frequency="mon" label="zmiscos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="24" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentraiton of Other Zooplankton expressed as Carbon in sea water" type="real" uid="c9188a3e-c5e8-11e6-84e6-5404a60d96b5" vid="c96d459e-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3abio" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1053" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Abiotic Carbonate ion Concentration" type="real" uid="c924fd1e-c5e8-11e6-84e6-5404a60d96b5" vid="c9794182-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of abiotic 13CO2 (positive into ocean)" frequency="yr" label="fg13co2" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="" rowIndex="94" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Flux of Abiotic 13CO2" type="real" uid="c926e9b2-c5e8-11e6-84e6-5404a60d96b5" vid="590e5b82-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the sum of total emission of POA and total production of SOA (emipoa+chepsoa). &quot;&quot;Mass&quot;&quot; refers to the mass of organic matter, not mass of organic carbon alone. We recommend a scale factor of POM=1.4*OC, unless your model has more detailed info available.  Integrate 3D chemical production and emission field vertically to 2d field." frequency="mon" label="emioa" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="primary emission and chemical production of dry aerosol organic matter" type="float" uid="19bee41e-81b1-11e6-92de-ac72891c3257" vid="523886b41b608ce9215833b0406b9c27"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="expc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="62" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sinking Particulate Organic Carbon Flux" type="real" uid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257" vid="4f309d6b2d689c19254dccc24c66e32d"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Abiotic Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" frequency="mon" label="dissicabio" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1006" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Abiotic Dissolved Inorganic Carbon Concentration" type="real" uid="ba9f4326-e5dd-11e5-8482-ac72891c3257" vid="55febff83b78e06576947e1c0e5b7a7d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="huss" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="Normally, the specific humidity should be reported at the 2 meter height" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="24" shuffle="" stid="f7e1ef26-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Near-Surface Specific Humidity" type="real" uid="bab01dfe-e5dd-11e5-8482-ac72891c3257" vid="ebfefc2ab8716ef597b128171b275945"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsd4co2" mipTable="cfMon" mipTableSection="cfMon_3dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="down" prov="cfMon ((isd.003))" provNote="cfMon_3dmod" rowIndex="57" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dmod" title="Downwelling Shortwave Radiation 4XCO2 Atmosphere" type="real" uid="bab5cf9c-e5dd-11e5-8482-ac72891c3257" vid="6248574ebce5bf9fde3841735c9108bc"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the net flux of heat entering the liquid water column through its upper surface (excluding any &quot;flux adjustment&quot;) ." frequency="mon" label="hfds" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="Report on native horizontal grid as well as remapped onto a latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="96" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Downward Heat Flux at Sea Water Surface" type="real" uid="baa6c33a-e5dd-11e5-8482-ac72891c3257" vid="db14915fa8f71225f7775d0d922197ec"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is a 3-hour mean flux." frequency="3hr" label="rldscs" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="down" prov="3hr ((isd.003))" provNote="" rowIndex="31" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Downwelling Clear-Sky Longwave Radiation" type="real" uid="bab55f12-e5dd-11e5-8482-ac72891c3257" vid="7b2d1e1a3ece1169d8ac61af4b758ed2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="wetdust" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="wet deposition rate of dust" type="float" uid="19be7024-81b1-11e6-92de-ac72891c3257" vid="0f914086f4c1cd76f867eef7cd71154d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="monClim" label="o3Clim" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="If O3 does not vary from one year to the next, report 12 months, starting with January.   (Note: include all 12 months even if the values don't vary seasonally.)  When calling CMOR, identify this variable as tro3Clim, not tro3. If the O3 varies from one year to the next,  then report instead the field described in the previous table entry.  Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="70" shuffle="" stid="e9f98ed8-c1ce-11e6-8067-ac72891c3257" title="Mole Fraction of O3" type="real" uid="59fc01c6-c77d-11e6-8a33-5404a60d96b5" vid="1d4594c97188efd47935238a429e02e4"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of phytoplankton carbon component concentrations.  In most (all?) cases this is the sum of phycdiat and phycmisc (i.e., &quot;Diatom Carbon Concentration&quot; and &quot;Non-Diatom Phytoplankton Carbon Concentration&quot;" frequency="yr" label="phyc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="10" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Phytoplankton Carbon Concentration" type="real" uid="ba9dc05a-e5dd-11e5-8482-ac72891c3257" vid="54eb2f6651441ff52f9aea4d43a83024"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from parameterized submesoscale eddy advection. Reported only for models that use potential temperature as prognostic field." frequency="yr" label="opottemppsmadvect" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="11" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water potential temperature expressed as heat content due to parameterized submesoscale advection" type="real" uid="baa441f0-e5dd-11e5-8482-ac72891c3257" vid="64c745ab7c8597bb0afed2bafd12c20c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="cltisccp" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="38" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="ISCCP Total Total Cloud Fraction" type="real" uid="baaaf8a6-e5dd-11e5-8482-ac72891c3257" vid="b045cae1f65ba99831648f136b309e91"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="hus" mipTable="6hrLev" modeling_realm="atmos" mtid="MIPtable::6hrLev" positive="" processing="on all model levels" prov="6hrLev ((isd.003))" provNote="" rowIndex="17" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Specific Humidity" type="real" uid="bab009cc-e5dd-11e5-8482-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of natural CO2 (positive into ocean)" frequency="yr" label="fgco2nat" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="" rowIndex="91" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Flux of Natural CO2" type="real" uid="c926c090-c5e8-11e6-84e6-5404a60d96b5" vid="97c037c3357f24c4e06c07123224b400"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." frequency="mon" label="drydust" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of dust" type="float" uid="19c064c4-81b1-11e6-92de-ac72891c3257" vid="6444d8c6e394c5d66ae3f732f0ede043"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." frequency="mon" label="tauvo" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="98" shuffle="" stid="00b9aebc-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_oth" title="Surface Downward Y Stress" type="real" uid="baa6d366-e5dd-11e5-8482-ac72891c3257" vid="593ed46e925a8bce9de9eb47f5e72632"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="va" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="64" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Northward Wind" type="real" uid="babbb25e-e5dd-11e5-8482-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of abiotic 14CO2 (positive into ocean)" frequency="mon" label="fg14co2abio" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="down" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="160" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Flux of Abiotic 14CO2" type="real" uid="baa0e08c-e5dd-11e5-8482-ac72891c3257" vid="f36046ab9a8a24ce4d7431e2defd9cf6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Computed as the mass of surface snow on the land portion of the grid cell divided by the land area in the grid cell; reported as 0.0 where the land fraction is 0; excluded is snow on vegetation canopy or on sea ice." frequency="mon" label="snw" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Snow Amount" type="real" uid="bab81e50-e5dd-11e5-8482-ac72891c3257" vid="0e1704f8fbacbe223946d84392b8064e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="The snow and ice sublimation flux is the loss of snow and ice mass from the surface resulting from their conversion to water vapor that enters the atmosphere." frequency="subhr" label="sbl" mipTable="cfSites" modeling_realm="landIce" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1029" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Snow and Ice Sublimation Flux" type="real" uid="80082b5a-f906-11e6-a176-5404a60d96b5" vid="3a8e1636a31c82fbdd9a1ae45ab3be7d"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculated as the convective mass flux divided by the area of the whole grid cell (not just the area of the cloud)." frequency="mon" label="mcu" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" processing="Report on model half-levels (i.e., model layer bounds and not standard pressures)." prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="46" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Updraft Convective Mass Flux" type="real" uid="bab125a0-e5dd-11e5-8482-ac72891c3257" vid="62aa098b13f86fa22de1a874536a64ae"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="cllcalipso" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="42" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="CALIPSO Low Level Cloud Fraction" type="real" uid="baaab2e2-e5dd-11e5-8482-ac72891c3257" vid="0bbbf303ac691061a69938846f32b23b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="ua" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="45" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Eastward Wind" type="real" uid="babb4cf6-e5dd-11e5-8482-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="monthly averaged atmospheric loss" frequency="mon" label="lossch4" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Monthly Loss of atmospheric Methane" type="float" uid="fda95466-96ec-11e6-b81e-c9e268aff03a" vid="83a106b1a10c23b2891aabceec43a873"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="dpo2" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Difference between atmospheric and oceanic partial pressure of O2 (positive meaning ocean &gt; atmosphere)" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="156" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Delta PO2" type="real" uid="baa0cff2-e5dd-11e5-8482-ac72891c3257" vid="abe5993d07b8b52e770ed957b060f9ed"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="n2oglobal" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="For some simulations (e.g., prescribed concentration pi-control run), this will not vary from one year to the next, and so report instead the variable described in the next table entry.  If N2O is spatially nonuniform, omit this field, but report Mole Fraction of N2O (see the table entry before the previous one).   Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="81" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" title="Global Mean Mole Fraction of N2O" type="real" uid="bab221e4-e5dd-11e5-8482-ac72891c3257" vid="09c328529f2fac58c1b016da33ba394c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="tasmax" mipTable="day" mipTableSection="day_oth" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally report this at 2 meters above the surface" prov="day ((isd.003))" provNote="day_oth" rowIndex="16" shuffle="" stid="f7e2a074-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Daily Maximum Near-Surface Air Temperature" type="real" uid="bab94a50-e5dd-11e5-8482-ac72891c3257" vid="2dd48e8c50b4b88a83ff07d308e4e642"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="sios" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="36" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Total Dissolved Inorganic Silicon Concentration" type="real" uid="c9194dd4-c5e8-11e6-84e6-5404a60d96b5" vid="c96df0fc-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="emidust" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of dust" type="float" uid="19be5db4-81b1-11e6-92de-ac72891c3257" vid="96d843d6b5a59d1e53e07df9641def86"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="tnt" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="34" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature" type="real" uid="a955485a-817c-11e6-a4e2-5404a60d96b5" vid="c8b1814845661bcad37910e70a59b285"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="oh" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="OH volume mixing ratio" type="float" uid="fda699f6-96ec-11e6-b81e-c9e268aff03a" vid="609d47152c2ed8122caa2528117aff9a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="monClim" label="co2Clim" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="Report only for simulations (e.g., prescribed concentration pi-control run), in which the CO2 does not vary from one year to the next. Report 12 monthly values, starting with January, even if the values don't vary seasonally.  When calling CMOR, identify this variable as co2Clim, not co2.   If  CO2 is spatially uniform, omit this field, but report Total Atmospheric Mass of CO2 (see the table entry after the next).  Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="72" shuffle="" stid="e9f98ed8-c1ce-11e6-8067-ac72891c3257" title="Mole Fraction of CO2" type="real" uid="a92dfd68-817c-11e6-a4e2-5404a60d96b5" vid="9bb9a503065dfbd30c9bbe5c3c6abf99"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Sum of dissolved carbon component concentrations explicitly represented (i.e. not ~40 uM refractory unless explicit)" frequency="yr" label="dissoc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="9" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Dissolved Organic Carbon Concentration" type="real" uid="ba9dbc04-e5dd-11e5-8482-ac72891c3257" vid="b4ae9d56d038ff977f0db7f578841c5a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="tnhusa" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="33" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Specific Humidity due to Advection" type="real" uid="bab9ce44-e5dd-11e5-8482-ac72891c3257" vid="150d0829eec06aeaf75d22d08d328ffa"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Abiotic Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" frequency="mon" label="dissi14cabio" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1007" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Abiotic Dissolved Inorganic 14Carbon Concentration" type="real" uid="ba9f474a-e5dd-11e5-8482-ac72891c3257" vid="1391b0d99790cec6597b02ce4d7c5a67"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="soga" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="21" shuffle="" stid="f7e2e214-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Global Mean Sea Water Salinity" type="real" uid="baa55086-e5dd-11e5-8482-ac72891c3257" vid="e6c345fa8ddd98d9834116333c2ee901"/>
<item defaultPriority="2" deflate="" deflate_level="" description="computed as the river flux of water into the ocean divided by the area of the ocean portion of the grid cell." frequency="mon" label="friver" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="64" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Water Flux into Sea Water From Rivers" type="real" uid="baa6247a-e5dd-11e5-8482-ac72891c3257" vid="be153e40e1e09d1d46a191b3a99be7f5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="monthly mean of the daily-minimum near-surface air temperature." frequency="mon" label="tasmin" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="normally, this should be reported at the 2 meter height." prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="16" shuffle="" stid="f7e03122-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Daily Minimum Near-Surface Air Temperature" type="real" uid="bab955ea-e5dd-11e5-8482-ac72891c3257" vid="cce3dd39c138bf3c4d713263cc2e6cff"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrdust" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Dust aerosol mass mixing ratio" type="float" uid="19bed91a-81b1-11e6-92de-ac72891c3257" vid="dcecb293537e640a0bfc8f88a92967fe"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rlutcs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1044" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="TOA Outgoing Clear-Sky Longwave Radiation" type="real" uid="800952fa-f906-11e6-a176-5404a60d96b5" vid="921b8b8f6620826567d9324314c70410"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Depth integrated impacts on kinetic energy arising from parameterized eddy-induced advection. For CMIP5, this diagnostic was 3d, whereas the CMIP6 depth integrated diagnostic is sufficient for many purposes and reduces archive requirements." frequency="yr" label="tnkebto" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="30" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of ocean eddy kinetic energy content due to parameterized eddy advection" type="real" uid="baa4e07e-e5dd-11e5-8482-ac72891c3257" vid="bb27046ce21470dfbbecdd4f7eca546a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="ta" mipTable="6hrLev" modeling_realm="atmos" mtid="MIPtable::6hrLev" positive="" processing="on all model levels" prov="6hrLev ((isd.003))" provNote="" rowIndex="14" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Air Temperature" type="real" uid="bab8f686-e5dd-11e5-8482-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="monClim" label="zfullo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="This 3-d time dependent field should only be saved for models where it can't be calculated from the vertical coordinate information stored in the file." prov="Oclim ((isd.003))" provNote="" rowIndex="46" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Depth Below Geoid of Ocean Layer" type="real" uid="3c564abe-b89b-11e6-be04-ac72891c3257" vid="44471dd9799293cef70ac63fcdd2476e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This includes any horizontal or vertical numerical moisture diffusion not associated with the parametrized moist physics or the resolved dynamics.  For example, any vertical diffusion which is part of the boundary layer mixing scheme should be excluded, as should any diffusion which is included in the terms from the resolved dynamics.   This term is required to check the closure of the moisture budget." frequency="mon" label="tnhusd" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="35" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Specific Humidity due to Numerical Diffusion" type="real" uid="bab9d6c8-e5dd-11e5-8482-ac72891c3257" vid="2c8cb564bae033f641135194947da163"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="cProduct" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="36" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Products of Land Use Change" type="real" uid="baa8d49a-e5dd-11e5-8482-ac72891c3257" vid="57c2e414bde585cc60a7b2f980e1f870"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="tnpeotb" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="20" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Tendency of Ocean Potential Energy Content due to Background" type="real" uid="bab9edde-e5dd-11e5-8482-ac72891c3257" vid="d00cab8104f1a9e853ebfa511d725462"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of bacterial carbon component concentrations" frequency="mon" label="bacc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1012" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Bacterial Carbon Concentration" type="real" uid="ba9f5bea-e5dd-11e5-8482-ac72891c3257" vid="27ad2512525b0c42b7edd88f1dad5955"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of salt content for a grid cell from parameterized mesoscale eddy diffusion." frequency="yr" label="osaltpmdiff" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="23" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water salinity expressed as salt content due to parameterized mesoscale diffusion" type="real" uid="baa4844e-e5dd-11e5-8482-ac72891c3257" vid="02e08dbdee260db0debd5685cb62934f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsutcs" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="45" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="TOA Outgoing Clear-Sky Shortwave Radiation" type="real" uid="bab69c06-e5dd-11e5-8482-ac72891c3257" vid="12e0369ff0ba1a6f1a84e0d9565d4b07"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ccn" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="cloud condensation nuclei concentration at liquid cloud top" type="float" uid="19c04e94-81b1-11e6-92de-ac72891c3257" vid="5fb2c6633cdd98673b7b12d257575460"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from residual mean (sum of Eulerian mean + parameterized eddy-induced) advection. Reported only for models that use potential temperature as prognostic field." frequency="yr" label="opottemprmadvect" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="8" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water potential temperature expressed as heat content due to residual mean advection" type="real" uid="1aaf7360-b006-11e6-9289-ac72891c3257" vid="3cbe53c2-12cc-11e6-b2bc-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="omldamax" mipTable="Oday" mipTableSection="day_oth" modeling_realm="ocean" mtid="MIPtable::Oday" positive="" processing="Report on the ocean grid.  This variable appears in WGOMD Table 2.2" prov="day ((isd.003))" provNote="day_oth" rowIndex="23" shuffle="" stid="f7e37f76-562c-11e6-a2a4-ac72891c3257" title="Daily Maximum Ocean Mixed Layer Thickness Defined by Mixing Scheme" type="real" uid="bab2ce3c-e5dd-11e5-8482-ac72891c3257" vid="5f8dc9362d17e2daa42dd6f0f38afb76"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="h2o" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="H2O volume mixing ratio" type="float" uid="fda6d178-96ec-11e6-b81e-c9e268aff03a" vid="a7cf325e9bf994ade073a1297378a57c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="tnkebto2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="42" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Tendency of Ocean Eddy Kinetic Energy Content due to Bolus Transport" type="real" uid="a92a06b8-817c-11e6-a4e2-5404a60d96b5" vid="bb27046ce21470dfbbecdd4f7eca546a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="epcalc100" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="at 100 m depth." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="145" shuffle="" stid="f948813c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Downward Flux of Calcite" type="real" uid="5a3602cc-c77d-11e6-8a33-5404a60d96b5" vid="6308b546e0eb4e1962d36ba5b98904ee"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="clcalipso" mipTable="cfOff" modeling_realm="atmos" mtid="MIPtable::cfOff" positive="" processing="40 height levels" prov="cfOff ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7e0026a-562c-11e6-a2a4-ac72891c3257" title="CALIPSO Cloud Fraction" type="real" uid="baaa5f72-e5dd-11e5-8482-ac72891c3257" vid="400e5707b65c01e31f2ec6a59dd3983b"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limfediaz" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="123" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Iron limitation of Diazotrophs" type="real" uid="baa0406e-e5dd-11e5-8482-ac72891c3257" vid="98544553b7ee286405344aa2e3e88c8e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="When computing the time-mean here, the time samples, weighted by the mass of snow on the land portion of the grid cell, are accumulated and then divided by the sum of the weights.  Reported as &quot;missing in regions free of snow on land." frequency="mon" label="agesno" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" prov="LImon ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f9478548-80ba-11e6-ab6e-5404a60d96b5" title="Snow Age" type="real" uid="baa7f8ae-e5dd-11e5-8482-ac72891c3257" vid="51e0588121783d77407236e0d2eb5d14"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3os" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="52" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Carbonate ion Concentration" type="real" uid="c91a38ca-c5e8-11e6-84e6-5404a60d96b5" vid="c96ecf22-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fixed surface layer mixing ratio over 30o-50oN (100ppbv), uniform fixed 50-day exponential decay." frequency="mon" label="nh50" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Artificial tracer with 50 day lifetime" type="float" uid="3a0778aa-9c3a-11e6-8d5d-ac72891c3257" vid="97bf948c-b896-11e6-a189-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="3hr" label="prlsprof" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" processing="report on model half-levels" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="33" shuffle="" stid="f7dc8770-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Stratiform Rainfall Flux" type="real" uid="bab41530-e5dd-11e5-8482-ac72891c3257" vid="1e53b0fda8f2186407bb29f802c0aa93"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rsd" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="Report on model half-levels (i.e., interfaces between model layers)." prov="cfSites ((isd.003))" provNote="" rowIndex="29" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Downwelling Shortwave Radiation" type="real" uid="a9550dd6-817c-11e6-a4e2-5404a60d96b5" vid="eb9ac643cd9c73cae960d6d2db7b901d"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="3hr" label="clc" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="45" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Convective Cloud Area Fraction" type="real" uid="baaa53ba-e5dd-11e5-8482-ac72891c3257" vid="1aefc13bd27020244fe1cfd706ce1041"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="fx" label="basin" mipTable="Ofx" modeling_realm="ocean" mtid="MIPtable::Ofx" positive="" processing="Report on the same grid as the temperature field. flag_values=0,1,2,3,4,5,6,7,8,9,10 corresponding to flag_meanings=global_land, southern_ocean, atlantic_ocean, pacific_ocean, arctic_ocean, indian_ocean, mediterranean_sea, black_sea, hudson_bay, baltic_sea, red_sea." prov="Ofx ((isd.003))" provNote="" rowIndex="6" shuffle="" stid="62efb6d6-1617-11e7-a126-5404a60d96b5" title="Region Selection Index" type="integer" uid="baa3f718-e5dd-11e5-8482-ac72891c3257" vid="1d3ef4c73895a317948f1f3870f65834"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limirrcalc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="119" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Irradiance limitation of Calcareous Phytoplankton" type="real" uid="baa02ff2-e5dd-11e5-8482-ac72891c3257" vid="bbca9d7202577ef64ed889685489a6aa"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="spco2nat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="151" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Natural Surface Aqueous Partial Pressure of CO2" type="real" uid="c91e799e-c5e8-11e6-84e6-5404a60d96b5" vid="c972f264-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="pbfe" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1058" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Biogenic Iron Production" type="real" uid="c9255372-c5e8-11e6-84e6-5404a60d96b5" vid="a336fa5c0a328636d04ea8f648dcd7c7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="sossq" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="25" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Square of Sea Surface Salinity" type="real" uid="1aab073a-b006-11e6-9289-ac72891c3257" vid="d4eb6956-b00f-11e6-a1f0-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fixed surface layer mixing ratio over 30o-50oN (0 ppbv), uniform fixed source (at all levels) everywhere else (source is unspecified but must be constant in space and time and documented). Note that the source could be 1yr/yr, so the tracer concentration provides mean age in years. For method using linearly increasing tracer include a method attribute: &quot;linearly increasing tracer&quot;For method using uniform source (1yr/yr) include a method attribute: &quot;uniform source&quot;" frequency="mon" label="aoanh" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Tracer age of air Northern Hemisphere" type="float" uid="3a0a3d38-9c3a-11e6-8d5d-ac72891c3257" vid="98114e26-b896-11e6-a189-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CO2 emissions (expressed as a carbon mass flux) from natural fires + human ignition fires as calculated by the fire module of the DGVM, but excluding any CO2 flux from fire included in fLuc, defined below (CO2 Flux to Atmosphere from Land Use Change)." frequency="mon" label="fFire" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" prov="Lmon ((isd.003))" provNote="" rowIndex="42" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to CO2 Emission from Fire" type="real" uid="baad7f22-e5dd-11e5-8482-ac72891c3257" vid="be3bec2766baa15a7d57b8c2689fdf3d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="fVegLitter" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="47" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Carbon Mass Flux from Vegetation to Litter" type="real" uid="baada4ca-e5dd-11e5-8482-ac72891c3257" vid="43cf738374ffa1253a603ea54447203f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="phalf" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="88" shuffle="" stid="e9f9de42-c1ce-11e6-8067-ac72891c3257" title="Pressure on Model Half-Levels" type="real" uid="bab33d04-e5dd-11e5-8482-ac72891c3257" vid="154ab10964742eaff37de9cc5beef39c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from penetrative shortwave radiation within a grid cell." frequency="yr" label="rsdoabsorb" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="6" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="net rate of absorption of shortwave energy in ocean layer" type="real" uid="1aaf5b6e-b006-11e6-9289-ac72891c3257" vid="b2f82090-fbed-11e5-8f03-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="To be specified only in  models which do not separate budget terms for stratiform cloud, precipitation and boundary layer schemes.  Includes all bounday layer terms including and diffusive terms." frequency="mon" label="tnhusscpbl" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="36" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Specific Humidity Due to Stratiform Cloud and Precipitation and Boundary Layer Mixing" type="real" uid="bab9dfd8-e5dd-11e5-8482-ac72891c3257" vid="9e9e7476986ece18ce380652eaabe342"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Diagnostic should be contributed only for models using conservative temperature as prognostic field." frequency="mon" label="bigthetao" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="14" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Sea Water Convervative Temperature" type="real" uid="baa5255c-e5dd-11e5-8482-ac72891c3257" vid="4bccb8dcdb0ffe97dc89475c91ed66cc"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="hcfc22global" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="85" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" title="Global Mean Mole Fraction of HCFC22" type="real" uid="baaeaf1e-e5dd-11e5-8482-ac72891c3257" vid="2c1d2748570f208b1dde04d1e926b5e0"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes both liquid and solid phases.  This is the 3-hour mean precipitation flux." frequency="3hr" label="pr" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="14" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Precipitation" type="real" uid="bab3c904-e5dd-11e5-8482-ac72891c3257" vid="62f26742cf240c1b5169a5cd511196b6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Prognostic y-ward velocity component resolved by the model." frequency="mon" label="vo" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="34" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_3d" title="Sea Water Y Velocity" type="real" uid="baa58b1e-e5dd-11e5-8482-ac72891c3257" vid="3e3ddc77800e7d421834b9cb808602d7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="&quot;where land over land&quot;, i.e., this is the total mass of liquid water contained within the permafrost layer within the land portion of a grid cell divided by the area of the land portion of the cell." frequency="mon" label="pflw" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="" processing="Why do you want to know mass of liquid water?  Are you studying the seaasonal melting/freezing cycle?  Don't you care about how much frozen water is tied up as permafrost?" prov="LImon ((isd.003))" provNote="" rowIndex="19" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Liquid Water Content of Permafrost Layer" type="real" uid="bab323d2-e5dd-11e5-8482-ac72891c3257" vid="67adc30ae1278d2ef6d696ba0e2c92e8"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="fx" label="sftlf" mipTable="fx" modeling_realm="atmos" mtid="MIPtable::fx" positive="" processing="For atmospheres with more than 1 mesh (e.g., staggered grids), report areas that apply to surface vertical fluxes of energy." prov="fx ((isd.003))" provNote="" rowIndex="17" shuffle="" stid="f7decc10-562c-11e6-a2a4-ac72891c3257" title="Land Area Fraction" type="real" uid="bab742c8-e5dd-11e5-8482-ac72891c3257" vid="b0444e42-b096-11e6-aab6-ac72891c3257"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="yr" label="graz" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="89" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Total Grazing of Phytoplankton by Zooplankton" type="real" uid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257" vid="28a54e8b5b73c4ae915a82ed99c74459"/>
<item defaultPriority="2" deflate="" deflate_level="" description="total primary (organic carbon) production by phytoplankton" frequency="mon" label="pp" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1056" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Primary Carbon Production by Total Phytoplankton" type="real" uid="baa0069e-e5dd-11e5-8482-ac72891c3257" vid="41cef8aa37d1f0164ae061f293d4361c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ccb" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="51" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Air Pressure at Convective Cloud Base" type="real" uid="baa92652-e5dd-11e5-8482-ac72891c3257" vid="13484743dd3369c69df93379e6dafbb5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is requested only for the emission-driven coupled carbon climate model runs.  Does not include natural fire sources but, includes all anthropogenic sources, including fossil fuel use, cement production, agricultural burning, and sources associated with anthropogenic land use change excluding forest regrowth." frequency="mon" label="fco2antt" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="55" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Carbon Mass Flux into Atmosphere Due to All Anthropogenic Emissions of CO2" type="real" uid="baaddada-e5dd-11e5-8482-ac72891c3257" vid="cc1b9e3073d751143fe8ab63ca9fcc45"/>
<item defaultPriority="2" deflate="" deflate_level="" description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1." frequency="mon" label="phnatos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="28" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Natural pH" type="real" uid="c918d278-c5e8-11e6-84e6-5404a60d96b5" vid="c96d8090-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Integrate 3D emission field vertically to 2d field." frequency="mon" label="eminh3" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of nh3" type="float" uid="19c0574a-81b1-11e6-92de-ac72891c3257" vid="0f732311bca54b8620535615258be52d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the mass per unit area  (summed over all soil layers) of water in all phases." frequency="day" label="mrso" mipTable="day" mipTableSection="day_oth" modeling_realm="land" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_oth" rowIndex="24" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Total Soil Moisture Content" type="real" uid="3c641b6c-b89b-11e6-be04-ac72891c3257" vid="af574f1ac4a9f44a2d943352a455cfeb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="zfullo" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="This 3-d time dependent field should only be saved for models where it can't be calculated from the vertical coordinate information stored in the file." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="101" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Depth Below Geoid of Ocean Layer" type="real" uid="5a4c10e4-c77d-11e6-8a33-5404a60d96b5" vid="44471dd9799293cef70ac63fcdd2476e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes also the fluxes at the surface and TOA." frequency="mon" label="rlucs" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="19" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Upwelling Clear-Sky Longwave Radiation" type="real" uid="bab5768c-e5dd-11e5-8482-ac72891c3257" vid="a8607fe15cb4f2997228523340233d91"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This includes sources and sinks from parametrized physics (e.g. radiation, convection, boundary layer, stratiform condensation/evaporation, etc.). It excludes sources and sinks from resolved dynamics and numerical diffusion not associated with parametrized physics.  For example, any vertical diffusion which is part of the boundary layer mixing scheme should be included, while numerical diffusion applied in addition to physics or resolved dynamics should be excluded.  This term is required to check the closure of the heat budget." frequency="mon" label="tntmp" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="26" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Air Temperature due to Model Physics" type="real" uid="baba5d78-e5dd-11e5-8482-ac72891c3257" vid="621681bc7c376de66228fdde13b97516"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from parameterized mesoscale eddy diffusion. Reported only for models that use conservative temperature as prognostic field." frequency="yr" label="ocontemppmdiff" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="16" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water conservative temperature expressed as heat content due to parameterized mesoscale diffusion" type="real" uid="baa45f14-e5dd-11e5-8482-ac72891c3257" vid="7c5c71f969a6318b3fa5ff2875272caf"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difvho" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="14" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Vertical Heat Diffusivity" type="real" uid="baabe3d8-e5dd-11e5-8482-ac72891c3257" vid="120719dde7f96f9bc088acd33b97967f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="monClim" label="zhalfo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="This 3-d time dependent field should only be saved for models where it can't be calculated from the vertical coordinate information stored in the file." prov="Oclim ((isd.003))" provNote="" rowIndex="47" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Depth Below Geoid of Interfaces Between Ocean Layers" type="real" uid="3c565a72-b89b-11e6-be04-ac72891c3257" vid="e4f788872546d474c64f89798a4cb8cb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="psl" mipTable="6hrPlevPt" modeling_realm="atmos" mtid="MIPtable::6hrPlevPt" positive="" prov="6hrPlev ((isd.003))" provNote="" rowIndex="17" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Sea Level Pressure" type="real" uid="816898e0-f906-11e6-a176-5404a60d96b5" vid="3d23c359f44d6a153c4dcab9e07d7cb6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="pfull" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="87" shuffle="" stid="e9f99d60-c1ce-11e6-8067-ac72891c3257" title="Pressure on Model Levels" type="real" uid="bab32c1a-e5dd-11e5-8482-ac72891c3257" vid="7a107875bd58c5e655e8f87152a3bad7"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="fx" label="thkcello" mipTable="Ofx" modeling_realm="ocean" mtid="MIPtable::Ofx" positive="" processing="If this field is time-dependent then save it instead as one of your Omon fields (see the Omon table)" prov="fx ((isd.003))" provNote="" rowIndex="27" shuffle="" stid="62ee7ee2-1617-11e7-a126-5404a60d96b5" title="Ocean Model Cell Thickness" type="real" uid="bab9bd00-e5dd-11e5-8482-ac72891c3257" vid="5aea9677ebbb40076a0e0b3b11fdb46f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="tnpeot" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="19" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Tendency of Ocean Potential Energy Content due to Tides" type="real" uid="bab9eb4a-e5dd-11e5-8482-ac72891c3257" vid="1763f47c438dc252b1317c9861792f50"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Vertically integrated primary (organic carbon) production by phytoplankton based on nitrate uptake alone" frequency="mon" label="intppnitrate" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="128" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Primary Organic Carbon Production by Phytoplankton Based on Nitrate Uptake Alone" type="real" uid="c91d722e-c5e8-11e6-84e6-5404a60d96b5" vid="c971e98c-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." frequency="day" label="hursmax" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally report this at 2 meters above the surface" prov="day ((isd.003))" provNote="day_ss" rowIndex="28" shuffle="" stid="f7e2a074-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Surface Daily Maximum Relative Humidity" type="real" uid="5a071ff2-c77d-11e6-8a33-5404a60d96b5" vid="590f4196-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="c2h2" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="C2H2 volume mixing ratio" type="float" uid="19be6d72-81b1-11e6-92de-ac72891c3257" vid="e8d5bdfd24b275f0530646361967483d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ua" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Eastward Wind" type="float" uid="19bfc73a-81b1-11e6-92de-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Sigma T is potential density referenced to ocean surface." frequency="mon" label="mlotstmin" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="31" shuffle="" stid="63c08088-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Minimum Ocean Mixed Layer Thickness Defined by Sigma T" type="real" uid="1aab4e7a-b006-11e6-9289-ac72891c3257" vid="d4ee9e5a-b00f-11e6-a1f0-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="at surface; includes both liquid and solid phases." frequency="subhr" label="prc" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1027" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Convective Precipitation" type="real" uid="80080558-f906-11e6-a176-5404a60d96b5" vid="aa2bea81f238ad8f2c35a7e16ad97801"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="clmcalipso" mipTable="cfOff" modeling_realm="atmos" mtid="MIPtable::cfOff" positive="" prov="cfOff ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7df415e-562c-11e6-a2a4-ac72891c3257" title="CALIPSO Mid Level Cloud Fraction" type="real" uid="baaac32c-e5dd-11e5-8482-ac72891c3257" vid="fe9d4b45792f7d6430fe2a9c9b7234b1"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate organic iron component concentrations" frequency="mon" label="bfe" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1044" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Particulate Organic Matter expressed as Iron in sea water" type="real" uid="ba9fdd18-e5dd-11e5-8482-ac72891c3257" vid="f108633dc7e1585498ceccc06bdfd263"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of chlorophyll from all phytoplankton group concentrations at the sea surface.  In most models this is equal to chldiat+chlmisc, that is the sum of &quot;Diatom Chlorophyll Mass Concentration&quot; plus &quot;Other Phytoplankton Chlorophyll Mass Concentration&quot;" frequency="day" label="chlos" mipTable="Oday" modeling_realm="ocnBgchem" mtid="MIPtable::Oday" positive="" prov="Oday ((isd.003))" provNote="" rowIndex="3" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" title="Sea Surface Total Chlorophyll Mass Concentration" type="real" uid="baa161ba-e5dd-11e5-8482-ac72891c3257" vid="1c757370cf83e5619efc0de4d1241f47"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrso4" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Aerosol sulfate mass mixing ratio" type="float" uid="19bea9f4-81b1-11e6-92de-ac72891c3257" vid="fe6ca6e8-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is what the atmosphere sees (on its own grid).  This field should be equivalent to the combined natural fluxes of carbon (requested in the L_mon and O_mon tables) that account for natural exchanges between the atmosphere and land or ocean reservoirs (i.e., &quot;net ecosystem biospheric productivity&quot;, for land, and &quot;air to sea CO2 flux&quot;, for ocean.)" frequency="subhr" label="fco2nat" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1057" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Carbon Mass Flux into the Atmosphere Due to Natural Sources" type="real" uid="800a51aa-f906-11e6-a176-5404a60d96b5" vid="299fb9d19040c4aa3862644286261ad2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="edt" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="39" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Eddy Diffusivity Coefficients for Temperature" type="real" uid="a94cab8c-817c-11e6-a4e2-5404a60d96b5" vid="c373986159daf18eee63ca731d52b6f7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="intppcalc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="131" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Net Primary Mole Productivity of Carbon by Calcareous Phytoplankton" type="real" uid="baa069c2-e5dd-11e5-8482-ac72891c3257" vid="e5284596-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This may differ from &quot;surface temperature&quot; in regions of sea ice.For models using conservative temperature as prognostic field, they should report the SST as surface potential temperature, which is same as the surface in situ temperature." frequency="mon" label="tos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Note change from CMIP5 K to CMIP6 C. Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="16" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Sea Surface Temperature" type="real" uid="baa52de0-e5dd-11e5-8482-ac72891c3257" vid="0e5d376315a376cd2b1e37f440fe43d3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is the in-cloud optical depth obtained by considering only the cloudy portion of the grid cell" frequency="3hr" label="dtauc" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="42" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Convective Cloud Optical Depth" type="real" uid="baac7816-e5dd-11e5-8482-ac72891c3257" vid="7c0c62d0dc4787a601a1bc1c4e3f7597"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rsucs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="Report on model half-levels (i.e., interfaces between model layers)." prov="cfSites ((isd.003))" provNote="" rowIndex="31" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Upwelling Clear-Sky Shortwave Radiation" type="real" uid="a955260e-817c-11e6-a4e2-5404a60d96b5" vid="eb72b66b6365daed79aefeda9d3d30b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="From all advective mass transport processes, resolved and parameterized." frequency="mon" label="htovgyre" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, basin" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="56" shuffle="" stid="f7df8fce-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Northward Ocean Heat Transport due to Gyre" type="real" uid="baa5ef8c-e5dd-11e5-8482-ac72891c3257" vid="e332882b170bce82d39f02b78fd87e79"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="dec" label="soga" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" prov="Odec ((isd.003))" provNote="" rowIndex="12" shuffle="" stid="f7e2e214-562c-11e6-a2a4-ac72891c3257" title="Global Mean Sea Water Salinity" type="real" uid="479575c2-bb0b-11e6-8316-5980f7b176d1" vid="e6c345fa8ddd98d9834116333c2ee901"/>
<item defaultPriority="2" deflate="" deflate_level="" description="dissolved iron in sea water is meant to include both Fe2+ and Fe3+ ions (but not, e.g., particulate detrital iron)" frequency="mon" label="dfe" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1034" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Dissolved Iron in sea water" type="real" uid="ba9faf0a-e5dd-11e5-8482-ac72891c3257" vid="5250c73892803497448e18ba0310c423"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Lateral Laplacian viscosity applied to the momentum equations." frequency="yr" label="difmxylo" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="31" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="ocean momentum xy laplacian diffusivity" type="real" uid="baa4e4a2-e5dd-11e5-8482-ac72891c3257" vid="64c32fcf490e2e5e9918a5401fa48424"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the 3-hour mean flux." frequency="3hr" label="rlds" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="down" prov="3hr ((isd.003))" provNote="" rowIndex="18" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Downwelling Longwave Radiation" type="real" uid="bab52b5a-e5dd-11e5-8482-ac72891c3257" vid="70d7d6fc0e9c2f14624a0270bf2b99b9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="od550 due to particles with wet diameter less than 1 um  (&quot;&quot;ambient&quot;&quot; means &quot;&quot;wetted&quot;&quot;). When models do not include explicit size information, it can be assumed that all anthropogenic aerosols and natural secondary aerosols have diameter less than 1 um." frequency="mon" label="od550lt1aer" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="ambient fine mode aerosol optical thickness at 550 nm" type="float" uid="19be6656-81b1-11e6-92de-ac72891c3257" vid="05aec7fe79d030ffc90a089a6a60b0f2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="dec" label="sosga" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" prov="Odec ((isd.003))" provNote="" rowIndex="14" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" title="Global Average Sea Surface Salinity" type="real" uid="47959106-bb0b-11e6-8316-5980f7b176d1" vid="d4ee4806-b00f-11e6-a1f0-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rlutcs" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="up" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="21" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="TOA Outgoing Clear-Sky Longwave Radiation" type="real" uid="bab5c09c-e5dd-11e5-8482-ac72891c3257" vid="921b8b8f6620826567d9324314c70410"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="limfediat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="122" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Iron limitation of Diatoms" type="real" uid="baa03c54-e5dd-11e5-8482-ac72891c3257" vid="1dfd4bb59374157f2bcd5338c90a54b4"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertically integrated biogenic silica production" frequency="mon" label="intpbsi" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="137" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Silica Production" type="real" uid="baa08f6a-e5dd-11e5-8482-ac72891c3257" vid="351cb82f1f858d9c0e1094eaf477c9bc"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rsus" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="up" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1037" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Upwelling Shortwave Radiation" type="real" uid="8008c902-f906-11e6-a176-5404a60d96b5" vid="70bf79db957daa3b82413da949233ac7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="co2" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="CO2 volume mixing ratio" type="float" uid="19beb80e-81b1-11e6-92de-ac72891c3257" vid="9bb9a503065dfbd30c9bbe5c3c6abf99"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rld" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="Report on model half-levels (i.e., interfaces between model layers)." prov="cfSites ((isd.003))" provNote="" rowIndex="28" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Downwelling Longwave Radiation" type="real" uid="a95502a0-817c-11e6-a4e2-5404a60d96b5" vid="c432bfbfc0e7f4403f91af39736ff61c"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertically integrated biogenic nitrogen production" frequency="mon" label="intpbn" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="134" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Nitrogen Production" type="real" uid="baa07e58-e5dd-11e5-8482-ac72891c3257" vid="4f6a8297671856ee117fa285ad5d6e88"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertically integrated nitrogen fixation" frequency="mon" label="intpn2" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="168" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Nitrogen Fixation Rate in Ocean" type="real" uid="baa0fe00-e5dd-11e5-8482-ac72891c3257" vid="6c2e81334ca2f0de1813f46d64ee1924"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is sampled synoptically." frequency="3hr" label="vas" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="23" shuffle="" stid="f7dfb7b0-562c-11e6-a2a4-ac72891c3257" title="Northward Near-Surface Wind Speed" type="real" uid="babbdec8-e5dd-11e5-8482-ac72891c3257" vid="86b1cd51f370e346ecb20f1e80cb6ea4"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon concentration from the picophytoplankton (&lt;2 um) component alone" frequency="mon" label="phypicoos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="20" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Picophytoplankton expressed as Carbon in Sea Water" type="real" uid="c91851ea-c5e8-11e6-84e6-5404a60d96b5" vid="c96d0cb4-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="wetso2" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="wet deposition rate of so2" type="float" uid="19be2ec0-81b1-11e6-92de-ac72891c3257" vid="c670517b02de6212f3091aaa455f60ed"/>
<item defaultPriority="1" deflate="" deflate_level="" description="AOD from ambient aerosols (i.e., includes aerosol water).  Does not include AOD from stratospheric aerosols if these are prescribed but includes other possible background aerosol types. Needs a comment attribute &quot;wavelength: 550 nm&quot;" frequency="mon" label="od550aer" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="ambient aerosol optical thickness at 550 nm" type="float" uid="19c01942-81b1-11e6-92de-ac72891c3257" vid="8f2fb9e812c26ee6cb8d9673e09d2644"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsutcs4co2" mipTable="cfMon" mipTableSection="cfMon_2dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_2dmod" rowIndex="52" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_2dmod" title="TOA Outgoing Clear-Sky Shortwave Radiation 4XCO2 Atmosphere" type="real" uid="bab699c2-e5dd-11e5-8482-ac72891c3257" vid="827d0f8093c7858a784e5fda140a6e12"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="difvtrto" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="17" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Vertical Tracer Diffusivity due to Tides" type="real" uid="baabf4ea-e5dd-11e5-8482-ac72891c3257" vid="70094996b08eba1d39c13d30dc44b30f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="computed as the total runoff (including &quot;drainage&quot; through the base of the soil model) leaving the land portion of the grid cell divided by the land area in the grid cell." frequency="day" label="mrro" mipTable="day" mipTableSection="day_ss" modeling_realm="land" mtid="MIPtable::day" positive="" prov="day ((isd.003))" provNote="day_ss" rowIndex="35" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" subGroup="day_ss" title="Total Runoff" type="real" uid="bab17cb2-e5dd-11e5-8482-ac72891c3257" vid="e0a0f457ec117b27ca8353b11bf9d4fa"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Vertically integrated DIC" frequency="mon" label="intdic" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="147" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Dissolved Inorganic Carbon Content" type="real" uid="c91e4b7c-c5e8-11e6-84e6-5404a60d96b5" vid="5fc649c5cc7f4737f3a81d1c6b151b26"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the dynamic sea level, so should have zero global area mean. It should not include inverse barometer depressions from sea ice." frequency="mon" label="zos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="See OMDP document for details. Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="7" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Sea Surface Height Above Geoid" type="real" uid="baa507f2-e5dd-11e5-8482-ac72891c3257" vid="7539774a693b6a99db7e174343a488bd"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hcl" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="HCl volume mixing ratio" type="float" uid="fda71764-96ec-11e6-b81e-c9e268aff03a" vid="cc8f92a2635774d636748ec8007c4bab"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll concentration from the picophytoplankton (&lt;2 um) component alone" frequency="yr" label="chlpico" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="40" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mass Concentration of Picophytoplankton expressed as Chlorophyll in sea water" type="real" uid="ba9e4336-e5dd-11e5-8482-ac72891c3257" vid="edc3d019be9c383abbd82a4d5fad43ca"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Report only if there is a submesoscale eddy parameterization." frequency="mon" label="msftyzsmpa" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, Z, basin.   Also see note above." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="48" shuffle="" stid="529e94b4-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="ocean Y overturning mass streamfunction due to parameterized submesoscale advection" type="real" uid="baa5c44e-e5dd-11e5-8482-ac72891c3257" vid="2ac2d8645abddc0eb9fe53a7ea680465"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is sampled synoptically." frequency="3hr" label="huss" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" processing="normally, report at 2 meters above the surface" prov="3hr ((isd.003))" provNote="" rowIndex="24" shuffle="" stid="f7e8b996-562c-11e6-a2a4-ac72891c3257" title="Near-Surface Specific Humidity" type="real" uid="bab034a6-e5dd-11e5-8482-ac72891c3257" vid="ebfefc2ab8716ef597b128171b275945"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Contributions to heat transport from parameterized mesoscale eddy-induced diffusive transport (i.e., neutral diffusion). Diagnosed here as a function of latitude and basin." frequency="mon" label="hfbasinpmdiff" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of latitude, basin." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="51" shuffle="" stid="f949dcb2-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="northward ocean heat transport due to parameterized mesoscale diffusion" type="real" uid="baa5d0ec-e5dd-11e5-8482-ac72891c3257" vid="88f1496a06008de969d5913384e6cb17"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="ra" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="up" prov="Lmon ((isd.003))" provNote="" rowIndex="39" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Autotrophic (Plant) Respiration on Land" type="real" uid="bab4c3ea-e5dd-11e5-8482-ac72891c3257" vid="2d38bda3114d03f7543b8af88aadd03a"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="dmso" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="103" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Mole Concentration of Dimethyl Sulphide in sea water" type="real" uid="487c3ad6-2e41-11e6-b631-6f2cd59aa922" vid="bdce9878-233e-11e6-a788-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Tendencies from cumulus convection scheme." frequency="subhr" label="tntc" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="39" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Convection" type="real" uid="a9558356-817c-11e6-a4e2-5404a60d96b5" vid="52f043533a691ca5721460e316c3a328"/>
<item defaultPriority="1" deflate="" deflate_level="" description="The atmospheric pressure at the model layer interfaces for all times and levels in the associated output variables" frequency="mon" label="phalf" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="air pressure at interfaces" type="float" uid="01d4d80a-c792-11e6-aa58-5404a60d96b5" vid="154ab10964742eaff37de9cc5beef39c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="uas" mipTable="day" mipTableSection="day_ss" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally, report this at 10 meters above the surface" prov="day ((isd.003))" provNote="day_ss" rowIndex="36" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" subGroup="day_ss" title="Eastward Near-Surface Wind" type="real" uid="babb6cea-e5dd-11e5-8482-ac72891c3257" vid="e72b243a2a1c8691ab0168d8b62534c2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This may differ from &quot;surface temperature&quot; in regions of sea ice.For models using conservative temperature as prognostic field, they should report the SST as surface potential temperature, which is same as the surface in situ temperature." frequency="dec" label="tos" mipTable="Odec" modeling_realm="ocean" mtid="MIPtable::Odec" positive="" processing="Note change from CMIP5 K to CMIP6 C. Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Odec ((isd.003))" provNote="" rowIndex="9" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Sea Surface Temperature" type="real" uid="47954cc8-bb0b-11e6-8316-5980f7b176d1" vid="0e5d376315a376cd2b1e37f440fe43d3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="ua" mipTable="6hrPlevPt" modeling_realm="atmos" mtid="MIPtable::6hrPlevPt" positive="" processing="on the following pressure levels: 850, 500, 250 hPa" prov="6hrPlev ((isd.003))" provNote="" rowIndex="14" shuffle="" stid="f7e9888a-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind" type="real" uid="8bae55ba-4a5b-11e6-9cd2-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsu4co2" mipTable="cfMon" mipTableSection="cfMon_3dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_3dmod" rowIndex="55" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dmod" title="Upwelling Shortwave Radiation 4XCO2 Atmosphere" type="real" uid="bab6438c-e5dd-11e5-8482-ac72891c3257" vid="8e5acd3e73d41006a677b5e77fe383f7"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Depth integrated impacts on kinetic energy arising from lateral frictional dissipation associated with Laplacian and/or biharmonic viscosity. For CMIP5, this diagnostic was 3d, whereas the CMIP6 depth integrated diagnostic is sufficient for many purposes and reduces archive requirements." frequency="yr" label="dispkexyfo" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="33" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Oyr_3dtr" title="ocean kinetic energy dissipation per unit area due to xy friction" type="real" uid="baa4ed3a-e5dd-11e5-8482-ac72891c3257" vid="f56a3a44b60650b58309b1d8cf58b913"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="zg" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="68" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Geopotential Height" type="real" uid="babd9ace-e5dd-11e5-8482-ac72891c3257" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="dispkevfo" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" prov="Oclim ((isd.003))" provNote="" rowIndex="25" shuffle="" stid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257" title="Ocean Kinetic Energy Dissipation Per Unit Area due to Vertical Friction" type="real" uid="baabf756-e5dd-11e5-8482-ac72891c3257" vid="abb3f8b62cc0e93f4ef5487c41ef10cb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the net downward heat flux from the atmosphere into the snow that lies on land divided by the land area in the grid cell; reported as 0.0 for snow-free land regions or where the land fraction is 0." frequency="mon" label="hfdsn" mipTable="LImon" modeling_realm="landIce land" mtid="MIPtable::LImon" positive="down" prov="LImon ((isd.003))" provNote="" rowIndex="19" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Downward Heat Flux into Snow Where Land over Land" type="real" uid="baaed890-e5dd-11e5-8482-ac72891c3257" vid="a634ef4f4c0cda3a3c0c02652ca8cc6a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the mean of the speed, not the speed computed from the mean u and v components of wind" frequency="mon" label="sfcWind" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="normally, the the wind  should be reported at the 10 meter height" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="22" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" subGroup="Amon_2d" title="Near-Surface Wind Speed" type="real" uid="bab6f494-e5dd-11e5-8482-ac72891c3257" vid="4b97609a32d53dff5b8e73729e4f258b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="2D monthly mean thermal tropopause calculated using WMO tropopause definition on 3d temperature" frequency="mon" label="ztp" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Tropopause Altitude" type="float" uid="19be55a8-81b1-11e6-92de-ac72891c3257" vid="228d3ad84f6db126c53ac4ae0a18a014"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="clhcalipso" mipTable="cfOff" modeling_realm="atmos" mtid="MIPtable::cfOff" positive="" prov="cfOff ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f7e23c1a-562c-11e6-a2a4-ac72891c3257" title="CALIPSO High Level Cloud Fraction" type="real" uid="baaa79d0-e5dd-11e5-8482-ac72891c3257" vid="7308096ae00ff52340909b2a59415f82"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="expsi" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="" rowIndex="66" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sinking Particulate Silica Flux" type="real" uid="ba9eb5a0-e5dd-11e5-8482-ac72891c3257" vid="236430ceeb7aa3d23577b3a03d13f7fb"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="nh4" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1032" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Dissolved Ammonium Concentration" type="real" uid="ba9fa6b8-e5dd-11e5-8482-ac72891c3257" vid="5a887812bc95f4c8377af5051a2566fe"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limncalc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="114" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Nitrogen limitation of Calcareous Phytoplankton" type="real" uid="baa01b3e-e5dd-11e5-8482-ac72891c3257" vid="197a59d0c69811cf92e1e7bcbe56cb61"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertically integrated biogenic iron production" frequency="mon" label="intpbfe" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="136" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Iron Production" type="real" uid="baa08984-e5dd-11e5-8482-ac72891c3257" vid="28d5c13c016320943983914bc63e6abd"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." frequency="mon" label="drybc" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of black carbon aerosol mass" type="float" uid="19bf7604-81b1-11e6-92de-ac72891c3257" vid="f17637206609c6f9e14190d3ac6a1e6b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Integrate the NOx production for lightning over model layer. proposed name: tendency_of_atmosphere_mass_content_of_nox_from_lightning" frequency="mon" label="emilnox" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="layer-integrated lightning production of NOx" type="float" uid="19bfbace-81b1-11e6-92de-ac72891c3257" vid="534001c2fd879bfda1d9b66d0a61144c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." frequency="3hr" label="reffclic" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="30" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Hydrometeor Effective Radius of Convective Cloud Ice" type="real" uid="bab4d0ba-e5dd-11e5-8482-ac72891c3257" vid="d80ff3a0dec0b1256a0943aadab66813"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertically integrated calcite production" frequency="mon" label="intpcalcite" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="138" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Calcite Production" type="real" uid="baa0944c-e5dd-11e5-8482-ac72891c3257" vid="c1a2f2eeee3b74cd94a2946050785278"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is a 3-hour mean flux." frequency="3hr" label="rsdscs" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="down" prov="3hr ((isd.003))" provNote="" rowIndex="32" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Downwelling Clear-Sky Shortwave Radiation" type="real" uid="bab612cc-e5dd-11e5-8482-ac72891c3257" vid="d0a35d5c99a0aa93ad4069cfe83bf748"/>
<item defaultPriority="1" deflate="" deflate_level="" description="&quot;skin&quot; temperature of all surfaces except open ocean, sampled synoptically." frequency="3hr" label="tslsi" mipTable="3hr" modeling_realm="land" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="26" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Temperature Where Land or Sea Ice" type="real" uid="babb12ae-e5dd-11e5-8482-ac72891c3257" vid="2a92e434b37059d90e72b193bdbcce0f"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="3hr" label="grpllsprof" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" processing="report on model half-levels" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="31" shuffle="" stid="f7dc8770-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Stratiform Graupel Flux" type="real" uid="baae9ce0-e5dd-11e5-8482-ac72891c3257" vid="e2574373178c92d41bbc0f8516c16016"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Positive flux implies correction adds water to ocean." frequency="mon" label="wfcorr" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="If this does not vary from one year to the next, report only a single year.  Most models now have zero water flux adjustment, in which case ignore or report zero. Report on native horizontal grid as well as mapped onto sphere." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="70" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Water Flux Correction" type="real" uid="baa63dd4-e5dd-11e5-8482-ac72891c3257" vid="604242476d85346b48bd6d791ed05583"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Temperature of each soil layer.  Reported as &quot;missing&quot; for grid cells occupied entirely by &quot;sea&quot;." frequency="mon" label="tsl" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="If soil layer thicknesses vary from one location to another, interpolate to a standard set of depths.  Ideally, the interpolation should preserve the vertical integral." prov="Lmon ((isd.003))" provNote="" rowIndex="24" shuffle="" stid="f7ed82f0-562c-11e6-a2a4-ac72891c3257" title="Temperature of Soil" type="real" uid="babb0732-e5dd-11e5-8482-ac72891c3257" vid="3fd3cb4e2d6dd15b7dd73def96fea129"/>
<item defaultPriority="1" deflate="" deflate_level="" description="temperature of surface of open ocean, sampled synoptically." frequency="3hr" label="tso" mipTable="3hr" modeling_realm="ocean" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="27" shuffle="" stid="e9f98b2c-c1ce-11e6-8067-ac72891c3257" title="Sea Surface Temperature" type="real" uid="babb20b4-e5dd-11e5-8482-ac72891c3257" vid="a7adfe95f91ab2379bd368936ae82edf"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="photo1d" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="photolysis rate of O3 to O1d" type="float" uid="19be3a28-81b1-11e6-92de-ac72891c3257" vid="a2609abee6ecd5d535a48e29ae70e852"/>
<item defaultPriority="2" deflate="" deflate_level="" description="convective precipitation of all forms of water in the solid phase." frequency="3hr" label="prsnc" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" processing="report on model half-levels" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="34" shuffle="" stid="f7dc8770-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Convective Snowfall Flux" type="real" uid="bab45400-e5dd-11e5-8482-ac72891c3257" vid="27b742af91660071179e5440d83ddc37"/>
<item defaultPriority="2" deflate="" deflate_level="" description="large-scale precipitation of all forms of water in the solid phase." frequency="3hr" label="prlsns" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" processing="report on model half-levels" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="35" shuffle="" stid="f7dc8770-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Stratiform Snowfall Flux" type="real" uid="bab41300-e5dd-11e5-8482-ac72891c3257" vid="f7aec4279a79220660f26a558ed5672c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="for the whole atmospheric column, as seen from the surface or the top of the atmosphere. Include both large-scale and convective cloud.  This is a 3-hour mean." frequency="3hr" label="clt" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="35" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Total Cloud Fraction" type="real" uid="baaad560-e5dd-11e5-8482-ac72891c3257" vid="7c2249d424dde72f8616d42870a9d425"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rsds" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1036" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Downwelling Shortwave Radiation" type="real" uid="8008b660-f906-11e6-a176-5404a60d96b5" vid="6e7b9f984d3bba15daccaaa18039a85d"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="dcalc" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="70" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Calcite Dissolution" type="real" uid="ba9ec658-e5dd-11e5-8482-ac72891c3257" vid="d14c09e91e6240dd9097dfad0a1853c8"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="po4" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1033" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Total Dissolved Inorganic Phosphorus Concentration" type="real" uid="ba9faae6-e5dd-11e5-8482-ac72891c3257" vid="72366111fcb3d2a0d14dc917e8fca8eb"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="cfc113global" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="86" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" title="Global Mean Mole Fraction of CFC113" type="real" uid="baa98b1a-e5dd-11e5-8482-ac72891c3257" vid="c92e83db9d11646c271cc3ca75aaa267"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon from the diatom phytoplankton component concentration alone" frequency="mon" label="phydiatos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="17" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Diatoms expressed as Carbon in Sea Water" type="real" uid="c91827ba-c5e8-11e6-84e6-5404a60d96b5" vid="c96ce1ee-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="computed as the total mass of liquid water falling as liquid rain  into the ice-free portion of the ocean divided by the area of the ocean portion of the grid cell." frequency="mon" label="prra" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="atmos" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="61" shuffle="" stid="f948921c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Rainfall Flux where Ice Free Ocean over Sea" type="real" uid="7c61e914-1ab7-11e7-8dfc-5404a60d96b5" vid="5912cab4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition" frequency="mon" label="dryso4" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="dry deposition rate of so4" type="float" uid="19bf48fa-81b1-11e6-92de-ac72891c3257" vid="1e4b4b00e55243dc7815c0ffc015faee"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="limfepico" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="125" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Iron limitation of Picophytoplankton" type="real" uid="baa048b6-e5dd-11e5-8482-ac72891c3257" vid="b73b4f189e333c9c2426d55fbdfad32f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="o3" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="If this does not change over time (except possibly to vary identically over each annual cycle), report instead the variable described in the next table entry.  Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="69" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Mole Fraction of O3" type="real" uid="59fbf2a8-c77d-11e6-8a33-5404a60d96b5" vid="1d4594c97188efd47935238a429e02e4"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="cltisccp" mipTable="cfMon" mipTableSection="cfMon_sim" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_sim" rowIndex="62" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_sim" title="ISCCP Total Cloud Fraction" type="real" uid="baaafa68-e5dd-11e5-8482-ac72891c3257" vid="b045cae1f65ba99831648f136b309e91"/>
<item defaultPriority="1" deflate="" deflate_level="" description="For the whole atmospheric column, as seen from the surface or the top of the atmosphere. Includes only convective cloud." frequency="3hr" label="cltc" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" processing="Besides the quantities from the Amon table, this is the only other 2-D field in this table." prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="16" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" subGroup="cf3hr_grid" title="Convective Cloud Fraction" type="real" uid="baaaeeec-e5dd-11e5-8482-ac72891c3257" vid="4e6ce0bc3ad0814b4c0523304965513f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the 3-hour mean flux." frequency="3hr" label="hfss" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="up" prov="3hr ((isd.003))" provNote="" rowIndex="17" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Upward Sensible Heat Flux" type="real" uid="baaf8452-e5dd-11e5-8482-ac72891c3257" vid="a13ed886b17e20cdae8b89b9ff8e4610"/>
<item defaultPriority="2" deflate="" deflate_level="" description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1." frequency="mon" label="phabioos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="29" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Abiotic pH" type="real" uid="c918e696-c5e8-11e6-84e6-5404a60d96b5" vid="c96d8ffe-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="albs" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="planetary albedo" type="float" uid="19bfdf72-81b1-11e6-92de-ac72891c3257" vid="7799323bb6289c40376760b842d60e61"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="tauu" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1030" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Downward Eastward Wind Stress" type="real" uid="80083e4c-f906-11e6-a176-5404a60d96b5" vid="3abb7c5b4c4650e9d17a8439004aebea"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="3hr" label="pfull" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" processing="provide this field for models in which the pressure can't be calculated from the vertical coordinate information stored already for each variable.  Thus, the pressures are needed for height or theta-coordinate models, for example, but not sigma- or eta-coordinate models." prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="19" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Pressure at Model Full-Levels" type="real" uid="bab329c2-e5dd-11e5-8482-ac72891c3257" vid="7a107875bd58c5e655e8f87152a3bad7"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Gas exchange flux of CO2 (positive into ocean)" frequency="mon" label="fgco2" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="down" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="157" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Flux of Total CO2" type="real" uid="baa0d420-e5dd-11e5-8482-ac72891c3257" vid="f64c4ac230024801b1f140d806a00972"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Overturning mass streamfunction arising from all advective mass transport processes, resolved and parameterized." frequency="mon" label="msftmrho" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of of latitude, rho, basin.  Also see note above." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="40" shuffle="" stid="529d537e-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="Ocean Meridional Overturning Mass Streamfunction" type="real" uid="baa5a1da-e5dd-11e5-8482-ac72891c3257" vid="faeffb2438794e8400143533d61d1623"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." frequency="3hr" label="reffclis" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="28" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Hydrometeor Effective Radius of Stratiform Cloud Ice" type="real" uid="bab4d330-e5dd-11e5-8482-ac72891c3257" vid="c2270065bb39bfa4fbf0d13a78dfa8a1"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="cfc11" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="3" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Mole Concentration of CFC-11 in sea water" type="real" uid="ba9a47c2-e5dd-11e5-8482-ac72891c3257" vid="42625c97b8fe75124a345962c4430982"/>
<item defaultPriority="2" deflate="" deflate_level="" description="chlorophyll concentration from the picophytoplankton (&lt;2 um) component alone" frequency="mon" label="chlpico" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1040" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mass Concentration of Picophytoplankton expressed as Chlorophyll in sea water" type="real" uid="ba9fc85a-e5dd-11e5-8482-ac72891c3257" vid="edc3d019be9c383abbd82a4d5fad43ca"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Vertical/dianeutral diffusivity applied to prognostic temperature field." frequency="yr" label="difvho" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid as well. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="25" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="ocean vertical heat diffusivity" type="real" uid="baa4ac8a-e5dd-11e5-8482-ac72891c3257" vid="120719dde7f96f9bc088acd33b97967f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="carbon concentration from additional phytoplankton component alone" frequency="mon" label="phymiscos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="21" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mole Concentration of Miscellaneous Phytoplankton expressed as Carbon in Sea Water" type="real" uid="c9185fa0-c5e8-11e6-84e6-5404a60d96b5" vid="c96d1a6a-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="sos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid as well as on a spherical latitude/longitude grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="22" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Sea Surface Salinity" type="real" uid="baa557f2-e5dd-11e5-8482-ac72891c3257" vid="74a9891bcab2667dbcb66574c6370c86"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculated as the mass of stratiform cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="3hr" label="clws" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="23" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Mass Fraction of Stratiform Cloud Liquid Water" type="real" uid="baab0d64-e5dd-11e5-8482-ac72891c3257" vid="e4dc8fb121d8dc2cbc44f1f28eea183b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1." frequency="yr" label="ph" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="26" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="pH" type="real" uid="ba9e101e-e5dd-11e5-8482-ac72891c3257" vid="b50af258aff9f9ca19fdf1ec4b039a55"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Depth of aragonite saturation horizon (0 if &lt; surface, &quot;missing&quot;  if &gt; bottom, if two, then the shallower)" frequency="mon" label="zsatarag" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="176" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Aragonite Saturation Depth" type="real" uid="baa11fb6-e5dd-11e5-8482-ac72891c3257" vid="f4b0302d898785a6003754fe9b097690"/>
<item defaultPriority="1" deflate="" deflate_level="" description="The snow and ice sublimation flux is the loss of snow and ice mass from the surface resulting from their conversion to water vapor that enters the atmosphere." frequency="mon" label="sbl" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="landIce" mtid="MIPtable::Amon" positive="" processing="This differs from sbl appearing in table Limon in that the flux is averaged over the entire grid cell, not just the land portion." prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="29" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Snow and Ice Sublimation Flux" type="real" uid="bab6b948-e5dd-11e5-8482-ac72891c3257" vid="3a8e1636a31c82fbdd9a1ae45ab3be7d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="airmass" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="Vertically integrated mass content of air in layer" type="float" uid="19bee89c-81b1-11e6-92de-ac72891c3257" vid="5eac89f6f61b0e154c5add397fc41c46"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="rldcs" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="Report on model half-levels (i.e., interfaces between model layers)." prov="cfSites ((isd.003))" provNote="" rowIndex="32" shuffle="" stid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257" title="Downwelling Clear-Sky Longwave Radiation" type="real" uid="a955313a-817c-11e6-a4e2-5404a60d96b5" vid="e79eb59d74038643b2201bb0556e720a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the mass of water in all phases in a thin surface soil layer." frequency="day" label="mrsos" mipTable="day" mipTableSection="day_oth" modeling_realm="land" mtid="MIPtable::day" positive="" processing="integrate over uppermost 10 cm" prov="day ((isd.003))" provNote="day_oth" rowIndex="25" shuffle="" stid="f7e71b5e-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Moisture in Upper Portion of Soil Column" type="real" uid="bab1ca14-e5dd-11e5-8482-ac72891c3257" vid="40c091a01dc9db6d6d5901528c375ab3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Integrate 3D emission field vertically to 2d field." frequency="mon" label="emibc" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="emission rate of black carbon aerosol mass" type="float" uid="19be87bc-81b1-11e6-92de-ac72891c3257" vid="4d3400f4c74e9cd4d4100da7a915e6d9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="tauv" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="down" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1031" shuffle="" stid="63c0a932-15f2-11e7-87e0-5404a60d96b5" title="Surface Downward Northward Wind Stress" type="real" uid="80085120-f906-11e6-a176-5404a60d96b5" vid="bd10cebbde1593b65e5220911f9a997c"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="clc" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="40" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Convective Cloud Area Fraction" type="real" uid="baaa557c-e5dd-11e5-8482-ac72891c3257" vid="1aefc13bd27020244fe1cfd706ce1041"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Iron supply through deposition flux onto sea surface, runoff, coasts, sediments, etc" frequency="mon" label="fsfe" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="171" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Net Flux of Iron" type="real" uid="baa10aee-e5dd-11e5-8482-ac72891c3257" vid="b385b4f43e7385eb7bfe4e2175bb086d"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of salt content for a grid cell from parameterized submesoscale eddy advection." frequency="yr" label="osaltpsmadvect" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="22" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water salinity expressed as salt content due to parameterized submesoscale advection" type="real" uid="baa4887c-e5dd-11e5-8482-ac72891c3257" vid="9259f1caedb47c287bc1c9dfc3c6f756"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Contains all contributions to &quot;y-ward&quot; heat transport from resolved and parameterized processes. Use Celsius for temperature scale." frequency="mon" label="hfy" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="3d field for CMIP6. Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="55" shuffle="" stid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_3d" title="Ocean Heat Y Transport" type="real" uid="baa5e758-e5dd-11e5-8482-ac72891c3257" vid="fa3149feef6236e0cc3207a977d2d0a5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="zero for models using real water fluxes." frequency="mon" label="vsfevap" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="72" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Virtual Salt Flux into Sea Water due to Evaporation" type="real" uid="baa64df6-e5dd-11e5-8482-ac72891c3257" vid="b76d616f8f03bb60a0dffa023dfd0525"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="zg" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="25" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Geopotential Height" type="real" uid="a954e054-817c-11e6-a4e2-5404a60d96b5" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Flux corresponding to rsut resulting fom aerosol-free call to radiation" frequency="mon" label="rsutaf" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="toa outgoing shortwave radiation" type="float" uid="8feb097c-267c-11e7-8933-ac72891c3257" vid="c9a56fd2-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Primary (organic carbon) production by the diatom component alone" frequency="yr" label="pdi" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="72" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Diatom Primary Carbon Production" type="real" uid="c925ef58-c5e8-11e6-84e6-5404a60d96b5" vid="82b959ef614903ae8fa6bc2b03b7ee43"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="tnhus" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="32" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Specific Humidity" type="real" uid="bab9ca3e-e5dd-11e5-8482-ac72891c3257" vid="2a6093caf9e5cd42fb2fba6bdb73d6db"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="zg" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="50" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Geopotential Height" type="real" uid="babd9cae-e5dd-11e5-8482-ac72891c3257" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Calculated as the mass of convective cloud ice  in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="3hr" label="clic" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="26" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Mass Fraction of Convective Cloud Ice" type="real" uid="baaa88d0-e5dd-11e5-8482-ac72891c3257" vid="76f247229d5b524d94dfaedd577eeb84"/>
<item defaultPriority="1" deflate="" deflate_level="" description="geopotential height on the 500 hPa surface" frequency="6hr" label="zg500" mipTable="6hrPlevPt" mipTableSection="aer6hr" modeling_realm="aerosol" mtid="MIPtable::6hrPlevPt" positive="" prov="6hrPlev ((isd.003))" provNote="aer6hr" rowIndex="-1" shuffle="" stid="62eeb57e-1617-11e7-a126-5404a60d96b5" title="Geopotential Height at 500 hPa" type="float" uid="7c70f59e-1ab7-11e7-8dfc-5404a60d96b5" vid="c0007a5e2b555d399d9bfe49f7502f1b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes both large-scale and convective cloud.  Calculate as the mass of cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cells. Precipitating hydrometeors are included ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="mon" label="clw" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" processing="Report on model layers (not standard pressures)." prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="59" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Mass Fraction of Cloud Liquid Water" type="real" uid="baab0382-e5dd-11e5-8482-ac72891c3257" vid="86b2b3318a73839edfafa9d46864aadc"/>
<item defaultPriority="1" deflate="" deflate_level="" description="the mass (summed over all all layers) of frozen water." frequency="mon" label="mrfso" mipTable="Lmon" modeling_realm="land landIce" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Soil Frozen Water Content" type="real" uid="bab1688a-e5dd-11e5-8482-ac72891c3257" vid="154d00de9ab9aff72373a673df10946a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="sfcWind" mipTable="day" mipTableSection="day_oth" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally report this at 10 meters above the surface" prov="day ((isd.003))" provNote="day_oth" rowIndex="20" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" subGroup="day_oth" title="Daily-Mean Near-Surface Wind Speed" type="real" uid="bab6fe58-e5dd-11e5-8482-ac72891c3257" vid="4b97609a32d53dff5b8e73729e4f258b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rsutcs" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="up" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="22" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="TOA Outgoing Clear-Sky Shortwave Radiation" type="real" uid="bab69f76-e5dd-11e5-8482-ac72891c3257" vid="12e0369ff0ba1a6f1a84e0d9565d4b07"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes both large-scale and convective cloud.  This is the mass of  cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." frequency="subhr" label="clw" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" prov="cfSites ((isd.003))" provNote="" rowIndex="16" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Mass Fraction of Cloud Liquid Water" type="real" uid="a95475ec-817c-11e6-a4e2-5404a60d96b5" vid="86b2b3318a73839edfafa9d46864aadc"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="si" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1035" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Total Dissolved Inorganic Silicon Concentration" type="real" uid="ba9fb338-e5dd-11e5-8482-ac72891c3257" vid="56a5fa6dd6b7c4aa711f362d5d5414f6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="od550so4" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="sulfate aod@550nm" type="float" uid="19bf19ca-81b1-11e6-92de-ac72891c3257" vid="b9ca453bfa3c606401892e5768ca7d6c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Integrate 3D emission field vertically to 2d field." frequency="mon" label="emico" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of co" type="float" uid="19bfe904-81b1-11e6-92de-ac72891c3257" vid="754b682975aaa6baabc618db3903bba8"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Net of biological terms in time rate of change of dissolved phosphorus" frequency="yr" label="bddtdip" mipTable="Oyr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="" rowIndex="83" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Dissolved phosphorus due to Biological Activity" type="real" uid="ba9ef024-e5dd-11e5-8482-ac72891c3257" vid="cc3eb19e60c00c77520c2cbf58c322b1"/>
<item defaultPriority="2" deflate="" deflate_level="" description="The categories may differ from model to model, depending on their  PFT definitions.   This may include natural PFTs, anthropogenic PFTs, bare soil, lakes, urban areas, etc.   Sum of all should equal the fraction of the grid-cell that is land." frequency="mon" label="landCoverFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="need to explain how to define vegtype.  To facilitate model comparison, it is also requested that the aggregated land cover types called for in lines 28 to 35 be archived (but not in this variable).  Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing).   Note that the &quot;types&quot; will be model dependent and for each type there should be a full description of the PFT (plant functional type)." prov="Lmon ((isd.003))" provNote="" rowIndex="60" shuffle="" stid="fa21b854-267c-11e7-9bed-ac72891c3257" title="Plant Functional Type Grid Fraction" type="real" uid="bab09a7c-e5dd-11e5-8482-ac72891c3257" vid="f3710647d155ec76d2c4cdfa866be579"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Vertically integrated DOC (explicit pools only)" frequency="mon" label="intdoc" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="148" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Dissolved Organic Carbon Content" type="real" uid="c91e58f6-c5e8-11e6-84e6-5404a60d96b5" vid="a1bd45ea349a310ceaec3f0c417f8aa5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="so2" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="SO2 volume mixing ratio" type="float" uid="19bfa78c-81b1-11e6-92de-ac72891c3257" vid="8b3a5d37fefe0337625c64455cea4e80"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Tendencies from cumulus convection scheme." frequency="mon" label="tntc" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="29" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Tendency of Air Temperature due to Convection" type="real" uid="baba5300-e5dd-11e5-8482-ac72891c3257" vid="52f043533a691ca5721460e316c3a328"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." frequency="3hr" label="reffgrpls" mipTable="cf3hr" mipTableSection="cf3hr_grid" modeling_realm="atmos" mtid="MIPtable::cf3hr" positive="" prov="cf3hr ((isd.003))" provNote="cf3hr_grid" rowIndex="36" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" subGroup="cf3hr_grid" title="Hydrometeor Effective Radius of Stratiform Graupel" type="real" uid="bab4e69a-e5dd-11e5-8482-ac72891c3257" vid="cbd8a804ef6ec2ec45913e74f25d973f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Overturning mass streamfunction arising from all advective mass transport processes, resolved and parameterized." frequency="mon" label="msftyrho" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="function of Y, rho, basin.  Also see note above." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="42" shuffle="" stid="529d692c-1ed7-11e7-9366-ac72891c3257" subGroup="Omon_oth" title="Ocean Y Overturning Mass Streamfunction" type="real" uid="baa5aafe-e5dd-11e5-8482-ac72891c3257" vid="29a3aaf848070fb8ff4ecb7aa2dfa2eb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="va" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="46" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Northward Wind" type="real" uid="babbb42a-e5dd-11e5-8482-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="2" deflate="" deflate_level="" description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1." frequency="mon" label="ph" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1026" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="pH" type="real" uid="ba9f9a4c-e5dd-11e5-8482-ac72891c3257" vid="b50af258aff9f9ca19fdf1ec4b039a55"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the 3-hour mean flux." frequency="3hr" label="rlus" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="up" prov="3hr ((isd.003))" provNote="" rowIndex="19" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Upwelling Longwave Radiation" type="real" uid="bab59202-e5dd-11e5-8482-ac72891c3257" vid="89027ee0079acb709750ddeac1c08899"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="spco2abio" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="152" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Abiotic Surface Aqueous Partial Pressure of CO2" type="real" uid="c91e8768-c5e8-11e6-84e6-5404a60d96b5" vid="c972ffd4-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="2D monthly mean thermal tropopause calculated using WMO tropopause definition on 3d temperature" frequency="mon" label="tatp" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Tropopause Air Temperature" type="float" uid="19bf81b2-81b1-11e6-92de-ac72891c3257" vid="cff597224d260da1a1c769aab1bbea9d"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate calcite component concentrations (e.g. Phytoplankton, Detrital, etc.)" frequency="yr" label="calc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="14" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Calcite Concentration" type="real" uid="ba9dd428-e5dd-11e5-8482-ac72891c3257" vid="c85ac4ad4664c34898cdb9af2418c45a"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="o2min" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="173" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Oxygen Minimum Concentration" type="real" uid="baa11336-e5dd-11e5-8482-ac72891c3257" vid="01f509c26cfbd2f30789d91b026e0016"/>
<item defaultPriority="1" deflate="" deflate_level="" description="mass of condensed (liquid + ice) water in the column divided by the area of the column (not just the area of the cloudy portion of the column). Includes precipitating hydrometeors ONLY if the precipitating hydrometeor affects the calculation of radiative transfer in model." frequency="mon" label="clwvi" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="48" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Condensed Water Path" type="real" uid="baab1818-e5dd-11e5-8482-ac72891c3257" vid="80a1dd605b563e9f09c718a5ba9cb9cc"/>
<item defaultPriority="2" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by secondary evergreen trees." frequency="mon" label="treeFracSecEver" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="64" shuffle="" stid="fa21e9a0-267c-11e7-9bed-ac72891c3257" title="Total Secondary Evergreen Tree Cover Fraction" type="real" uid="babad172-e5dd-11e5-8482-ac72891c3257" vid="b28e47214f0b71847c966828df0837ff"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="wetnh3" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="wet deposition rate of nh3" type="float" uid="19be2a60-81b1-11e6-92de-ac72891c3257" vid="aa4309c2c15be0c9d7db2f9d38f348ca"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Integrate 3D emission field vertically to 2d field." frequency="mon" label="emidms" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="total emission rate of dms" type="float" uid="19c006c8-81b1-11e6-92de-ac72891c3257" vid="280c4503513a8be95b5cbfc157615c6e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="o2satos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="31" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Dissolved Oxygen Concentration at Saturation" type="real" uid="c91905cc-c5e8-11e6-84e6-5404a60d96b5" vid="c96daba6-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="pcalc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="60" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Calcite Production" type="real" uid="ba9e9c78-e5dd-11e5-8482-ac72891c3257" vid="57235dfe47c3e04ac63a3c850ef16458"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="vas" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This table includes the 2-D variables listed in the &quot;Amon&quot; spreadsheet, omitting, however, the daily maximum and minimum temperatures.  All variables should be reported as synoptic fields, not daily means." prov="cfSites ((isd.003))" provNote="" rowIndex="1021" shuffle="" stid="3cbb316e-1a15-11e7-8130-ac72891c3257" title="Northward Near-Surface Wind" type="real" uid="80078df8-f906-11e6-a176-5404a60d96b5" vid="86b1cd51f370e346ecb20f1e80cb6ea4"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is defined as &quot;where ice_free_sea over sea&quot;" frequency="mon" label="hflso" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="91" shuffle="" stid="f948921c-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Surface Downward Latent Heat Flux" type="real" uid="ada94e1e-b17f-11e6-8975-5404a60d96b5" vid="ad2c59f6784b7b6a8b2a95424a1a642d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by anthropogenic pasture." frequency="mon" label="pastureFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="add scalar coordinate typepasture and add &quot;pasture&quot; to the CF area type table. Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="29" shuffle="" stid="fa229896-267c-11e7-9bed-ac72891c3257" title="Anthropogenic Pasture Fraction" type="real" uid="bab30988-e5dd-11e5-8482-ac72891c3257" vid="64c3bc72c46203646eb28fee17f6a5f7"/>
<item defaultPriority="2" deflate="" deflate_level="" description="This is the fraction of the entire grid cell  that is covered by &quot;total primary deciduous trees.&quot;" frequency="mon" label="treeFracPrimDec" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="Agregation of model PFTs as defined in 1st priority to aid model intercomparison.  Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="61" shuffle="" stid="fa232a2c-267c-11e7-9bed-ac72891c3257" title="Total Primary Deciduous Tree Fraction" type="real" uid="bababb4c-e5dd-11e5-8482-ac72891c3257" vid="374e24b1cf7c24eb75126ea6e39ac478"/>
<item defaultPriority="1" deflate="" deflate_level="" description="The net mass flux should represent the difference between the updraft and downdraft components.  This is calculated as the convective mass flux divided by the area of the whole grid cell (not just the area of the cloud)." frequency="day" label="mc" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="up" processing="Report on model half-levels (i.e., model layer bounds and not standard pressures)." prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="55" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Convective Mass Flux" type="real" uid="bab1197a-e5dd-11e5-8482-ac72891c3257" vid="6d790fe4caa7feff46a41ae7b3811e52"/>
<item defaultPriority="3" deflate="" deflate_level="" description="sum of bacterial carbon component concentrations" frequency="yr" label="bacc" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="12" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="Bacterial Carbon Concentration" type="real" uid="ba9dcab4-e5dd-11e5-8482-ac72891c3257" vid="27ad2512525b0c42b7edd88f1dad5955"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Total volume of liquid sea water." frequency="mon" label="volo" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="6" shuffle="" stid="f7dda574-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Sea Water Volume" type="real" uid="baa503ce-e5dd-11e5-8482-ac72891c3257" vid="a86d0b2abcfe5055d91478b5c771bf34"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." frequency="mon" label="tauvcorr" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" processing="If this does not vary from one year to the next, report only a single year. Report on native horizontal grid." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="100" shuffle="" stid="00b9aebc-8f1d-11e6-a5a6-ac72891c3257" subGroup="Omon_oth" title="Surface Downward Y Stress Correction" type="real" uid="baa6dbb8-e5dd-11e5-8482-ac72891c3257" vid="ab495084beb82a29c24bf6c226fd0e57"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Zonally averaged meridional heat flux at 100 hPa as monthly means derived from daily (or higher frequency) fields." frequency="mon" label="vt100" mipTable="aermonthlyz" mipTableSection="aerzonal" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal" rowIndex="-1" shuffle="" stid="63c11fe8-15f2-11e7-87e0-5404a60d96b5" title="Northward heat flux due to eddies" type="float" uid="fda680ce-96ec-11e6-b81e-c9e268aff03a" vid="76248ae1d72c976495be67161d5a8d7d"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="monClim" label="diftrelo2d" mipTable="Oclim" modeling_realm="ocean" mtid="MIPtable::Oclim" positive="" processing="2-d time dependent field" prov="Oclim ((isd.003))" provNote="" rowIndex="38" shuffle="" stid="e9f90b70-c1ce-11e6-8067-ac72891c3257" title="Ocean Tracer Epineutral Laplacian Diffusivity" type="real" uid="a929d724-817c-11e6-a4e2-5404a60d96b5" vid="b02d071fff99f2632aa8ac5e83e92215"/>
<item defaultPriority="3" deflate="" deflate_level="" description="vertical integral of net biological terms in time rate of change of nitrogen nutrients (e.g. NO3+NH4)" frequency="mon" label="fbddtdin" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="integral over upper 100 m only." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="184" shuffle="" stid="63c0988e-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Rate of Change of Dissolved Inorganic Nitrogen due to Biological Activity" type="real" uid="baa1414e-e5dd-11e5-8482-ac72891c3257" vid="6c19638a0652fcbc6c6ff8455c536445"/>
<item defaultPriority="2" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by C3 PFTs (including grass, crops, and trees)." frequency="mon" label="c3PftFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="65" shuffle="" stid="fa228d60-267c-11e7-9bed-ac72891c3257" title="Total C3 PFT Cover Fraction" type="real" uid="baa897e6-e5dd-11e5-8482-ac72891c3257" vid="2ca96cd5a4e83feb0d493bf9aa1a5b59"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="ua" mipTable="6hrLev" modeling_realm="atmos" mtid="MIPtable::6hrLev" positive="" processing="on all model levels" prov="6hrLev ((isd.003))" provNote="" rowIndex="15" shuffle="" stid="f94870ca-80ba-11e6-ab6e-5404a60d96b5" title="Eastward Wind" type="real" uid="babb47a6-e5dd-11e5-8482-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="2" deflate="" deflate_level="" description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1." frequency="mon" label="phos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="27" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface pH" type="real" uid="c918bbf8-c5e8-11e6-84e6-5404a60d96b5" vid="c96d71ae-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of heat content for a grid cell from residual mean  (sum of Eulerian mean + parameterized eddy-induced) advection. Reported only for models that use conservative temperature as prognostic field." frequency="yr" label="ocontemprmadvect" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="14" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water conservative temperature expressed as heat content due to residual mean (sum of Eulerian + parameterized) advection" type="real" uid="1aafb96a-b006-11e6-9289-ac72891c3257" vid="479c5de8-12cc-11e6-b2bc-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rsuscs" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="up" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="19" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="Surface Upwelling Clear-Sky Shortwave Radiation" type="real" uid="bab67424-e5dd-11e5-8482-ac72891c3257" vid="90df05fe3dcd9fe0c9b48aaa74b5e9e2"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="limndiat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="112" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Nitrogen limitation of Diatoms" type="real" uid="baa01300-e5dd-11e5-8482-ac72891c3257" vid="f1b2785c2f21b3ca1fbe97a1152920f6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Total mass of liquid sea water. For Boussinesq models, report this diagnostic as Boussinesq reference density times total volume." frequency="mon" label="masso" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="3" shuffle="" stid="f7dda574-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Sea Water Mass" type="real" uid="baa4f730-e5dd-11e5-8482-ac72891c3257" vid="7619324f698659657f466d5dc6660b9d"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="day" label="tos" mipTable="Oday" modeling_realm="ocean" mtid="MIPtable::Oday" positive="" processing="Report on the ocean horizontal native grid." prov="Oday ((isd.003))" provNote="" rowIndex="3" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="Sea Surface Temperature" type="real" uid="baa720e6-e5dd-11e5-8482-ac72891c3257" vid="0e5d376315a376cd2b1e37f440fe43d3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="co3abioos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="54" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Abiotic Carbonate ion Concentration" type="real" uid="c91a5698-c5e8-11e6-84e6-5404a60d96b5" vid="c96eec14-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="cl" mipTable="cfDay" mipTableSection="cfDay_3d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_3d" rowIndex="52" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_3d" title="Cloud Area Fraction in Atmosphere Layer" type="real" uid="baaa4a8c-e5dd-11e5-8482-ac72891c3257" vid="e0ecf1c1305c1bdc69bee0e7ba1e2e03"/>
<item defaultPriority="1" deflate="" deflate_level="" description="fraction of entire grid cell  that is covered by burnt vegetation." frequency="mon" label="burntArea" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="add scalar coordinate typeburnt and add &quot;burnt_vegetation&quot; to the CF area type table.  Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="32" shuffle="" stid="fa227bea-267c-11e7-9bed-ac72891c3257" title="Burnt Area Fraction" type="real" uid="baa88256-e5dd-11e5-8482-ac72891c3257" vid="6b6f4db537f52cf43388056ec20590af"/>
<item defaultPriority="1" deflate="" deflate_level="" description="not, in general, the same as mean sea-level pressure" frequency="mon" label="ps" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="19" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Air Pressure" type="real" uid="bab47b56-e5dd-11e5-8482-ac72891c3257" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="fraction of entire grid cell that is covered by natural grass." frequency="mon" label="grassFrac" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" processing="add scalar coordinate typegrass and add &quot;natural_grass&quot; to the CF area type table.  Note that if this variable is independent of time, it should be stored only for a single time (of the user's choosing)." prov="Lmon ((isd.003))" provNote="" rowIndex="26" shuffle="" stid="fa230ab0-267c-11e7-9bed-ac72891c3257" title="Natural Grass Fraction" type="real" uid="baae910a-e5dd-11e5-8482-ac72891c3257" vid="f972af18f1817a7bb5f961b534641394"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="clcalipso" mipTable="cfMon" mipTableSection="cfMon_sim" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" processing="40 height levels" prov="cfMon ((isd.003))" provNote="cfMon_sim" rowIndex="70" shuffle="" stid="f7e0026a-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_sim" title="CALIPSO Percentage Cloud Cover" type="real" uid="baaa5db0-e5dd-11e5-8482-ac72891c3257" vid="400e5707b65c01e31f2ec6a59dd3983b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Total family (the sum of all appropriate species in the model) ; list the species in the netCDF header, e.g. Bry = Br + BrO + HOBr + HBr + BrONO2 + BrCl Definition: Total inorganic bromine (e.g., HBr and inorganic bromine oxides and radicals (e.g., BrO, atomic bromine (Br), bromine nitrate (BrONO2)) resulting from degradation of bromine-containing organicsource gases (halons, methyl bromide, VSLS), and natural inorganic bromine sources (e.g., volcanoes, sea salt, and other aerosols) add comment attribute with detailed description about how the model calculates these fields" frequency="mon" label="bry" mipTable="aermonthlyz" mipTableSection="aerzonal-vert" modeling_realm="aerosol" mtid="MIPtable::aermonthlyz" positive="" prov="aermonthlyz ((isd.003))" provNote="aerzonal-vert" rowIndex="-1" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Total inorganic bromine volume mixing ratio" type="float" uid="fda68dc6-96ec-11e6-b81e-c9e268aff03a" vid="96a44ea6-b096-11e6-aab6-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="including fine and coarse roots." frequency="mon" label="cRoot" mipTable="Lmon" modeling_realm="land" mtid="MIPtable::Lmon" positive="" prov="Lmon ((isd.003))" provNote="" rowIndex="52" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Roots" type="real" uid="baa8dc06-e5dd-11e5-8482-ac72891c3257" vid="e897309433f283b8bf1a4c60dc310edd"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration at preindustrial atmospheric xCO2" frequency="mon" label="dissicnatos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="6" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Natural Dissolved Inorganic Carbon Concentration" type="real" uid="c9178a1c-c5e8-11e6-84e6-5404a60d96b5" vid="c96c470c-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="total ozone column in DU" frequency="mon" label="toz" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Total Ozone Column" type="float" uid="19bf12b8-81b1-11e6-92de-ac72891c3257" vid="79fec430c1dca1ac4b48b0fc36c48449"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="cct" mipTable="cfDay" mipTableSection="cfDay_2d" modeling_realm="atmos" mtid="MIPtable::cfDay" positive="" prov="cfDay ((isd.003))" provNote="cfDay_2d" rowIndex="29" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="cfDay_2d" title="Air Pressure at Convective Cloud Top" type="real" uid="baa96d92-e5dd-11e5-8482-ac72891c3257" vid="0062272a6a4176b8c32af87642b062c5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="subhr" label="pfull" mipTable="cfSites" modeling_realm="atmos" mtid="MIPtable::cfSites" positive="" processing="This field is needed only for models in which the pressure can't be calculated from the vertical coordinate information stored already for each variable.  Thus, the pressures are needed for height or theta-coordinate models, for example, but not sigma- or eta-coordinate models." prov="cfSites ((isd.003))" provNote="" rowIndex="48" shuffle="" stid="f7e790c0-562c-11e6-a2a4-ac72891c3257" title="Pressure on Model Levels" type="real" uid="a955ee5e-817c-11e6-a4e2-5404a60d96b5" vid="7a107875bd58c5e655e8f87152a3bad7"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Vertically integrated primary (organic carbon) production by the diatom phytoplankton component alone" frequency="mon" label="intppdiat" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="129" shuffle="" stid="63c064e0-15f2-11e7-87e0-5404a60d96b5" subGroup="Omon_oth" title="Net Primary Organic Carbon Production by Diatoms" type="real" uid="baa05d2e-e5dd-11e5-8482-ac72891c3257" vid="e527e1f0-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsuscs" mipTable="Amon" mipTableSection="Amon_2d" modeling_realm="atmos" mtid="MIPtable::Amon" positive="up" prov="Amon ((isd.003))" provNote="Amon_2d" rowIndex="39" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" subGroup="Amon_2d" title="Surface Upwelling Clear-Sky Shortwave Radiation" type="real" uid="bab670b4-e5dd-11e5-8482-ac72891c3257" vid="90df05fe3dcd9fe0c9b48aaa74b5e9e2"/>
<item defaultPriority="3" deflate="" deflate_level="" description="chlorophyll from additional phytoplankton component concentrations alone" frequency="mon" label="chlmiscos" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="42" shuffle="" stid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257" subGroup="Omon_oth" title="Surface Mass Concentration of Other Phytoplankton expressed as Chlorophyll in sea water" type="real" uid="c919a342-c5e8-11e6-84e6-5404a60d96b5" vid="c96e439a-c5f0-11e6-ac20-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="no" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="NO volume mixing ratio" type="float" uid="19bff1ba-81b1-11e6-92de-ac72891c3257" vid="fe6ce54a-a41f-11e5-9025-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="clhcalipso" mipTable="cfMon" mipTableSection="cfMon_sim" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="" prov="cfMon ((isd.003))" provNote="cfMon_sim" rowIndex="69" shuffle="" stid="f7e23c1a-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_sim" title="CALIPSO Percentage High Level Cloud" type="real" uid="baaa7818-e5dd-11e5-8482-ac72891c3257" vid="7308096ae00ff52340909b2a59415f82"/>
<item defaultPriority="2" deflate="" deflate_level="" description="gas exchange flux of SF6" frequency="mon" label="fgsf6" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocean" mtid="MIPtable::Omon" positive="down" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="6" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Surface Downward SF6 flux" type="real" uid="ba9b44a6-e5dd-11e5-8482-ac72891c3257" vid="4a62506a657921cdde7c173c0ae09b98"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Depth of vertical minimum concentration of dissolved oxygen gas (if two, then the shallower)" frequency="mon" label="zo2min" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="174" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_oth" title="Depth of Oxygen Minimum Concentration" type="real" uid="baa11764-e5dd-11e5-8482-ac72891c3257" vid="d254e68c03491d17660ec44e7565f9e2"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="n2o" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" processing="For some simulations (e.g., prescribed concentration pi-control run), this will not vary from one year to the next, and so report instead the variable described in the next table entry.  If N2O is spatially uniform, omit this field, but report Global Mean Mole Fraction of N2O (see the table entry after the next one).  Are these the preferred units or should it be a unitless fraction?  Should this field be reported instead on model levels?  Or should we also require either the vertically integrated mole fraction (or mass?) of this species or the vertically integrated globally averaged mole fraction (or mass?)?" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="79" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Mole Fraction of N2O" type="real" uid="bab2124e-e5dd-11e5-8482-ac72891c3257" vid="942125e5a461fef57b1477b9a2bd5fa0"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="tasmin" mipTable="day" mipTableSection="day_oth" modeling_realm="atmos" mtid="MIPtable::day" positive="" processing="normally report this at 2 meters above the surface" prov="day ((isd.003))" provNote="day_oth" rowIndex="15" shuffle="" stid="f7e59f36-562c-11e6-a2a4-ac72891c3257" subGroup="day_oth" title="Daily Minimum Near-Surface Air Temperature" type="real" uid="bab95fae-e5dd-11e5-8482-ac72891c3257" vid="cce3dd39c138bf3c4d713263cc2e6cff"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Tendency of salt content for a grid cell from all processes." frequency="yr" label="osalttend" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocean" mtid="MIPtable::Oyr" positive="" processing="Report on native horizontal grid. Online mapping to depth/pressure vertical grid if depth or pressure are not native." prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="19" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Oyr_3dtr" title="tendency of sea water salinity expressed as salt content" type="real" uid="baa47378-e5dd-11e5-8482-ac72891c3257" vid="14d70240caeb3a95922af16eca2d497b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrpm2p5" mipTable="aermonthly" mipTableSection="aermonthly-3d" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-3d" rowIndex="-1" shuffle="" stid="62eebe98-1617-11e7-a126-5404a60d96b5" title="PM2.5 mass mixing ratio" type="float" uid="19be7b78-81b1-11e6-92de-ac72891c3257" vid="4ff3e42362266bd75ad3bcfc785465a3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="albsrfc" mipTable="aermonthly" mipTableSection="aermonthly-oth" modeling_realm="aerosol" mtid="MIPtable::aermonthly" positive="" prov="aermonthly ((isd.003))" provNote="aermonthly-oth" rowIndex="-1" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="surface albedo" type="float" uid="19be94c8-81b1-11e6-92de-ac72891c3257" vid="3d2a28d882e00559e5c2a779ff420de6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Includes also the fluxes at the surface and TOA." frequency="mon" label="rld" mipTable="cfMon" mipTableSection="cfMon_3dstd" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="down" prov="cfMon ((isd.003))" provNote="cfMon_3dstd" rowIndex="17" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dstd" title="Downwelling Longwave Radiation" type="real" uid="bab51cf0-e5dd-11e5-8482-ac72891c3257" vid="c432bfbfc0e7f4403f91af39736ff61c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsucs4co2" mipTable="cfMon" mipTableSection="cfMon_3dmod" modeling_realm="atmos" mtid="MIPtable::cfMon" positive="up" prov="cfMon ((isd.003))" provNote="cfMon_3dmod" rowIndex="59" shuffle="" stid="f7e87814-562c-11e6-a2a4-ac72891c3257" subGroup="cfMon_3dmod" title="Upwelling Clear-Sky Shortwave Radiation 4XCO2 Atmosphere" type="real" uid="bab64a6c-e5dd-11e5-8482-ac72891c3257" vid="bef5e52ab3ef55640ab0133c34c9dec2"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="expn" mipTable="Oyr" mipTableSection="Oyr_3dtr" modeling_realm="ocnBgchem" mtid="MIPtable::Oyr" positive="down" prov="Oyr ((isd.003))" provNote="Oyr_3dtr" rowIndex="63" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sinking Particulate Organic Nitrogen Flux" type="real" uid="ba9ea916-e5dd-11e5-8482-ac72891c3257" vid="6fc1dd9341ca569ad866695db9878618"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="cfc12global" mipTable="Amon" mipTableSection="Amon_oth" modeling_realm="atmos atmosChem" mtid="MIPtable::Amon" positive="" prov="Amon ((isd.003))" provNote="Amon_oth" rowIndex="84" shuffle="" stid="f7e17186-562c-11e6-a2a4-ac72891c3257" title="Global Mean Mole Fraction of CFC12" type="real" uid="baa99736-e5dd-11e5-8482-ac72891c3257" vid="d833c036446ac363dcdf22027e28c0ed"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is sampled synoptically." frequency="3hr" label="uas" mipTable="3hr" modeling_realm="atmos" mtid="MIPtable::3hr" positive="" prov="3hr ((isd.003))" provNote="" rowIndex="22" shuffle="" stid="f7dfb7b0-562c-11e6-a2a4-ac72891c3257" title="Eastward Near-Surface Wind Speed" type="real" uid="babb5db8-e5dd-11e5-8482-ac72891c3257" vid="e72b243a2a1c8691ab0168d8b62534c2"/>
<item defaultPriority="2" deflate="" deflate_level="" description="sum of particulate silica component concentrations" frequency="mon" label="bsi" mipTable="Omon" mipTableSection="Omon_oth" modeling_realm="ocnBgchem" mtid="MIPtable::Omon" positive="" processing="Concentrations of all 3D tracers in the uppermost ocean layer. See first table in Oyr for a complete list of these tracers.  &quot;Tracer&quot;  concentations should be reported even if they are diagnosed rather than prognostically calculated." prov="Omon ((isd.003))" provNote="Omon_oth" rowIndex="1045" shuffle="" stid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5" subGroup="Omon_oth" title="Mole Concentration of Particulate Organic Matter expressed as silicon in sea water" type="real" uid="ba9fe13c-e5dd-11e5-8482-ac72891c3257" vid="dcd2298237af35be0ed71c92ee9e7e79"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="hfrunoffds" mipTable="Omon" mipTableSection="Omon_3d" modeling_realm="ocean" mtid="MIPtable::Omon" positive="" processing="In general this should be reported as a function of depth, (i.e.,  it will be a function of the generic &quot;XYZ&quot; dimensions).  Include enough depth levels to represent  the non-zero values of this field everywhere on the globe. Report on native horizontal grid. If a function of depth, perform online remapping to depth or pressure, if not native vertical grid." prov="Omon ((isd.003))" provNote="Omon_3d" rowIndex="82" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" subGroup="Omon_3d" title="Temperature Flux due to Runoff Expressed as Heat Flux into Sea Water" type="real" uid="baa68000-e5dd-11e5-8482-ac72891c3257" vid="155ede0bff2578a736e6379552483f4e"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="rhc13" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Hist]" provNote="" rowIndex="18" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Mass Flux of 13C into Atmosphere due to Heterotrophic Respiration on Land" type="" uid="8b7f9cde-4a5b-11e6-9cd2-ac72891c3257" vid="590f1f68-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fNleach" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="83" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total N loss to leaching or runoff (sum of ammonium, nitrite and nitrate)" type="" uid="8b822d82-4a5b-11e6-9cd2-ac72891c3257" vid="591514ea-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="MODIS Total Cloud Fraction" frequency="mon" label="cltmodis" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMonExtra]" provNote="" rowIndex="12" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="MODIS Total Cloud Cover Percentage" type="" uid="8b8a7154-4a5b-11e6-9cd2-ac72891c3257" vid="5912dd74-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="Model levels or plev_27" frequency="1hr" label="va27" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_strat]" provNote="" rowIndex="14" shuffle="0" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="Northward Wind" type="" uid="8bb0f518-4a5b-11e6-9cd2-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="cldncl" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="GeoMIP [aeroGeo]" provNote="" rowIndex="17" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Cloud Droplet Number Concentration of Cloud Tops" type="" uid="6f36f584-9acb-11e6-b7ee-ac72891c3257" vid="069ed8a3f93e92dab9e61f59b4d5338e"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="fx" label="hfgeoubed" mipTable="IfxAnt" modeling_realm="landIce" mtid="MIPtable::IfxAnt" positive="" prov="ISMIP6 [IfxAnt]" provNote="" rowIndex="4" shuffle="0" stid="943ca1c8-8b06-11e6-94d1-5404a60d96b5" title="Geothermal Heat flux beneath land ice" type="" uid="d5b3755a-c78d-11e6-9b25-5404a60d96b5" vid="5914a1ea-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over floating land ice" frequency="yr" label="litempbotfl" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="10" shuffle="0" stid="943a846a-8b06-11e6-94d1-5404a60d96b5" title="Basal temperature of floating ice shelf" type="" uid="d5b444b2-c78d-11e6-9b25-5404a60d96b5" vid="4144f026-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="liquid_water_evaporation_flux_from_soil" frequency="day" label="es" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="13" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Bare soil evaporation" type="" uid="d2282162-4a9f-11e6-b84e-ac72891c3257" vid="590f1324-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="surface_water_amount_assuming_no_snow" frequency="day" label="sw" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="39" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Water Storage" type="" uid="d2289714-4a9f-11e6-b84e-ac72891c3257" vid="590eaf60-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="O18wv" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="12" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="O18 in water vapor" type="" uid="6f68c8f2-9acb-11e6-b7ee-ac72891c3257" vid="590d4440-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="in Amon" frequency="mon" label="hus" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_ext]" provNote="" rowIndex="17" shuffle="0" stid="e9fb0754-c1ce-11e6-8067-ac72891c3257" title="Specific Humidity" type="" uid="81d83384-aa6a-11e6-9736-5404a60d96b5" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="day" label="mlotst" mipTable="emDay" modeling_realm="ocean" mtid="MIPtable::emDay" positive="" prov="DCPP [DCPP-day]" provNote="" rowIndex="23" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Ocean Mixed Layer Thickness Defined by Sigma T" type="real" uid="8168b848-f906-11e6-a176-5404a60d96b5" vid="b1ac17c786f782027deb9a5985ad106e"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="vtem" mipTable="emMonZ" modeling_realm="atmos" mtid="MIPtable::emMonZ" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="34" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Transformed Eulerian Mean northward wind" type="" uid="feeadf5c-96ec-11e6-b81e-c9e268aff03a" vid="ba7be4134a9cf4838434bf204d80b903"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is needed in case the ice sheet elevation changes in time" frequency="yr" label="orog" mipTable="IyrAnt" modeling_realm="land" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="4" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Surface Altitude" type="real" uid="d5b42c98-c78d-11e6-9b25-5404a60d96b5" vid="00e77372e8b909d9a827a0790e991fd9"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="nSoil" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="40" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Nitrogen Mass in Soil Pool" type="" uid="8b80baec-4a5b-11e6-9cd2-ac72891c3257" vid="590e5100-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Downwelling Clear-Sky Shortwave Raiation" frequency="3hr" label="rsdcs" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="down" prov="RFMIP [aero_irf]" provNote="" rowIndex="30" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Downwelling Clear-Sky Shortwave Radiation" type="real" uid="7b306e7c-a220-11e6-a33f-ac72891c3257" vid="38806cec3ba894d7745fada80c9f6fe6"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="liquid_water_evaporation_flux_from_canopy" frequency="day" label="ec" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="11" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Interception evaporation" type="" uid="d22818a2-4a9f-11e6-b84e-ac72891c3257" vid="590f0bf4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="tntrlcs" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMon_3dstd_new]" provNote="" rowIndex="6" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Clear Sky Longwave Radiative Heating" type="" uid="8b89b296-4a5b-11e6-9cd2-ac72891c3257" vid="59170a02-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Pressure levels (3)" frequency="1hr" label="wap" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_energy]" provNote="" rowIndex="15" shuffle="" stid="f7e9888a-562c-11e6-a2a4-ac72891c3257" title="omega (=dp/dt)" type="real" uid="8bb14072-4a5b-11e6-9cd2-ac72891c3257" vid="51fb29dd55442361fa9c5dbe23aca9c6"/>
<item defaultPriority="1" deflate="" deflate_level="" description="zonal mean; hence YZT" frequency="day" label="zg" mipTable="emDayZ" modeling_realm="atmos" mtid="MIPtable::emDayZ" positive="" prov="DAMIP [DAMIP_day_zm]" provNote="" rowIndex="44" shuffle="" stid="e4b18e96-8946-11e6-a0c4-5404a60d96b5" title="Geopotential Height" type="float" uid="8b983a5a-4a5b-11e6-9cd2-ac72891c3257" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="downwelling shortwave  flux due to volcanic aerosols at  the surface to be diagnosed through double radiation call" frequency="6hr" label="swsffluxaero" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="VolMIP [VIRF]" provNote="" rowIndex="8" shuffle="0" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Shortwave heating rate due to volcanic aerosols" type="" uid="f26b4bc0-26b8-11e7-8344-ac72891c3257" vid="5914f852-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="subhr" label="bldep" mipTable="emSubhr" modeling_realm="aerosol" mtid="MIPtable::emSubhr" positive="" prov="HighResMIP [1ts]" provNote="" rowIndex="25" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Boundary Layer Depth" type="float" uid="8bb19720-4a5b-11e6-9cd2-ac72891c3257" vid="590e3c7e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="opottemppmdiff" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="47" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water potential temperature expressed as heat content due to parameterized mesoscale diffusion" type="real" uid="8b9df4fe-4a5b-11e6-9cd2-ac72891c3257" vid="bf9968cc511b92e99f89e9856bd38fb6"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Rainfall rate" frequency="3hr" label="prra" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="" prov="LS3MIP [L3hr]" provNote="" rowIndex="13" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Rainfall Flux where Ice Free Ocean over Sea" type="real" uid="7b1a3990-a220-11e6-a33f-ac72891c3257" vid="5912cab4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="20C isotherm depth" frequency="mon" label="t20d" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Omon-02]" provNote="" rowIndex="31" shuffle="0" stid="fa24c058-267c-11e7-9bed-ac72891c3257" title="20C isotherm depth" type="" uid="8b922f7a-4a5b-11e6-9cd2-ac72891c3257" vid="46bc4ce008d1306ea0780510304cfa88"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="rsdscsbnd" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="17" shuffle="0" stid="63c22a14-15f2-11e7-87e0-5404a60d96b5" title="Surface Downwelling Clear-Sky Shortwave Radiation for each band" type="" uid="7b304028-a220-11e6-a33f-ac72891c3257" vid="398683d4-a0dc-11e6-bc63-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Canopy covered fraction" frequency="day" label="cnc" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="31" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Canopy covered area percentage" type="" uid="d227dc66-4a9f-11e6-b84e-ac72891c3257" vid="591526ec-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="change_over_time_in_water_content_of_soil_layer" frequency="day" label="dslw" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="28" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Change in soil moisture" type="" uid="d2286460-4a9f-11e6-b84e-ac72891c3257" vid="5914bc20-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="dissi14c" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Hist]" provNote="" rowIndex="20" shuffle="0" stid="c9e2f91a-9571-11e6-b25e-ac72891c3257" title="Concentration of DI14C" type="" uid="8b7fa828-4a5b-11e6-9cd2-ac72891c3257" vid="59144254-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="subhr" label="hfss" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="up" prov="HighResMIP [1ts]" provNote="" rowIndex="19" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Upward Sensible Heat Flux" type="real" uid="8bb179fc-4a5b-11e6-9cd2-ac72891c3257" vid="a13ed886b17e20cdae8b89b9ff8e4610"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="concnmcn" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [aeroDay_2d]" provNote="" rowIndex="27" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Number Concentration of Nucleation Mode Aerosol" type="" uid="7d8c8060-1ab7-11e7-8dfc-5404a60d96b5" vid="f2ab103442d41c890bc004ef71dc71f2"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="somint" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="DAMIP [DAMIP_Omon_p2]" provNote="" rowIndex="32" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="integral wrt depth of product of sea water density and salinity" type="real" uid="8b9dba8e-4a5b-11e6-9cd2-ac72891c3257" vid="180d4bd9a18a9d5ecf3d45690b8e9c75"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fProductDecompLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="25" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="flux from wood and agricultural product pools on land use tile into atmosphere" type="" uid="3e26b4be-b89b-11e6-be04-ac72891c3257" vid="3f3074ee-b89b-11e6-be04-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="intvadse" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="25" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Vertically integrated Northward dry transport (cp.T +zg).v (Mass_weighted_vertical integral of the product of northward wind by dry static_energy per mass unit)" type="" uid="6f6916a4-9acb-11e6-b7ee-ac72891c3257" vid="59147b48-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="od550so4so" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="8" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Stratospheric Optical depth at 550 nm (sulphate only) 2D-field (here we limit the computation of OD to the stratosphere only)" type="" uid="6f6bc796-9acb-11e6-b7ee-ac72891c3257" vid="5914cf30-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fNnetmin" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="39" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Net nitrogen release from soil and litter as the outcome of nitrogen immobilisation and gross mineralisation" type="" uid="8b80e602-4a5b-11e6-9cd2-ac72891c3257" vid="590dda36-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="MODIS Optical Thickness-Particle Size joint  distribution, ice" frequency="3hr" label="jpdftaureicemodis" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="CFMIP [cf3hr_sim_new]" provNote="" rowIndex="16" shuffle="0" stid="af254584-1e00-11e7-a625-5404a60d96b5" title="MODIS Optical Thickness-Particle Size joint  distribution, ice" type="" uid="f26cb7e4-26b8-11e7-8344-ac72891c3257" vid="59149a10-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="ut" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="24" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="air_temperature_times_eastward_wind" type="" uid="8baf56c2-4a5b-11e6-9cd2-ac72891c3257" vid="5917841e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="subhr" label="hus" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="HighResMIP [1ts]" provNote="" rowIndex="28" shuffle="0" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Specific Humidity" type="" uid="8bb1a788-4a5b-11e6-9cd2-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="grassFracC3" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="10" shuffle="0" stid="fa26335c-267c-11e7-9bed-ac72891c3257" title="C3 grass Area Percentage" type="" uid="8b814764-4a5b-11e6-9cd2-ac72891c3257" vid="590dc8ac-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="tas" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="DCPP [DCPP-6hr]" provNote="" rowIndex="7" shuffle="" stid="f7e1ef26-562c-11e6-a2a4-ac72891c3257" title="Surface Air Temperature" type="float" uid="91043914-267c-11e7-8933-ac72891c3257" vid="5c4978e802ba55d5a298cf1b3bdc2b3a"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="day" label="snd" mipTable="emDay" modeling_realm="landIce land" mtid="MIPtable::emDay" positive="" prov="DCPP [DCPP-day]" provNote="" rowIndex="56" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Snow Depth" type="real" uid="b7ccdf0a-7c00-11e6-bcdf-ac72891c3257" vid="19058c0a2aaaf3eaeca5093ea87c7e46"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="water_flux_from_soil_layer_to_groundwater" frequency="day" label="qgwr" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="25" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Groundwater recharge from soil layer" type="" uid="d22856be-4a9f-11e6-b84e-ac72891c3257" vid="591768a8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="depth_of_subsurface_melting" frequency="day" label="dmlt" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="56" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Depth to soil thaw" type="" uid="d228e610-4a9f-11e6-b84e-ac72891c3257" vid="590d8fc2-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="O17p" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="10" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="17O in total precipitation" type="" uid="6f68bc22-9acb-11e6-b7ee-ac72891c3257" vid="590f10b8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="intuadse" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="24" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Vertically integrated Eastward dry transport (cp.T +zg).u (Mass_weighted_vertical integral of the product of northward wind by dry static_energy per mass unit)" type="" uid="6f691104-9acb-11e6-b7ee-ac72891c3257" vid="5917acf0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="rac13" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="49" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Mass Flux of 13C into Atmosphere due to Autotrophic (Plant) Respiration on Land" type="" uid="6f6b4384-9acb-11e6-b7ee-ac72891c3257" vid="590dd13a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="lwtoacs" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="23" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Clear-sky TOA Longwave radiative flux due to Dust" type="" uid="6f6c097c-9acb-11e6-b7ee-ac72891c3257" vid="59134bf6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="CO2 volume mixing ratio" frequency="3hr" label="co2" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="32" shuffle="0" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="CO2 volume mixing ratio" type="" uid="7b307606-a220-11e6-a33f-ac72891c3257" vid="9bb9a503065dfbd30c9bbe5c3c6abf99"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="c13Litter" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Hist]" provNote="" rowIndex="9" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Mass of 13C in Litter Pool" type="" uid="8b7f6728-4a5b-11e6-9cd2-ac72891c3257" vid="590de850-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="xgwdparam" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="27" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="x_gravity_wave_drag_param" type="" uid="8baf686a-4a5b-11e6-9cd2-ac72891c3257" vid="591472f6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="fddtdisi" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="58" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Net Dissolved Inorganic Silicon" type="real" uid="e708fa9e-aa7f-11e6-9a4a-5404a60d96b5" vid="ee10c562c1164acf3bf03955dd6fc00d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Monthly mean orography (needed if land ice has time varying altitude)" frequency="mon" label="orog" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="CMIP [fx]" provNote="" rowIndex="4" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Altitude" type="real" uid="7d91ee42-1ab7-11e7-8dfc-5404a60d96b5" vid="00e77372e8b909d9a827a0790e991fd9"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over floating land ice" frequency="yr" label="litempbotfl" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="10" shuffle="0" stid="943a75d8-8b06-11e6-94d1-5404a60d96b5" title="Basal temperature of floating ice shelf" type="" uid="d5b3ade0-c78d-11e6-9b25-5404a60d96b5" vid="4144f026-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="This is needed in case the grounded ice sheet area changes in time (NO floating ice shelf)" frequency="yr" label="sftgrf" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="18" shuffle="0" stid="943a67aa-8b06-11e6-94d1-5404a60d96b5" title="Grounded Ice Sheet  Area Fraction" type="" uid="d5b463c0-c78d-11e6-9b25-5404a60d96b5" vid="590e5de4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="wetlandCH4" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="43" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Grid averaged methane emissions from wetlands" type="" uid="6f6b2106-9acb-11e6-b7ee-ac72891c3257" vid="5917a070-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="gppc13" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="48" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Mass Flux of 13C out of Atmosphere due to Gross Primary Production on Land" type="" uid="8b7f90fe-4a5b-11e6-9cd2-ac72891c3257" vid="590f9ace-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="liquid_water_evaporation_flux_from_open_water" frequency="day" label="eow" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="14" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Open Water Evaporation" type="" uid="d2282612-4a9f-11e6-b84e-ac72891c3257" vid="5917ca14-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="siu" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="62" shuffle="0" stid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5" title="X-component of sea ice velocity" type="" uid="7147b8fe-faa7-11e6-bfb7-ac72891c3257" vid="590e80c6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sidmassdyn" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="35" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="sea-ice mass change from dynamics" type="" uid="711e3862-faa7-11e6-bfb7-ac72891c3257" vid="591357b8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sndmasssnf" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="43" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="snow mass change through snow fall" type="" uid="71401c0c-faa7-11e6-bfb7-ac72891c3257" vid="59142a3a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="raRoot" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="46" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Respiration from Roots" type="" uid="8b81ab0a-4a5b-11e6-9cd2-ac72891c3257" vid="591491e6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="va" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="DynVar [DYVR_daily_d]" provNote="" rowIndex="22" shuffle="0" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="Northward Wind" type="" uid="8bae05ec-4a5b-11e6-9cd2-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="utendnogw" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="DAMIP [DAMIP-emMon]" provNote="" rowIndex="7" shuffle="0" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="u-tendency nonorographic gravity wave drag" type="" uid="6f17b552-9acb-11e6-b7ee-ac72891c3257" vid="590e85a8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="rldsIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="26" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Downwelling Longwave Radiation" type="" uid="81212830-bf17-11e6-b0d8-ac72891c3257" vid="538284f2-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="fg14co2" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Omon-02]" provNote="" rowIndex="24" shuffle="0" stid="fa24c058-267c-11e7-9bed-ac72891c3257" title="Total air-sea flux of 14CO2" type="" uid="8b7fad82-4a5b-11e6-9cd2-ac72891c3257" vid="5917788e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Vertically averaged ocean temperature" frequency="mon" label="thetaot" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Omon-02]" provNote="" rowIndex="32" shuffle="0" stid="fa24c058-267c-11e7-9bed-ac72891c3257" title="Vertically Averaged Sea Water Potential Temperature" type="" uid="6f69f1b4-9acb-11e6-b7ee-ac72891c3257" vid="b5bc9b1fa92a35cec5989eeac3d77d1a"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="sidragbot" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="73" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Ocean drag coefficient" type="" uid="7142bf02-faa7-11e6-bfb7-ac72891c3257" vid="590e9070-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="burntFractionAll" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="27" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Fraction of grid cell burned due to all fires including natural and anthropogenic fires and those associated with anthropogenic land use change" type="" uid="8b80a9b2-4a5b-11e6-9cd2-ac72891c3257" vid="59136b72-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="fNgasFire" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="86" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total N lost to the atmosphere (including NHx, NOx, N2O, N2) from fire." type="" uid="8b823c5a-4a5b-11e6-9cd2-ac72891c3257" vid="5913e156-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="alevel site time1" frequency="subhr" label="reffclis" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="CFMIP [cfSites_new]" provNote="" rowIndex="27" shuffle="" stid="e4b02c9a-8946-11e6-a0c4-5404a60d96b5" title="Hydrometeor Effective Radius of Stratiform Cloud Ice" type="real" uid="8b8a2492-4a5b-11e6-9cd2-ac72891c3257" vid="c2270065bb39bfa4fbf0d13a78dfa8a1"/>
<item defaultPriority="1" deflate="" deflate_level="" description="PARASOL Reflectance" frequency="3hr" label="parasolRefl" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="CFMIP [cf3hr_sim_new]" provNote="" rowIndex="8" shuffle="" stid="f7eca81c-562c-11e6-a2a4-ac72891c3257" title="PARASOL Reflectance" type="real" uid="8b8ab434-4a5b-11e6-9cd2-ac72891c3257" vid="a06b8e83250b870d9f39dc1f6534efcb"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="ec550aer" mipTable="emDay" modeling_realm="aerosol" mtid="MIPtable::emDay" positive="" prov="CFMIP [aeroDay_2d]" provNote="" rowIndex="28" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Aerosol extinction coefficient" type="float" uid="7d8c87d6-1ab7-11e7-8dfc-5404a60d96b5" vid="be9cffbb781e32b0bc311b22fa5c0322"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="Surface Albedo" frequency="day" label="albs" mipTable="emDay" modeling_realm="aerosol" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="27" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="planetary albedo" type="float" uid="d227c9c4-4a9f-11e6-b84e-ac72891c3257" vid="7799323bb6289c40376760b842d60e61"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="mrsosLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="20" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="Moisture in Upper Portion of Soil Column of land use tile" type="" uid="d22ddb3e-4a9f-11e6-b84e-ac72891c3257" vid="590f983a-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="day" label="hus" mipTable="emDayZ" modeling_realm="atmos" mtid="MIPtable::emDayZ" positive="" prov="DAMIP [DAMIP_day_zm]" provNote="" rowIndex="45" shuffle="0" stid="e4b18e96-8946-11e6-a0c4-5404a60d96b5" title="Specific Humidity" type="" uid="8b8fbaa6-4a5b-11e6-9cd2-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="opottempmint" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmon]" provNote="" rowIndex="36" shuffle="" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="integral wrt depth of product of sea water density and potential temperature" type="real" uid="8b9dbfe8-4a5b-11e6-9cd2-ac72891c3257" vid="59133ddc-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Column integrated mass flux" frequency="mon" label="columnmassflux" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_conv]" provNote="" rowIndex="20" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Column Integrated Mass Flux" type="" uid="8baef7a4-4a5b-11e6-9cd2-ac72891c3257" vid="590d8018-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="cldwatmxrat27" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_diag]" provNote="" rowIndex="22" shuffle="0" stid="f7ea1f3e-562c-11e6-a2a4-ac72891c3257" title="Cloud Water Mixing Ratio" type="" uid="8baff71c-4a5b-11e6-9cd2-ac72891c3257" vid="59151288-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="raShrub" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="59" shuffle="0" stid="fa243638-267c-11e7-9bed-ac72891c3257" title="autotrophic respiration on Shrub tiles" type="" uid="e707816e-aa7f-11e6-9a4a-5404a60d96b5" vid="84f108a8-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="lower priority" frequency="1hr" label="utendnogw27" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_strat]" provNote="" rowIndex="19" shuffle="0" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="u-tendency nonorographic gravity wave drag" type="" uid="8184b3c2-f906-11e6-a176-5404a60d96b5" vid="590e85a8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="yr" label="xvelsurf" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="20" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="X-component of land ice surface velocity" type="" uid="d5b46b36-c78d-11e6-9b25-5404a60d96b5" vid="1427742a-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Saturated Hydraulic Conductivity" frequency="fx" label="ksat" mipTable="emFx" modeling_realm="land" mtid="MIPtable::emFx" positive="" prov="LS3MIP [fxLS3MIP]" provNote="" rowIndex="13" shuffle="0" stid="81737d70-f751-11e6-8899-5404a60d96b5" title="Saturated Hydraulic Conductivity" type="" uid="f2facd4c-c38d-11e6-abc1-1b922e5e1118" vid="7124996a-c7b6-11e6-bb2a-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fNdepred" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="56" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Dry and Wet Deposition of Reduced Reactive Nitrogen onto Land" type="" uid="6f6b68fa-9acb-11e6-b7ee-ac72891c3257" vid="5913aa10-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="relative_soil_moisture_content_above_field_capacity" frequency="day" label="mrsow" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="42" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Soil Wetness" type="" uid="d228a402-4a9f-11e6-b84e-ac72891c3257" vid="59133b34-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="depth_of_soil_moisture_saturation" frequency="day" label="wtd" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="43" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Water table depth" type="" uid="d228a89e-4a9f-11e6-b84e-ac72891c3257" vid="5913c4dc-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="downwelling longwave flux due to volcanic aerosols at TOA under clear sky to be diagnosed through double radiation call" frequency="6hr" label="lwtoafluxaerocs" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="VolMIP [VIRF]" provNote="" rowIndex="11" shuffle="0" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Longwave flux due to volcanic aerosols at TOA under clear sky" type="" uid="f2723fde-26b8-11e7-8344-ac72891c3257" vid="590f1586-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sicompstren" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="71" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Compressive sea ice strength" type="" uid="71166880-faa7-11e6-bfb7-ac72891c3257" vid="590e9390-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="siage" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="19" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Age of sea ice" type="" uid="712ebec6-faa7-11e6-bfb7-ac72891c3257" vid="5917369e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="fgco2abio" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="down" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="52" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Flux of Abiotic CO2" type="real" uid="e708e07c-aa7f-11e6-9a4a-5404a60d96b5" vid="042e575e61a271e122d317ca7b39dcb4"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="This is needed in case the ice sheet area changes in time" frequency="yr" label="sftgif" mipTable="IyrAnt" modeling_realm="land" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="17" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Fraction of Grid Cell Covered with Glacier" type="real" uid="d5b46000-c78d-11e6-9b25-5404a60d96b5" vid="a1d2e309c6f25017442ad6c79c4f9eca"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="sweLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="18" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="snow water equivalent on land use tile" type="" uid="d22dd206-4a9f-11e6-b84e-ac72891c3257" vid="590e379c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="1hrClimMon" label="rlut" mipTable="em1hrclimmon" modeling_realm="atmos" mtid="MIPtable::em1hrclimmon" positive="up" prov="CFMIP [cf1hrClimMon]" provNote="" rowIndex="6" shuffle="0" stid="f7ebefee-562c-11e6-a2a4-ac72891c3257" title="TOA Outgoing Longwave Radiatio" type="" uid="8b8b5344-4a5b-11e6-9cd2-ac72891c3257" vid="63345d9732c72b97ca395f24ce2d6642"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="fddtdife" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="57" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Net Dissolved Inorganic Iron" type="real" uid="e708f648-aa7f-11e6-9a4a-5404a60d96b5" vid="df087f7801b9ca8b671eba159de9b6e7"/>
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<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="subhr" label="prw" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="HighResMIP [1ts]" provNote="" rowIndex="24" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Water Vapor Path" type="real" uid="8bb191e4-4a5b-11e6-9cd2-ac72891c3257" vid="fc637f1c75e58be8a6e4112411a00f36"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="cSoilLevels" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="32" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon mass in each model soil level (summed over all soil carbon pools in that level)" type="" uid="e7071b02-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0a8f4-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="zonal mean; hence YZT" frequency="mon" label="tntmp" mipTable="emMonZ" modeling_realm="atmos" mtid="MIPtable::emMonZ" positive="" prov="DynVar [DYVR_monthly_b]" provNote="" rowIndex="8" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Model Physics" type="real" uid="607e74a6-bf0e-11e6-aae4-ac72891c3257" vid="621681bc7c376de66228fdde13b97516"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over ice sheet only, to avoid contamination from other surfaces (eg: permafrost)" frequency="yr" label="litemptop" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="8" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Temperature at top of ice sheet model" type="" uid="d5b3a606-c78d-11e6-9b25-5404a60d96b5" vid="14277100-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="This is needed in case the grounded ice sheet area changes in time (NO floating ice shelf)" frequency="yr" label="sftgrf" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="18" shuffle="0" stid="943c1906-8b06-11e6-94d1-5404a60d96b5" title="Grounded Ice Sheet  Area Fraction" type="" uid="d5b3cca8-c78d-11e6-9b25-5404a60d96b5" vid="590e5de4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="lwsrfcsdust" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="26" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Clear-sky Surface Longwave radiative flux due to Dust" type="" uid="6f6c1782-9acb-11e6-b7ee-ac72891c3257" vid="591497a4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="mrroLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="21" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="Total runoff from land use tile" type="" uid="d22ddfda-4a9f-11e6-b84e-ac72891c3257" vid="5913bc80-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="raGrass" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="60" shuffle="0" stid="fa246dce-267c-11e7-9bed-ac72891c3257" title="autotrophic respiration on grass tiles" type="" uid="e70785c4-aa7f-11e6-9a4a-5404a60d96b5" vid="84f105a6-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="This is needed in case the ice sheet elevation changes in time" frequency="yr" label="orog" mipTable="IyrGre" modeling_realm="land" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="4" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Surface Altitude" type="real" uid="d5b3951c-c78d-11e6-9b25-5404a60d96b5" vid="00e77372e8b909d9a827a0790e991fd9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Near surface eastward wind component" frequency="3hr" label="uas" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="" prov="LS3MIP [L3hr]" provNote="" rowIndex="11" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" title="Eastward Near-Surface Wind" type="float" uid="7b1a301c-a220-11e6-a33f-ac72891c3257" vid="e72b243a2a1c8691ab0168d8b62534c2"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="O18s" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="7" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="18O in solid precipitation" type="" uid="6f68a9e4-9acb-11e6-b7ee-ac72891c3257" vid="591763b2-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="mmrdust" mipTable="emMon" modeling_realm="aerosol" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="13" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Dust aerosol mass mixing ratio" type="float" uid="6f6bdd8a-9acb-11e6-b7ee-ac72891c3257" vid="dcecb293537e640a0bfc8f88a92967fe"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="change_over_time_in_canopy_water_amount" frequency="day" label="dcw" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="31" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Change in Interception Storage" type="" uid="d2287216-4a9f-11e6-b84e-ac72891c3257" vid="59170f66-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="only requested for DECK HIST" frequency="mon" label="c14Veg" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Hist]" provNote="" rowIndex="4" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Mass of 14C in Vegetation" type="" uid="6f6ad16a-9acb-11e6-b7ee-ac72891c3257" vid="59149524-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="mon" label="oxloss" mipTable="emMonZ" modeling_realm="atmosChem" mtid="MIPtable::emMonZ" positive="" prov="DAMIP [DAMIP_Amon_new]" provNote="" rowIndex="7" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="total Ox loss rate" type="" uid="8b8f08d6-4a5b-11e6-9cd2-ac72891c3257" vid="590db8c6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Total precipitation flux" frequency="1hr" label="pr" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hrLev]" provNote="" rowIndex="13" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Precipitation" type="" uid="8baebea6-4a5b-11e6-9cd2-ac72891c3257" vid="62f26742cf240c1b5169a5cd511196b6"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="netAtmosLandCO2Flux" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="DCPP [DCPP-mon]" provNote="" rowIndex="28" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Net flux of CO2 between atmosphere and land (positive into land) as a result of all processes." type="" uid="8b7eeef6-4a5b-11e6-9cd2-ac72891c3257" vid="59152142-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over grounded ice sheet" frequency="mon" label="libmassbfgr" mipTable="ImonAnt" modeling_realm="landIce" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="26" shuffle="0" stid="943bbcea-8b06-11e6-94d1-5404a60d96b5" title="Basal specific mass balance flux of grounded ice sheet" type="" uid="d5b3477e-c78d-11e6-9b25-5404a60d96b5" vid="4145ad04-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="This is needed in case the floating ice sheet area changes in time (NO grounded ice sheet)" frequency="yr" label="sftflf" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="19" shuffle="0" stid="943c1906-8b06-11e6-94d1-5404a60d96b5" title="Floating Ice Shelf  Area Fraction" type="" uid="d5b3d068-c78d-11e6-9b25-5404a60d96b5" vid="590dbe0c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="yr" label="yvelmean" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="27" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Y-component of land ice vertical mean velocity" type="" uid="d5b485b2-c78d-11e6-9b25-5404a60d96b5" vid="14277916-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Atlantic Northward Ocean Salt Transport" frequency="mon" label="sltnortha" mipTable="emMonZ" modeling_realm="ocean" mtid="MIPtable::emMonZ" positive="" prov="PMIP [PMIP-Omon-02]" provNote="" rowIndex="30" shuffle="0" stid="fa24e6be-267c-11e7-9bed-ac72891c3257" title="Atlantic Northward Ocean Salt Transport" type="" uid="9162b7e6-267c-11e7-8933-ac72891c3257" vid="16566aed8c1a15e598240020f11b8fd4"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="rsdcsaf" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="20" shuffle="0" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Downwelling Clean-Clear-Sky Shortwave Radiation at each level" type="" uid="916b917c-267c-11e7-8933-ac72891c3257" vid="ea83846e-a0de-11e6-bc63-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="rainfall_flux" frequency="day" label="prra" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="5" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Rainfall Flux where Ice Free Ocean over Sea" type="real" uid="d227fb60-4a9f-11e6-b84e-ac72891c3257" vid="5912cab4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="sidragtop" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="72" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Atmospheric drag coefficient" type="" uid="711ece62-faa7-11e6-bfb7-ac72891c3257" vid="5914e0ba-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="simpconc" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="22" shuffle="0" stid="af256dfc-1e00-11e7-a625-5404a60d96b5" title="Percentage Cover of Sea-Ice by Meltpond" type="" uid="71238a60-faa7-11e6-bfb7-ac72891c3257" vid="590eb1ea-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="siflcondbot" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="58" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Net conductive heat fluxes in ice at the bottom" type="" uid="71402c4c-faa7-11e6-bfb7-ac72891c3257" vid="5917ba9c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="6hr" label="wsgmax100m" mipTable="6hrPlev" modeling_realm="" mtid="MIPtable::6hrPlev" positive="" prov="VIACSAB [viacsabExtra]" provNote="" rowIndex="14" shuffle="0" stid="fa2573e0-267c-11e7-9bed-ac72891c3257" title="Maximum Wind Speed of Gust at 100m" type="" uid="917b8168-267c-11e7-8933-ac72891c3257" vid="e4b039da-b621-11e6-bbe2-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="sithick" mipTable="SIday" modeling_realm="seaIce ocean" mtid="MIPtable::SIday" positive="" prov="SIMIP [seaiceday]" provNote="" rowIndex="6" shuffle="" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Sea Ice Thickness" type="real" uid="d243ba76-4a9f-11e6-b84e-ac72891c3257" vid="591321f8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Flux across 4 straits" frequency="mon" label="snmassacrossline" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="92" shuffle="0" stid="e9fa5c14-c1ce-11e6-8067-ac72891c3257" title="Snow mass flux through straits" type="" uid="712fb3ee-faa7-11e6-bfb7-ac72891c3257" vid="7309b2ce-7a68-11e6-8db2-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fDeforestToProduct" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="25" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Deforested biomass that goes into product pool as a result of anthropogenic land use change" type="" uid="8b809ea4-4a5b-11e6-9cd2-ac72891c3257" vid="5913de9a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="vegHeightGrass" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="68" shuffle="0" stid="fa246dce-267c-11e7-9bed-ac72891c3257" title="Vegetation height averaged over the grass fraction of a grid cell." type="" uid="8b81da6c-4a5b-11e6-9cd2-ac72891c3257" vid="591384a4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Extra levels - 925, 700, 600, 300, 50" frequency="6hr" label="hus7h" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_extr]" provNote="" rowIndex="19" shuffle="0" stid="f7eb125e-562c-11e6-a2a4-ac72891c3257" title="Specific Humidity" type="" uid="71174f52-faa7-11e6-bfb7-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Eastward wind on 850 hPa" frequency="3hr" label="ua850" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="HighResMIP [3hr_extr]" provNote="" rowIndex="13" shuffle="0" stid="f7eb228a-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind" type="" uid="f27c6590-26b8-11e7-8344-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Model levels or plev_27" frequency="1hr" label="tntr27" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_strat]" provNote="" rowIndex="18" shuffle="" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Radiative Heating" type="real" uid="8bb109c2-4a5b-11e6-9cd2-ac72891c3257" vid="93a0ba1f23bfc41b720ea68951d28144"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Field Capacity" frequency="fx" label="fldcapacity" mipTable="emFx" modeling_realm="land" mtid="MIPtable::emFx" positive="" prov="LS3MIP [fxLS3MIP]" provNote="" rowIndex="9" shuffle="0" stid="81737d70-f751-11e6-8899-5404a60d96b5" title="Field Capacity" type="" uid="f2fabe42-c38d-11e6-abc1-1b922e5e1118" vid="7124a0cc-c7b6-11e6-bb2a-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="va850" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="PMIP [PMIP-day-02]" provNote="" rowIndex="13" shuffle="0" stid="f94abbb4-80ba-11e6-ab6e-5404a60d96b5" title="Northward Wind" type="" uid="6f6c58fa-9acb-11e6-b7ee-ac72891c3257" vid="4845c81a8e19c6dd7059fa1a115c17ab"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="nProduct" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="31" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Nitrogen Mass in Products of Land Use Change" type="" uid="8b80c06e-4a5b-11e6-9cd2-ac72891c3257" vid="5917f21e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="alevel site time1" frequency="subhr" label="tntrl" mipTable="emSubhr" modeling_realm="aerosol" mtid="MIPtable::emSubhr" positive="" prov="CFMIP [cfSites_new]" provNote="" rowIndex="17" shuffle="" stid="e4b02c9a-8946-11e6-a0c4-5404a60d96b5" title="Longwave heating rate" type="float" uid="8b89edce-4a5b-11e6-9cd2-ac72891c3257" vid="5917483c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="fVegSoilSenescence" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="40" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Carbon Mass Flux from Vegetation to Soil as a result of leaf, branch, and root senescence" type="" uid="e70731dc-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0ddec-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="zoomisc" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="16" shuffle="0" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Other Zooplankton Carbon Concentration" type="" uid="e70872d6-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0d766-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="3" deflate="" deflate_level="" description="zonal mean; hence YZT" frequency="mon" label="tntrs" mipTable="emMonZ" modeling_realm="aerosol" mtid="MIPtable::emMonZ" positive="" prov="DynVar [DYVR_monthly_b]" provNote="" rowIndex="10" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Shortwave heating rate" type="float" uid="11ecbdd2-c14f-11e6-bb78-ac72891c3257" vid="59173c0c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="mon" label="tntrscs" mipTable="emMonZ" modeling_realm="atmos" mtid="MIPtable::emMonZ" positive="" prov="DynVar [DYVR_monthly_b]" provNote="" rowIndex="12" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Clear Sky Shortwave Radiative Heating" type="" uid="11ecc5ca-c14f-11e6-bb78-ac72891c3257" vid="5913d86e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only. Needed to analyse the impact of downscaling methods" frequency="mon" label="ts" mipTable="ImonGre" modeling_realm="atmos" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="5" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Surface Temperature" type="real" uid="d5b280fa-c78d-11e6-9b25-5404a60d96b5" vid="90c49fce92dc1f21647dad07d1342843"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fNdepox" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="55" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Dry and Wet Deposition of Oxidised Reactive Nitrogen onto Land" type="" uid="6f6b64ae-9acb-11e6-b7ee-ac72891c3257" vid="59151756-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fluxes are requested at all levels" frequency="fx" label="rld" mipTable="emFx" modeling_realm="atmos" mtid="MIPtable::emFx" positive="down" prov="RFMIP [OfflineRad]" provNote="" rowIndex="6" shuffle="" stid="70421648-f2a0-11e6-9a05-5404a60d96b5" title="Downwelling Longwave Radiation" type="real" uid="d23b50a2-4a9f-11e6-b84e-ac72891c3257" vid="c432bfbfc0e7f4403f91af39736ff61c"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nRoot" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="74" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Nitrogen Mass in Roots" type="" uid="8b820078-4a5b-11e6-9cd2-ac72891c3257" vid="59136dfc-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="ygwdparam" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="28" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="y_gravity_wave_drag_param" type="" uid="8baf6dd8-4a5b-11e6-9cd2-ac72891c3257" vid="59132e1e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="6hr" label="rainmxrat27" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="20" shuffle="0" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="rain_mixing_ratio" type="" uid="f27d9f32-26b8-11e7-8344-ac72891c3257" vid="5914b9be-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="subhr" label="hfls" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="up" prov="HighResMIP [1ts]" provNote="" rowIndex="20" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Upward Latent Heat Flux" type="real" uid="8bb17eca-4a5b-11e6-9cd2-ac72891c3257" vid="95cbf6ac889c8fe7d92e20e8c34960d1"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="subhr" label="ua" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="HighResMIP [1ts]" provNote="" rowIndex="17" shuffle="0" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind" type="" uid="8bb17060-4a5b-11e6-9cd2-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="snicefreezIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="15" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Snow and Ice Refreeze Flux" type="" uid="8120f248-bf17-11e6-b0d8-ac72891c3257" vid="53826404-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="yr" label="zvelsurf" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="22" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Upward component of land ice surface velocity" type="" uid="d5b3db8a-c78d-11e6-9b25-5404a60d96b5" vid="142782e4-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="c14Land" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="33" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Mass of 14C in all terrestrial carbon pools" type="" uid="8b7f5bfc-4a5b-11e6-9cd2-ac72891c3257" vid="590f885e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="6hr" label="va200" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="PMIP [PMIP-6hr]" provNote="" rowIndex="6" shuffle="0" stid="f7ed42fe-562c-11e6-a2a4-ac72891c3257" title="Northward Wind" type="" uid="d237a84e-4a9f-11e6-b84e-ac72891c3257" vid="31da97523029203798a150a71bc20301"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fProductDecomp" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="23" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="decomposition out of product pools to CO2 in atmos" type="" uid="8b8092e2-4a5b-11e6-9cd2-ac72891c3257" vid="590f933a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="tnhusscp" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMon_3dstd_new]" provNote="" rowIndex="12" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Specific Humidity Due to Stratiform Clouds and Precipitation" type="" uid="8b89d456-4a5b-11e6-9cd2-ac72891c3257" vid="59135d8a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="6hr" label="zg27" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="16" shuffle="" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="Geopotential Height" type="float" uid="8bb0333a-4a5b-11e6-9cd2-ac72891c3257" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Convective cloud optical depth" frequency="6hr" label="dtauc" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="34" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Convective Cloud Optical Depth" type="real" uid="8bb09104-4a5b-11e6-9cd2-ac72891c3257" vid="7c0c62d0dc4787a601a1bc1c4e3f7597"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="opottemprmadvect" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="45" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water potential temperature expressed as heat content due to residual mean advection" type="real" uid="8b9deb80-4a5b-11e6-9cd2-ac72891c3257" vid="3cbe53c2-12cc-11e6-b2bc-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="rsdsIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="24" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Downwelling Shortwave Radiation" type="" uid="81211d54-bf17-11e6-b0d8-ac72891c3257" vid="53827f52-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over floating ice shelf" frequency="mon" label="litempbotfl" mipTable="ImonGre" modeling_realm="landIce" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="9" shuffle="0" stid="943a75d8-8b06-11e6-94d1-5404a60d96b5" title="Basal temperature of floating ice shelf" type="" uid="d5b290ae-c78d-11e6-9b25-5404a60d96b5" vid="4144f026-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="snm" mipTable="ImonGre" modeling_realm="landIce land" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="15" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Surface Snow Melt" type="real" uid="d5b2a7f6-c78d-11e6-9b25-5404a60d96b5" vid="5652800cc64fd945cc990547aee633a1"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="ta500" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="PMIP [PMIP-day-02]" provNote="" rowIndex="8" shuffle="0" stid="7040a0b0-f2a0-11e6-9a05-5404a60d96b5" title="Air Temperature" type="" uid="6f6c4482-9acb-11e6-b7ee-ac72891c3257" vid="f6928c80a369489688a5da8e78a7a3b7"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sipr" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="59" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Rainfall rate over sea ice" type="" uid="7109e6a0-faa7-11e6-bfb7-ac72891c3257" vid="59138238-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Heating rate due to diabatic processes" frequency="mon" label="tntmp27" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_diag]" provNote="" rowIndex="13" shuffle="" stid="f7ea1f3e-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Model Physics" type="real" uid="8bafc508-4a5b-11e6-9cd2-ac72891c3257" vid="621681bc7c376de66228fdde13b97516"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="subhr" label="ta" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="HighResMIP [1ts]" provNote="" rowIndex="27" shuffle="0" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Air Temperature" type="" uid="8bb1a17a-4a5b-11e6-9cd2-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="ppdiat" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="39" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Net Primary Organic Carbon Production by Diatoms" type="real" uid="e708a206-aa7f-11e6-9a4a-5404a60d96b5" vid="e525bed4-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fNgas" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="53" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Total Nitrogen lost to the atmosphere (sum of NHx, NOx, N2O, N2)" type="" uid="8b8231e2-4a5b-11e6-9cd2-ac72891c3257" vid="5914d462-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fBNFsymb" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="57" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="symbiontic biological nitrogen fixation" type="" uid="6f6b6d1e-9acb-11e6-b7ee-ac72891c3257" vid="590e1974-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Net longwave radiation" frequency="day" label="rls" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="5" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Net Longwave Surface Radiation" type="" uid="d2276e7a-4a9f-11e6-b84e-ac72891c3257" vid="3e7348adedb540627808da06a211c81c"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="mrsfl" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="10" shuffle="0" stid="f7ed82f0-562c-11e6-a2a4-ac72891c3257" title="Frozen water content of soil layer" type="" uid="8b804774-4a5b-11e6-9cd2-ac72891c3257" vid="590d17f4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Called &quot;acceldivf&quot; in CCMI table; we suggest new name. zonal mean; hence YZT" frequency="day" label="utendepfd" mipTable="emDayZ" modeling_realm="atmos" mtid="MIPtable::emDayZ" positive="" prov="DynVar [DYVR_daily_a]" provNote="" rowIndex="8" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Tendency of eastward wind due to Eliassen-Palm Flux divergence" type="" uid="8b97e4c4-4a5b-11e6-9cd2-ac72891c3257" vid="590fa2bc-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="fx" label="lithk" mipTable="IfxAnt" modeling_realm="landIce" mtid="MIPtable::IfxAnt" positive="" prov="ISMIP6 [IfxAnt]" provNote="" rowIndex="6" shuffle="0" stid="943ca1c8-8b06-11e6-94d1-5404a60d96b5" title="Ice Sheet Thickness" type="" uid="d5b37ca8-c78d-11e6-9b25-5404a60d96b5" vid="59176b14-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="intuaw" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="22" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Vertically integrated Eastward moisture transport (Mass_weighted_vertical integral of the product of eastward wind by total water mass per unit mass)" type="" uid="6f690484-9acb-11e6-b7ee-ac72891c3257" vid="590de58a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="lai" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="C4MIP [L_day]" provNote="" rowIndex="4" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Leaf Area Index" type="" uid="8b7ff4ea-4a5b-11e6-9cd2-ac72891c3257" vid="6c3e8db1b45a6ae7e80ca5a265c0fd50"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="alevel site time1" frequency="subhr" label="tnhusscp" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="CFMIP [cfSites_new]" provNote="" rowIndex="25" shuffle="0" stid="e4b02c9a-8946-11e6-a0c4-5404a60d96b5" title="Tendency of Specific Humidity Due to Stratiform Clouds and Precipitation" type="" uid="8b8a1a88-4a5b-11e6-9cd2-ac72891c3257" vid="59135d8a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fLulccProductLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="26" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="carbon harvested due to land-use or land-cover change process that enters anthropogenic product pools on tile" type="" uid="3e26b8a6-b89b-11e6-be04-ac72891c3257" vid="3f30714c-b89b-11e6-be04-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="c14Litter" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Hist]" provNote="" rowIndex="5" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Mass of 14C in Litter Pool" type="" uid="8b7f5080-4a5b-11e6-9cd2-ac72891c3257" vid="590e29c8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="day" label="utendwtem" mipTable="emDayZ" modeling_realm="atmos" mtid="MIPtable::emDayZ" positive="" prov="DynVar [DYVR_daily_b]" provNote="" rowIndex="14" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Rendency of eastward wind due to TEM upward advection" type="" uid="8b97fe6e-4a5b-11e6-9cd2-ac72891c3257" vid="590e883c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="psl" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="CORDEX [cx_6hr]" provNote="" rowIndex="28" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Sea Level Pressure" type="real" uid="90fce4e8-267c-11e7-8933-ac72891c3257" vid="3d23c359f44d6a153c4dcab9e07d7cb6"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="Greenland" frequency="yr" label="tendacabf" mipTable="IyrGre" modeling_realm="atmos" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="34" shuffle="0" stid="b0ec4e62-a42a-11e6-bfbb-ac72891c3257" title="Total surface mass balance flux" type="" uid="d5b40e16-c78d-11e6-9b25-5404a60d96b5" vid="4146943a-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="siflsenstop" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="54" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Net sensible heat flux over sea ice" type="" uid="712cccec-faa7-11e6-bfb7-ac72891c3257" vid="590dbb78-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="siforcecoriolx" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="76" shuffle="0" stid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5" title="Coriolis force term in force balance (x-component)" type="" uid="714b545a-faa7-11e6-bfb7-ac72891c3257" vid="590e3ee0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="only requested for DECK HIST, 1980-present" frequency="3hr" label="gpp" mipTable="em3hr" modeling_realm="land" mtid="MIPtable::em3hr" positive="down" prov="C4MIP [L_3hr]" provNote="" rowIndex="4" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux out of Atmosphere due to Gross Primary Production on Land" type="real" uid="8b7fde2e-4a5b-11e6-9cd2-ac72891c3257" vid="89c4bb4f45a0182fc00a1b86b13241a5"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="alevel site time1" frequency="subhr" label="tntrlcs" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="CFMIP [cfSites_new]" provNote="" rowIndex="19" shuffle="0" stid="e4b02c9a-8946-11e6-a0c4-5404a60d96b5" title="Tendency of Air Temperature due to Clear Sky Longwave Radiative Heating" type="" uid="8b89f864-4a5b-11e6-9cd2-ac72891c3257" vid="59170a02-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="1hrClimMon" label="rsdt" mipTable="em1hrclimmon" modeling_realm="atmos" mtid="MIPtable::em1hrclimmon" positive="down" prov="CFMIP [cf1hrClimMon]" provNote="" rowIndex="4" shuffle="" stid="f7ebefee-562c-11e6-a2a4-ac72891c3257" title="TOA Incident Shortwave Radiation" type="real" uid="8b8b499e-4a5b-11e6-9cd2-ac72891c3257" vid="a21e250a10f96b1c1ad6d742206a157e"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="thetaot300" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="DCPP [DCPP-mon]" provNote="" rowIndex="35" shuffle="0" stid="63c1f684-15f2-11e7-87e0-5404a60d96b5" title="Depth average potential temperature of upper 300m" type="" uid="8b92450a-4a5b-11e6-9cd2-ac72891c3257" vid="590d2b9a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="mrroIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="16" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Total Run-off" type="" uid="132b3a2e-be44-11e6-9e13-f9e3356200b3" vid="538266e8-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Wilting Point" frequency="fx" label="wilt" mipTable="emFx" modeling_realm="land" mtid="MIPtable::emFx" positive="" prov="LS3MIP [fxLS3MIP]" provNote="" rowIndex="8" shuffle="0" stid="81737d70-f751-11e6-8899-5404a60d96b5" title="Wilting Point" type="" uid="f2faba78-c38d-11e6-abc1-1b922e5e1118" vid="7124926c-c7b6-11e6-bb2a-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Specific Humidity " frequency="3hr" label="hus" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="33" shuffle="0" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Specific Humidity" type="" uid="6140a2aa-aa6a-11e6-9736-5404a60d96b5" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="day" label="tdps" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="DCPP [DCPP-day]" provNote="" rowIndex="42" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="2m dewpoint temperature" type="" uid="8b926364-4a5b-11e6-9cd2-ac72891c3257" vid="4f3e5df56723b77c87e15cce7594ab94"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="uv" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="21" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="eastward_wind_times_northward_wind" type="" uid="8baf4678-4a5b-11e6-9cd2-ac72891c3257" vid="59137496-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Model levels or plev_27" frequency="1hr" label="wap27" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_strat]" provNote="" rowIndex="15" shuffle="" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="omega (=dp/dt)" type="real" uid="8bb0fa18-4a5b-11e6-9cd2-ac72891c3257" vid="51fb29dd55442361fa9c5dbe23aca9c6"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nLitterSubSurf" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="78" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Nitrogen Mass in below ground litter (non CWD)" type="" uid="bcc6ffa2-b8a7-11e6-b7f0-ac72891c3257" vid="71c9768e-b8ab-11e6-97ab-ac72891c3257"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="ppcalc" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="41" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Net Primary Mole Productivity of Carbon by Calcareous Phytoplankton" type="real" uid="e708aca6-aa7f-11e6-9a4a-5404a60d96b5" vid="e526caea-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over grounded ice sheet" frequency="mon" label="litempbotgr" mipTable="ImonAnt" modeling_realm="landIce" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="8" shuffle="0" stid="943bbcea-8b06-11e6-94d1-5404a60d96b5" title="Basal temperature of grounded ice sheet" type="" uid="d5b303ae-c78d-11e6-9b25-5404a60d96b5" vid="4144a01c-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over ice sheet only, to avoid contamination from other surfaces (eg: permafrost)" frequency="yr" label="litemptop" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="8" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Temperature at top of ice sheet model" type="" uid="d5b43d14-c78d-11e6-9b25-5404a60d96b5" vid="14277100-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="CALIPSO Ice Cloud Fraction" frequency="mon" label="clcalipsoice" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMonExtra]" provNote="" rowIndex="14" shuffle="0" stid="f7e0026a-562c-11e6-a2a4-ac72891c3257" title="CALIPSO ice cloud Fraction" type="" uid="b7c6dbe6-7c00-11e6-bcdf-ac72891c3257" vid="590eb9ec-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Sensible heat flux" frequency="day" label="hfss" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="up" prov="LS3MIP [LEday]" provNote="" rowIndex="11" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Upward Sensible Heat Flux" type="real" uid="d2278996-4a9f-11e6-b84e-ac72891c3257" vid="a13ed886b17e20cdae8b89b9ff8e4610"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Surface Temperature" frequency="3hr" label="ts" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="42" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Temperature" type="real" uid="7b309c62-a220-11e6-a33f-ac72891c3257" vid="90c49fce92dc1f21647dad07d1342843"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="6hr" label="zg1000" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="DCPP [DCPP-6hr]" provNote="" rowIndex="6" shuffle="" stid="f7ec293c-562c-11e6-a2a4-ac72891c3257" title="Geopotential Height at 1000 hPa" type="float" uid="8b920734-4a5b-11e6-9cd2-ac72891c3257" vid="a36df015f59d91b021f2534321986440"/>
<item defaultPriority="1" deflate="" deflate_level="" description="surface, now requesting daily output." frequency="day" label="tauv" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="down" prov="DynVar [DYVR_daily_c]" provNote="" rowIndex="18" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Northward Wind Stress" type="real" uid="8b981340-4a5b-11e6-9cd2-ac72891c3257" vid="bd10cebbde1593b65e5220911f9a997c"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="plev_7" frequency="6hr" label="wbptemp7h" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_extr_dr]" provNote="" rowIndex="28" shuffle="0" stid="f7eb125e-562c-11e6-a2a4-ac72891c3257" title="wet_bulb_potential_temperature" type="" uid="711ce354-faa7-11e6-bfb7-ac72891c3257" vid="5917b704-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Sea level pressure" frequency="3hr" label="psl" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="HighResMIP [3hr_extr]" provNote="" rowIndex="15" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Sea Level Pressure" type="real" uid="8bae83b4-4a5b-11e6-9cd2-ac72891c3257" vid="3d23c359f44d6a153c4dcab9e07d7cb6"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="outgoing LW radiation at TOA" frequency="1hr" label="rlut" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="up" prov="HighResMIP [1hr_strat]" provNote="" rowIndex="21" shuffle="0" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="TOA Outgoing Longwave Radiatio" type="" uid="8bb119f8-4a5b-11e6-9cd2-ac72891c3257" vid="63345d9732c72b97ca395f24ce2d6642"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="pppico" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="42" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Net Primary Mole Productivity of Carbon by Picophytoplankton" type="real" uid="e708b11a-aa7f-11e6-9a4a-5404a60d96b5" vid="e527532a-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Convective Condensed Water Path" frequency="mon" label="clwvic" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_conv]" provNote="" rowIndex="23" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Convective Condensed Water Path" type="" uid="7b064354-a220-11e6-a33f-ac72891c3257" vid="590ef7b8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="over Land Ice//quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only. Needed to analyse the impact of downscaling methods" frequency="mon" label="prra" mipTable="ImonAnt" modeling_realm="atmos" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="12" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Rainfall Flux where Ice Free Ocean over Sea over Land Ice" type="real" uid="d5b3136c-c78d-11e6-9b25-5404a60d96b5" vid="5912cab4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="sisali" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="27" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Sea ice salinity" type="" uid="7113f7b2-faa7-11e6-bfb7-ac72891c3257" vid="5913e674-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fDeforest" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="21" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Deforested biomass as a result of anthropogenic land use change" type="" uid="6f6a9ad8-9acb-11e6-b7ee-ac72891c3257" vid="59131f28-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="nVeg" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="38" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Nitrogen Mass in Vegetation" type="" uid="6f6b0478-9acb-11e6-b7ee-ac72891c3257" vid="59176128-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="rsutcsafbnd" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="13" shuffle="0" stid="63c22a14-15f2-11e7-87e0-5404a60d96b5" title="TOA Outgoing Clear-Sky, Aerosol-Free Shortwave Radiation in Bands" type="" uid="916b7796-267c-11e7-8933-ac72891c3257" vid="3819950e-a0dc-11e6-bc63-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="siflsensupbot" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="56" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Net sensible heat flux under sea ice" type="" uid="711fa92c-faa7-11e6-bfb7-ac72891c3257" vid="590ef524-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="(in OImon, snd was volume per entire cell area)" frequency="mon" label="sisnthick" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="11" shuffle="0" stid="f7ed9114-562c-11e6-a2a4-ac72891c3257" title="Snow thickness" type="" uid="714eec6e-faa7-11e6-bfb7-ac72891c3257" vid="5913c266-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nLeaf" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="72" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Nitrogen Mass in Leaves" type="" uid="8b81f60a-4a5b-11e6-9cd2-ac72891c3257" vid="591397be-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="reffclwc" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMon_3dstd_new]" provNote="" rowIndex="15" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Hydrometeor Effective Radius of Convective Cloud Liquid Water" type="real" uid="8b89e3a6-4a5b-11e6-9cd2-ac72891c3257" vid="7aa8f285b17a5bcfce416f19c29d6d72"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="CALIPSO Liquid Cloud Fraction" frequency="mon" label="clcalipsoliq" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMonExtra]" provNote="" rowIndex="13" shuffle="0" stid="f7e0026a-562c-11e6-a2a4-ac72891c3257" title="CALIPSO liquid cloud Fraction" type="" uid="8b8a7686-4a5b-11e6-9cd2-ac72891c3257" vid="590f43f8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="day" label="utendnogw" mipTable="emDayZ" modeling_realm="atmos" mtid="MIPtable::emDayZ" positive="" prov="DynVar [DYVR_daily_b]" provNote="" rowIndex="11" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="u-tendency nonorographic gravity wave drag" type="" uid="8b97efc8-4a5b-11e6-9cd2-ac72891c3257" vid="590e85a8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only. Needed to analyse the impact of downscaling methods" frequency="mon" label="litemptop" mipTable="ImonAnt" modeling_realm="landIce" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="7" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Temperature at top of ice sheet model" type="" uid="d5b2ff9e-c78d-11e6-9b25-5404a60d96b5" vid="14277100-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sidmassth" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="34" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="sea-ice mass change from thermodynamics" type="" uid="7127bce8-faa7-11e6-bfb7-ac72891c3257" vid="590d95d0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="siforceintstrx" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="78" shuffle="0" stid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5" title="Internal stress term in force balance (x-component)" type="" uid="7147c57e-faa7-11e6-bfb7-ac72891c3257" vid="590df8a4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sidmasssi" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="38" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="sea-ice mass change through snow-to-ice conversion" type="" uid="714ef880-faa7-11e6-bfb7-ac72891c3257" vid="590d3518-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fFireNat" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="22" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to CO2 Emission from natural Fire" type="" uid="8b808d56-4a5b-11e6-9cd2-ac72891c3257" vid="590f58de-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="MODIS Ice Cloud Fraction" frequency="mon" label="climodis" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMonExtra]" provNote="" rowIndex="11" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="MODIS Ice Cloud Area Percentage" type="" uid="8b8a6c2c-4a5b-11e6-9cd2-ac72891c3257" vid="5914308e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="vt" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="25" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="air_temperature_times_northward_wind" type="" uid="8baf5c26-4a5b-11e6-9cd2-ac72891c3257" vid="5914668a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="Model levels or plev_27" frequency="1hr" label="ua27" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_strat]" provNote="" rowIndex="13" shuffle="0" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind" type="" uid="8bb0f00e-4a5b-11e6-9cd2-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nppShrub" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="56" shuffle="0" stid="fa243638-267c-11e7-9bed-ac72891c3257" title="net primary production on Shrub tiles" type="" uid="e70772c8-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0f052-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="albdiffbnd" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="4" shuffle="0" stid="63c22a14-15f2-11e7-87e0-5404a60d96b5" title="Diffuse surface albedo for each band" type="" uid="7b301206-a220-11e6-a33f-ac72891c3257" vid="59139cfa-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fNloss" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="34" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total N lost (including NHx, NOx, N2O, N2 and leaching)" type="" uid="8b80d0cc-4a5b-11e6-9cd2-ac72891c3257" vid="591478be-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Column-integrated water vapour" frequency="3hr" label="prw" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="" prov="HighResMIP [3hr_cloud]" provNote="" rowIndex="19" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Water Vapor Path" type="real" uid="8bb0c1f6-4a5b-11e6-9cd2-ac72891c3257" vid="fc637f1c75e58be8a6e4112411a00f36"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="6hr" label="prhmax" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="DCPP [DCPP-6hr]" provNote="" rowIndex="50" shuffle="0" stid="b639160c-c69e-11e6-9990-ac72891c3257" title="Maximum Hourly Precipitation Rate" type="" uid="9104b268-267c-11e7-8933-ac72891c3257" vid="7553003ead183dd3276108b6311a337f"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="rlusIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="27" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Upwelling Longwave Radiation" type="" uid="81212d26-bf17-11e6-b0d8-ac72891c3257" vid="538287c2-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over grounded ice sheet" frequency="mon" label="litempbotgr" mipTable="ImonGre" modeling_realm="landIce" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="8" shuffle="0" stid="943b69e8-8b06-11e6-94d1-5404a60d96b5" title="Basal temperature of grounded ice sheet" type="" uid="d5b28ce4-c78d-11e6-9b25-5404a60d96b5" vid="4144a01c-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="yr" label="yvelsurf" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="21" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Y-component of land ice surface velocity" type="" uid="d5b3d7de-c78d-11e6-9b25-5404a60d96b5" vid="1427806e-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="soot_content_of_surface_snow" frequency="day" label="sootsn" mipTable="emDay" modeling_realm="landIce land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="52" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Snow Soot Content" type="real" uid="d228d418-4a9f-11e6-b84e-ac72891c3257" vid="d421b6923b396998106a8c1c66ea07f1"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="(in OImon, sim included snow and sea ice mass)" frequency="mon" label="simass" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="6" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Sea-ice mass per area" type="" uid="714b603a-faa7-11e6-bfb7-ac72891c3257" vid="5917184e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="sitimefrac" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="4" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Fraction of time steps with sea ice" type="" uid="714344cc-faa7-11e6-bfb7-ac72891c3257" vid="590e8b2a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="clwvic" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [cfDay_2d_new]" provNote="" rowIndex="30" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Convective Condensed Water Path" type="" uid="8b8a33ce-4a5b-11e6-9cd2-ac72891c3257" vid="590ef7b8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="conccn" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [aeroDay_2d]" provNote="" rowIndex="20" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Aerosol Number Concentration" type="" uid="7d8c4ece-1ab7-11e7-8dfc-5404a60d96b5" vid="70b0b8239a6ffb48b4a4f3086da12150"/>
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<item defaultPriority="2" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="mon" label="tntnogw" mipTable="emMonZ" modeling_realm="atmos" mtid="MIPtable::emMonZ" positive="" prov="DynVar [DYVR_monthly_c]" provNote="" rowIndex="21" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="temperature tendency nonorographic gravity wave dissipation" type="" uid="8b978b96-4a5b-11e6-9cd2-ac72891c3257" vid="5913e8ea-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="osaltdiff" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="61" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water salinity expressed as salt content due to parameterized dianeutral mixing" type="real" uid="8b9e3766-4a5b-11e6-9cd2-ac72891c3257" vid="a41ce7d71eb9622c88b8f18438cbe36c"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="lifmassbf" mipTable="ImonGre" modeling_realm="landIce" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="29" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Land ice vertical front mass balance flux" type="" uid="d5b2dbcc-c78d-11e6-9b25-5404a60d96b5" vid="59130394-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="sedustCI" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="19" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Sedimentation Flux of dust mode coarse insoluble" type="" uid="6f6bf7ac-9acb-11e6-b7ee-ac72891c3257" vid="5917c046-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="rhSoil" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="51" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Heterotrophic Respiration from Soil on Land" type="" uid="8b81bfe6-4a5b-11e6-9cd2-ac72891c3257" vid="590f3674-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="loadnh4" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [aeroDay_2d]" provNote="" rowIndex="12" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Load of NH4" type="" uid="8b8b23ba-4a5b-11e6-9cd2-ac72891c3257" vid="56a47cf7cfc55a6e7e2cd20570ca58d2"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="ccldncl" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [aeroDay_2d]" provNote="" rowIndex="16" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Cloud Droplet Number Concentration of Convective Cloud Tops" type="" uid="8b8b3ecc-4a5b-11e6-9cd2-ac72891c3257" vid="59137996-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="grassFracC4" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="11" shuffle="0" stid="fa261548-267c-11e7-9bed-ac72891c3257" title="C4 grass Area Percentage" type="" uid="8b814cc8-4a5b-11e6-9cd2-ac72891c3257" vid="590dc37a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="snicem" mipTable="ImonGre" modeling_realm="landIce" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="14" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Surface snow and ice melt flux" type="" uid="d5b2a454-c78d-11e6-9b25-5404a60d96b5" vid="5912a516-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="surface_snow_melt_flux_into_soil_layer" frequency="day" label="snmsl" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="24" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Water flowing out of snowpack" type="" uid="d2285222-4a9f-11e6-b84e-ac72891c3257" vid="5914be8c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sialb" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="20" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Sea-ice or snow albedo" type="" uid="7149fb1e-faa7-11e6-bfb7-ac72891c3257" vid="59174fb2-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="tomint" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="DAMIP [DAMIP_Omon_p2]" provNote="" rowIndex="31" shuffle="0" stid="f7ddef0c-562c-11e6-a2a4-ac72891c3257" title="integral wrt depth of product of sea water density and prognostic temperature" type="" uid="6ee2ae5e-b8b0-11e6-bb33-ac72891c3257" vid="93aa8484bd5399920b19acc9f208f664"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="H2p" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="8" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="2H in total precipitation" type="" uid="6f68b074-9acb-11e6-b7ee-ac72891c3257" vid="590e105a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="swsrfasdust" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="25" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="All-sky Surface Shortwave radiative flux due to Dust" type="" uid="6f6c125a-9acb-11e6-b7ee-ac72891c3257" vid="590f465a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="hurs" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="VIACSAB [viacsabExtra]" provNote="" rowIndex="15" shuffle="" stid="f7e1ef26-562c-11e6-a2a4-ac72891c3257" title="Near-Surface Relative Humidity" type="real" uid="917b8532-267c-11e7-8933-ac72891c3257" vid="c75f684ec69602e9de82b48e53afb2cc"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Heat transferred to snowpack by rainfall" frequency="day" label="hfrs" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="19" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Heat transferred to snowpack by rainfall" type="" uid="d227a58e-4a9f-11e6-b84e-ac72891c3257" vid="5913462e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="convective_snowfall_flux" frequency="day" label="prsnc" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="8" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Convective Snowfall Flux" type="real" uid="d2280a56-4a9f-11e6-b84e-ac72891c3257" vid="27b742af91660071179e5440d83ddc37"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="change_over_time_in_groundwater" frequency="day" label="dgw" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="32" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Change in Groundwater" type="" uid="d2287694-4a9f-11e6-b84e-ac72891c3257" vid="59148822-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="age_of_surface_snow" frequency="day" label="agesno" mipTable="emDay" modeling_realm="landIce land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="51" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Snow Age" type="real" uid="d228d008-4a9f-11e6-b84e-ac72891c3257" vid="51e0588121783d77407236e0d2eb5d14"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="subhr" label="rsut" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="up" prov="HighResMIP [1ts]" provNote="" rowIndex="22" shuffle="0" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Top-of-Atmosphere Outgoing Shortwave Radiation" type="" uid="8bb18852-4a5b-11e6-9cd2-ac72891c3257" vid="b907fef85d4c9571a9457ee1b259bb8f"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="rsdsdiff" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [aeroDay_2d]" provNote="" rowIndex="23" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Diffuse Downwelling Shortwave Radiation" type="real" uid="7d8c633c-1ab7-11e7-8dfc-5404a60d96b5" vid="f27656eeae247192e82aa1032c911399"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over ice sheet only, to avoid contamination from other surfaces (eg: permafrost)" frequency="yr" label="acabf" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="11" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Surface Mass Balance flux" type="" uid="d5b3b1aa-c78d-11e6-9b25-5404a60d96b5" vid="59147580-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="Greenland" frequency="yr" label="tendlicalvf" mipTable="IyrGre" modeling_realm="atmos" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="36" shuffle="0" stid="b0ec4e62-a42a-11e6-bfbb-ac72891c3257" title="Total calving flux" type="" uid="d5b4179e-c78d-11e6-9b25-5404a60d96b5" vid="41469f3e-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fluxes are requested at all levels" frequency="fx" label="rsu" mipTable="emFx" modeling_realm="atmos" mtid="MIPtable::emFx" positive="up" prov="RFMIP [OfflineRad]" provNote="" rowIndex="5" shuffle="" stid="70421648-f2a0-11e6-9a05-5404a60d96b5" title="Upwelling Shortwave Radiation" type="real" uid="d23b4990-4a9f-11e6-b84e-ac72891c3257" vid="c323f38340e4846931ad4891232d839d"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="mrsol" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="8" shuffle="0" stid="f7ed82f0-562c-11e6-a2a4-ac72891c3257" title="Total water content of soil layer" type="" uid="8b803cac-4a5b-11e6-9cd2-ac72891c3257" vid="591389b8-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="va27" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_diag]" provNote="" rowIndex="18" shuffle="0" stid="f7ea1f3e-562c-11e6-a2a4-ac72891c3257" title="Northward Wind" type="" uid="8bafe24a-4a5b-11e6-9cd2-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="requested for all Emissions-driven runs" frequency="mon" label="co23D" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Atm]" provNote="" rowIndex="5" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="3D field of transported CO2" type="" uid="e705484a-aa7f-11e6-9a4a-5404a60d96b5" vid="712473d6-c7b6-11e6-bb2a-ac72891c3257"/>
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<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="ocontempdiff" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="55" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water conservative temperature expressed as heat content due to parameterized dianeutral mixing" type="real" uid="8b9e1bbe-4a5b-11e6-9cd2-ac72891c3257" vid="c4b3f6005f73f2fc2d0e348fdff3c2bc"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="surface_runoff_flux" frequency="day" label="mrros" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="20" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Runoff" type="real" uid="d2284048-4a9f-11e6-b84e-ac72891c3257" vid="26a31ad76858198bd4d719aafeebe801"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="clivic" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [cfDay_2d_new]" provNote="" rowIndex="31" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Convective Ice Water Path" type="" uid="8b8a3932-4a5b-11e6-9cd2-ac72891c3257" vid="59150acc-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="day" label="vtem" mipTable="emDayZ" modeling_realm="atmos" mtid="MIPtable::emDayZ" positive="" prov="DynVar [DYVR_daily_a]" provNote="" rowIndex="4" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Transformed Eulerian Mean northward wind" type="" uid="8b97d150-4a5b-11e6-9cd2-ac72891c3257" vid="ba7be4134a9cf4838434bf204d80b903"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Sea level pressure" frequency="3hr" label="psl" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="" prov="HighResMIP [3hr_cloud]" provNote="" rowIndex="22" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Sea Level Pressure" type="real" uid="8bb0d1c8-4a5b-11e6-9cd2-ac72891c3257" vid="3d23c359f44d6a153c4dcab9e07d7cb6"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="ocontemprmadvect" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="51" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water conservative temperature expressed as heat content due to residual mean (sum of Eulerian + parameterized) advection" type="real" uid="8b9e0886-4a5b-11e6-9cd2-ac72891c3257" vid="479c5de8-12cc-11e6-b2bc-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="osaltpmdiff" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="59" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water salinity expressed as salt content due to parameterized mesoscale diffusion" type="real" uid="8b9e2e4c-4a5b-11e6-9cd2-ac72891c3257" vid="02e08dbdee260db0debd5685cb62934f"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="litemptopIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="7" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Temperature at top of ice sheet model" type="" uid="8120ca5c-bf17-11e6-b0d8-ac72891c3257" vid="538248ca-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="orog" mipTable="ImonGre" modeling_realm="land" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="30" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Surface Altitude" type="real" uid="d5b2df64-c78d-11e6-9b25-5404a60d96b5" vid="00e77372e8b909d9a827a0790e991fd9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="quantity averaged over ice sheet  only, to avoid contamination from other surfaces (eg: permafrost)" frequency="yr" label="snc" mipTable="IyrGre" modeling_realm="landIce land" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="16" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="snow cover fraction" type="float" uid="d5b3c500-c78d-11e6-9b25-5404a60d96b5" vid="e53e97d7e904fe67aa54b721b3c6a290"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="yr" label="xvelmean" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="26" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="X-component of land ice vertical mean velocity" type="" uid="d5b3ea3a-c78d-11e6-9b25-5404a60d96b5" vid="14277e02-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="cLand" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="20" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Total Carbon in All Terrestrial Carbon Pools" type="" uid="8b7eded4-4a5b-11e6-9cd2-ac72891c3257" vid="5917aa7a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Flux across 4 straits" frequency="mon" label="siareaacrossline" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="91" shuffle="0" stid="e9fa5c14-c1ce-11e6-8067-ac72891c3257" title="Sea ice area flux through straits" type="" uid="712442ca-faa7-11e6-bfb7-ac72891c3257" vid="73097b4c-7a68-11e6-8db2-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sidivvel" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="82" shuffle="0" stid="f7ec3940-562c-11e6-a2a4-ac72891c3257" title="Divergence of the sea-ice velocity field" type="" uid="71436966-faa7-11e6-bfb7-ac72891c3257" vid="590d7924-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Antarctica" frequency="yr" label="limnsw" mipTable="IyrAnt" modeling_realm="atmos" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="31" shuffle="0" stid="884b287a-a3fd-11e6-bfbb-ac72891c3257" title="Ice sheet mass that does not displace sea water" type="" uid="d5b4962e-c78d-11e6-9b25-5404a60d96b5" vid="590f019a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="gppc14" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="44" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Mass Flux of 14C out of Atmosphere due to Gross Primary Production on Land" type="" uid="8b7f7826-4a5b-11e6-9cd2-ac72891c3257" vid="590f95c4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="prCrop" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="VIACSAB [viacsabExtra]" provNote="" rowIndex="10" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Precipitation over Crop Tile" type="" uid="124a1b8a-c14f-11e6-bb78-ac72891c3257" vid="81f029ba-b63d-11e6-98cb-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="6hr" label="bldep" mipTable="6hrPlev" modeling_realm="aerosol" mtid="MIPtable::6hrPlev" positive="" prov="VIACSAB [viacsabExtra]" provNote="" rowIndex="16" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Boundary Layer Depth" type="float" uid="917b897e-267c-11e7-8933-ac72891c3257" vid="590e3c7e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="rac14" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Hist]" provNote="" rowIndex="13" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Mass Flux of 14C into Atmosphere due to Autotrophic (Plant) Respiration on Land" type="" uid="6f6b2c96-9acb-11e6-b7ee-ac72891c3257" vid="5914517c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fCLandToOcean" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="18" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Lateral transfer of carbon out of gridcell that eventually goes into ocean" type="" uid="8b807604-4a5b-11e6-9cd2-ac72891c3257" vid="590ddf9a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fNLandToOcean" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="41" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Lateral transfer of nitrogen out of gridcell that eventually goes into ocean" type="" uid="8b80f0de-4a5b-11e6-9cd2-ac72891c3257" vid="59151c42-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="1hrClimMon" label="rsut" mipTable="em1hrclimmon" modeling_realm="atmos" mtid="MIPtable::em1hrclimmon" positive="up" prov="CFMIP [cf1hrClimMon]" provNote="" rowIndex="5" shuffle="0" stid="f7ebefee-562c-11e6-a2a4-ac72891c3257" title="Top-of-Atmosphere Outgoing Shortwave Radiation" type="" uid="8b8b4e80-4a5b-11e6-9cd2-ac72891c3257" vid="b907fef85d4c9571a9457ee1b259bb8f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Sea level pressure" frequency="1hr" label="psl" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_strat]" provNote="" rowIndex="22" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Sea Level Pressure" type="real" uid="8bb11ef8-4a5b-11e6-9cd2-ac72891c3257" vid="3d23c359f44d6a153c4dcab9e07d7cb6"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="ppmisc" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="43" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Net Primary Organic Carbon Production by Other Phytoplankton" type="real" uid="e708b584-aa7f-11e6-9a4a-5404a60d96b5" vid="e5278b06-dd83-11e5-9194-ac72891c3257"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="fddtalk" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="59" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Total Alkalinity" type="real" uid="e708fefe-aa7f-11e6-9a4a-5404a60d96b5" vid="3e0c9853afc682db9a950cc5bc3c1c3a"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="zg7h" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="CORDEX [cx_6hr]" provNote="" rowIndex="27" shuffle="" stid="f7eb125e-562c-11e6-a2a4-ac72891c3257" title="Geopotential Height" type="float" uid="7d943832-1ab7-11e7-8dfc-5404a60d96b5" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="ts" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="DAMIP [DAMIP_day]" provNote="" rowIndex="47" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Temperature" type="real" uid="8b8fc3de-4a5b-11e6-9cd2-ac72891c3257" vid="90c49fce92dc1f21647dad07d1342843"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="prsnIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="9" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Snowfall Flux" type="" uid="8120d4f2-bf17-11e6-b0d8-ac72891c3257" vid="53825248-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="siflswdtop" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="49" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Downwelling shortwave flux over sea ice" type="" uid="713bf6d6-faa7-11e6-bfb7-ac72891c3257" vid="590f2f8a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only. Needed to analyse the impact of downscaling methods" frequency="mon" label="prsn" mipTable="ImonAnt" modeling_realm="atmos" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="11" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Snowfall Flux" type="real" uid="d5b30fc0-c78d-11e6-9b25-5404a60d96b5" vid="051919eddec810e292c883205c944ceb"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="This is needed in case bed rock elevation changes in time" frequency="yr" label="topg" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="7" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Bedrock Altitude" type="" uid="d5b3a232-c78d-11e6-9b25-5404a60d96b5" vid="59148cf0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="mass_fraction_of_frozen_water_in_soil_layer" frequency="day" label="mrfsofr" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="46" shuffle="0" stid="f7ed82f0-562c-11e6-a2a4-ac72891c3257" title="Average layer fraction of frozen moisture" type="" uid="d228b96a-4a9f-11e6-b84e-ac72891c3257" vid="59174094-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="change_over_time_in_surface_water_amount" frequency="day" label="dsw" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="30" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Change in Surface Water Storage" type="" uid="d2286d84-4a9f-11e6-b84e-ac72891c3257" vid="590f182e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="tslsiLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="12" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="surface 'skin' temperature on land use tile" type="" uid="d22db4d8-4a9f-11e6-b84e-ac72891c3257" vid="590e417e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="laiLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="19" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="Leaf Area Index on Land Use Tile" type="" uid="d22dd6ac-4a9f-11e6-b84e-ac72891c3257" vid="590f8d36-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nLitterCwd" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="76" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Nitrogen Mass in Coarse Woody Debris" type="" uid="8b820b04-4a5b-11e6-9cd2-ac72891c3257" vid="5914de26-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Eastward integrated moisture transport" frequency="mon" label="uqint" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_ext]" provNote="" rowIndex="13" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="integrated_eastward_wind_times_humidity" type="" uid="8badd2a2-4a5b-11e6-9cd2-ac72891c3257" vid="59177dc0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Convective precipitation flux" frequency="1hr" label="prc" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hrLev]" provNote="" rowIndex="14" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Convective Precipitation" type="real" uid="8baec3f6-4a5b-11e6-9cd2-ac72891c3257" vid="aa2bea81f238ad8f2c35a7e16ad97801"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="sconcdust" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="GeoMIP [aeroGeo]" provNote="" rowIndex="21" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Concentration of Dust" type="" uid="6f371046-9acb-11e6-b7ee-ac72891c3257" vid="1ca290c839426f31f70a0d2862e1c611"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over grounded ice sheet" frequency="mon" label="libmassbfgr" mipTable="ImonGre" modeling_realm="landIce" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="26" shuffle="0" stid="943b69e8-8b06-11e6-94d1-5404a60d96b5" title="Basal specific mass balance flux of grounded ice sheet" type="" uid="d5b2d06e-c78d-11e6-9b25-5404a60d96b5" vid="4145ad04-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="icem" mipTable="ImonAnt" modeling_realm="landIce" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="16" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Surface ice melt flux" type="" uid="d5b322ee-c78d-11e6-9b25-5404a60d96b5" vid="590e1c1c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="fx" label="topg" mipTable="IfxGre" modeling_realm="landIce" mtid="MIPtable::IfxGre" positive="" prov="ISMIP6 [IfxGre]" provNote="" rowIndex="5" shuffle="0" stid="9439f414-8b06-11e6-94d1-5404a60d96b5" title="Bedrock Altitude" type="" uid="d5b366a0-c78d-11e6-9b25-5404a60d96b5" vid="59148cf0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="yr" label="hfgeoubed" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="29" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Geothermal Heat flux beneath land ice" type="" uid="d5b3f53e-c78d-11e6-9b25-5404a60d96b5" vid="5914a1ea-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="O17s" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="11" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="17O in solid precipitation" type="" uid="6f68c1fe-9acb-11e6-b7ee-ac72891c3257" vid="591401a4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="loaddust" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="28" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Load of Dust" type="" uid="6d5b0b84-a39e-11e6-8a8c-ac72891c3257" vid="c23a39645d860d5a2d7f34ea91d1fd82"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="ua200" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="PMIP [PMIP-day-02]" provNote="" rowIndex="10" shuffle="0" stid="f7ed42fe-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind at 200hPa" type="" uid="6f6c4ca2-9acb-11e6-b7ee-ac72891c3257" vid="df11ad28e457894085d760bdfb1cfc96"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="mrsfl" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="C4MIP [L_day]" provNote="" rowIndex="7" shuffle="0" stid="f7ed82f0-562c-11e6-a2a4-ac72891c3257" title="Frozen water content of soil layer" type="" uid="8b800566-4a5b-11e6-9cd2-ac72891c3257" vid="590d17f4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fNProduct" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="44" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Deforested or harvested biomass as a result of anthropogenic land use or change" type="" uid="8b81025e-4a5b-11e6-9cd2-ac72891c3257" vid="5913e3e0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="reffclws" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMon_3dstd_new]" provNote="" rowIndex="13" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Hydrometeor Effective Radius of Stratiform Cloud Liquid Water" type="real" uid="8b89d9a6-4a5b-11e6-9cd2-ac72891c3257" vid="ed2fff61c68d8a09d5034168e82ae862"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="co2s" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="DCPP [DCPP-mon]" provNote="" rowIndex="41" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Atmosphere CO2" type="" uid="8b925e1e-4a5b-11e6-9cd2-ac72891c3257" vid="591469b4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="day" label="psitem" mipTable="emDayZ" modeling_realm="atmos" mtid="MIPtable::emDayZ" positive="" prov="DynVar [DYVR_daily_b]" provNote="" rowIndex="12" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Transformed Eulerian Mean mass stramfunction" type="" uid="8b97f4be-4a5b-11e6-9cd2-ac72891c3257" vid="59137716-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="zg27" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_diag]" provNote="" rowIndex="19" shuffle="" stid="f7ea1f3e-562c-11e6-a2a4-ac72891c3257" title="Geopotential Height" type="float" uid="8bafe740-4a5b-11e6-9cd2-ac72891c3257" vid="28e774ec0ecd561a6a3d437e6c443a6b"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nppGrass" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="57" shuffle="0" stid="fa246dce-267c-11e7-9bed-ac72891c3257" title="net primary production on grass tiles" type="" uid="e70777e6-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0b8d0-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="rsdscsdiff" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [aeroDay_2d]" provNote="" rowIndex="24" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Diffuse Downwelling Clear Sky Shortwave Radiation" type="" uid="7d8c6a76-1ab7-11e7-8dfc-5404a60d96b5" vid="6ca9dd8a089b15fb96841e9fe56411cf"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Heating rate due to longwave radiative flux" frequency="mon" label="tntrs27" mipTable="emMon" modeling_realm="aerosol" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_diag]" provNote="" rowIndex="15" shuffle="" stid="f7ea1f3e-562c-11e6-a2a4-ac72891c3257" title="Shortwave heating rate" type="float" uid="8bafd07a-4a5b-11e6-9cd2-ac72891c3257" vid="59173c0c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="6hr" label="snw" mipTable="6hrPlevpt" modeling_realm="landIce land" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="32" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Snow Amount" type="real" uid="8bb08740-4a5b-11e6-9cd2-ac72891c3257" vid="0e1704f8fbacbe223946d84392b8064e"/>
<item defaultPriority="2" deflate="" deflate_level="" description="TOA incident shortwave radiation" frequency="3hr" label="rsdt" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="down" prov="HighResMIP [3hr_cloud]" provNote="" rowIndex="18" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="TOA Incident Shortwave Radiation" type="real" uid="8bb0bd0a-4a5b-11e6-9cd2-ac72891c3257" vid="a21e250a10f96b1c1ad6d742206a157e"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Near surace northward wind" frequency="6hr" label="vas" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_extr]" provNote="" rowIndex="15" shuffle="" stid="f7dfb7b0-562c-11e6-a2a4-ac72891c3257" title="Northward Near-Surface Wind" type="real" uid="9137adb2-267c-11e7-8933-ac72891c3257" vid="86b1cd51f370e346ecb20f1e80cb6ea4"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="subhr" label="tas" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="HighResMIP [1ts]" provNote="" rowIndex="15" shuffle="" stid="f7e8b996-562c-11e6-a2a4-ac72891c3257" title="Surface Air Temperature" type="float" uid="8bb166b0-4a5b-11e6-9cd2-ac72891c3257" vid="5c4978e802ba55d5a298cf1b3bdc2b3a"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="tsnIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="6" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Snow Internal Temperature" type="" uid="132b199a-be44-11e6-9e13-f9e3356200b3" vid="5382451e-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="icemIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="14" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Ice Melt Flux" type="" uid="8120ed7a-bf17-11e6-b0d8-ac72891c3257" vid="53826102-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="snicefreez" mipTable="ImonGre" modeling_realm="landIce" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="17" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Surface snow and ice refreeze flux" type="" uid="d5b2af3a-c78d-11e6-9b25-5404a60d96b5" vid="59150216-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="Greenland" frequency="yr" label="tendlibmassbf" mipTable="IyrGre" modeling_realm="atmos" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="35" shuffle="0" stid="b0ec4e62-a42a-11e6-bfbb-ac72891c3257" title="Total basal mass balance flux" type="" uid="d5b41370-c78d-11e6-9b25-5404a60d96b5" vid="414699d0-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sidmassmelttop" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="40" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="sea-ice mass change through surface melting" type="" uid="7124e0ea-faa7-11e6-bfb7-ac72891c3257" vid="59179aee-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Net Carbon Mass Flux into Atmosphere due to Land Use Change" frequency="mon" label="fLuc" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="up" prov="LS3MIP [LCmon]" provNote="" rowIndex="9" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Net Carbon Mass Flux into Atmosphere due to Land Use Change" type="real" uid="d229196e-4a9f-11e6-b84e-ac72891c3257" vid="2191e3410c3a2beedfec222f81f028b6"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="nLitter" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="29" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Nitrogen Mass in Litter Pool" type="" uid="6f6b0a36-9acb-11e6-b7ee-ac72891c3257" vid="590e70f4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="tntrscs" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMon_3dstd_new]" provNote="" rowIndex="7" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Clear Sky Shortwave Radiative Heating" type="" uid="8b89b84a-4a5b-11e6-9cd2-ac72891c3257" vid="5913d86e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CloudSat Radar Reflectivity CFAD" frequency="3hr" label="cfadDbze94" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="CFMIP [cf3hr_sim_new]" provNote="" rowIndex="6" shuffle="" stid="f7eb5dea-562c-11e6-a2a4-ac72891c3257" title="CloudSat Radar Reflectivity" type="real" uid="8b8aaa70-4a5b-11e6-9cd2-ac72891c3257" vid="5a6730cdd3fef77dc53ea1f61b23821f"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="mon" label="oxprod" mipTable="emMonZ" modeling_realm="atmosChem" mtid="MIPtable::emMonZ" positive="" prov="DAMIP [DAMIP_Amon_new]" provNote="" rowIndex="6" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="total Ox production rate" type="" uid="8b8f0372-4a5b-11e6-9cd2-ac72891c3257" vid="5917ff52-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="baresoilFrac" mipTable="emYr" modeling_realm="land" mtid="MIPtable::emYr" positive="" prov="DCPP [DCPP-year]" provNote="" rowIndex="62" shuffle="" stid="529d09d2-1ed7-11e7-9366-ac72891c3257" title="Bare Soil Fraction" type="real" uid="fb018658-be37-11e6-bac1-5404a60d96b5" vid="9cdb8d54d49e98acadd87e2a1139225e"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sistryubot" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="70" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Y-component of ocean stress on sea ice" type="" uid="7132e85c-faa7-11e6-bfb7-ac72891c3257" vid="59150da6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="ocontemppmdiff" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="53" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water conservative temperature expressed as heat content due to parameterized mesoscale diffusion" type="real" uid="8b9e11aa-4a5b-11e6-9cd2-ac72891c3257" vid="7c5c71f969a6318b3fa5ff2875272caf"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="rsdoabsorb" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="62" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="net rate of absorption of shortwave energy in ocean layer" type="real" uid="8b9e3c2a-4a5b-11e6-9cd2-ac72891c3257" vid="b2f82090-fbed-11e5-8f03-5404a60d96b5"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="6hr" label="mrsos" mipTable="6hrPlevpt" modeling_realm="land" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="29" shuffle="" stid="af258fa8-1e00-11e7-a625-5404a60d96b5" title="Moisture in Upper Portion of Soil Column" type="real" uid="9138e754-267c-11e7-8933-ac72891c3257" vid="40c091a01dc9db6d6d5901528c375ab3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Lower Tropospheric Stability" frequency="mon" label="lts" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="27" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="lower tropospheric stability" type="" uid="6f692202-9acb-11e6-b7ee-ac72891c3257" vid="e8092b698b834018e5b1aefde43926b4"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Aerosol Sulfate Mass Mixing Ratio" frequency="mon" label="mmraerso4" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="15" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Aerosol Sulfate Mass Mixing Ratio" type="" uid="6f6be5a0-9acb-11e6-b7ee-ac72891c3257" vid="e8926f985cc114531710e8e14a039f42"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="swsrfcsdust" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="24" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Clear-sky Surface Shortwave radiative flux due to Dust" type="" uid="6f6c0dd2-9acb-11e6-b7ee-ac72891c3257" vid="5917cf46-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="raLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="5" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="plant respiration on land use tile" type="" uid="d22d91a6-4a9f-11e6-b84e-ac72891c3257" vid="59140726-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="c14Soil" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Hist]" provNote="" rowIndex="6" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Mass of 14C in Soil Pool" type="" uid="8b7f5652-4a5b-11e6-9cd2-ac72891c3257" vid="5913d382-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="alevel site time1" frequency="subhr" label="tntrs" mipTable="emSubhr" modeling_realm="aerosol" mtid="MIPtable::emSubhr" positive="" prov="CFMIP [cfSites_new]" provNote="" rowIndex="18" shuffle="" stid="e4b02c9a-8946-11e6-a0c4-5404a60d96b5" title="Shortwave heating rate" type="float" uid="8b89f314-4a5b-11e6-9cd2-ac72891c3257" vid="59173c0c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CALIPSO Cloud Area Fraction" frequency="3hr" label="clcalipso" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="CFMIP [cf3hr_sim_new]" provNote="" rowIndex="4" shuffle="" stid="f7eb4436-562c-11e6-a2a4-ac72891c3257" title="CALIPSO Cloud Fraction" type="real" uid="8b8aa070-4a5b-11e6-9cd2-ac72891c3257" vid="400e5707b65c01e31f2ec6a59dd3983b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CALIPSO High Level Cloud Fraction " frequency="3hr" label="clhcalipso" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="CFMIP [cf3hr_sim_new]" provNote="" rowIndex="12" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="CALIPSO High Level Cloud Fraction" type="real" uid="8b8ac7d0-4a5b-11e6-9cd2-ac72891c3257" vid="7308096ae00ff52340909b2a59415f82"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fNfert" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="35" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="total N added for cropland fertilisation (artificial and manure)" type="" uid="e7067648-aa7f-11e6-9a4a-5404a60d96b5" vid="84f09af8-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="raTree" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="58" shuffle="0" stid="fa260328-267c-11e7-9bed-ac72891c3257" title="autotrophic respiration on tree tiles" type="" uid="e7077d0e-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0b5e2-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="fddtdic" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="54" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Net Dissolved Inorganic Carbon" type="real" uid="e708e93c-aa7f-11e6-9a4a-5404a60d96b5" vid="1333394a296e7f8af6c9bad15cb9778d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="uas" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="DCPP [DCPP-6hr]" provNote="" rowIndex="8" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" title="Eastward Near-Surface Wind" type="float" uid="91043e32-267c-11e7-8933-ac72891c3257" vid="e72b243a2a1c8691ab0168d8b62534c2"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="TOA outgoing clear sky shortwave" frequency="3hr" label="rsutcs" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="up" prov="HighResMIP [3hr_cloud]" provNote="" rowIndex="17" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="TOA Outgoing Clear-Sky Shortwave Radiation" type="" uid="8bb0b832-4a5b-11e6-9cd2-ac72891c3257" vid="12e0369ff0ba1a6f1a84e0d9565d4b07"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sftflf" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="20" shuffle="0" stid="f94de794-80ba-11e6-ab6e-5404a60d96b5" title="Floating Ice Shelf  Area Fraction" type="" uid="8bbb1a70-4a5b-11e6-9cd2-ac72891c3257" vid="590dbe0c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="day" label="tauu" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="down" prov="DCPP [DCPP-day]" provNote="" rowIndex="24" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Eastward Wind Stress" type="real" uid="8b980e9a-4a5b-11e6-9cd2-ac72891c3257" vid="3abb7c5b4c4650e9d17a8439004aebea"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="yr" label="vegFrac" mipTable="emYr" modeling_realm="" mtid="MIPtable::emYr" positive="" prov="DCPP [DCPP-year]" provNote="" rowIndex="61" shuffle="0" stid="52a0fe48-1ed7-11e7-9366-ac72891c3257" title="Total vegetated fraction" type="" uid="fb01828e-be37-11e6-bac1-5404a60d96b5" vid="590e75c2-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="opottemppsmadvect" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="48" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water potential temperature expressed as heat content due to parameterized submesoscale advection" type="real" uid="8b9df99a-4a5b-11e6-9cd2-ac72891c3257" vid="64c745ab7c8597bb0afed2bafd12c20c"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="subhr" label="va" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="HighResMIP [1ts]" provNote="" rowIndex="18" shuffle="0" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Northward Wind" type="" uid="8bb17524-4a5b-11e6-9cd2-ac72891c3257" vid="2dedcb347c18e132a2f4d625abf94585"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="sncIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="17" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Snow Cover Percentage" type="" uid="132b3e66-be44-11e6-9e13-f9e3356200b3" vid="53826ae4-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rsds" mipTable="ImonGre" modeling_realm="atmos" mtid="MIPtable::ImonGre" positive="down" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="21" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Surface Downwelling Shortwave Radiation" type="real" uid="d5b2bdc2-c78d-11e6-9b25-5404a60d96b5" vid="6e7b9f984d3bba15daccaaa18039a85d"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="sbl" mipTable="ImonAnt" modeling_realm="landIce" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="13" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Surface Snow and Ice Sublimation Flux" type="real" uid="d5b31722-c78d-11e6-9b25-5404a60d96b5" vid="3a8e1636a31c82fbdd9a1ae45ab3be7d"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sidmasslat" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="42" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Lateral sea ice melt rate" type="" uid="7124ed7e-faa7-11e6-bfb7-ac72891c3257" vid="590ea5c4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only. Needed to analyse the impact of downscaling methods" frequency="mon" label="tsn" mipTable="ImonAnt" modeling_realm="landIce land" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="6" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Snow Internal Temperature" type="real" uid="d5b2fb8e-c78d-11e6-9b25-5404a60d96b5" vid="15fd6126b9fb057118c71df94403e30c"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="snicem" mipTable="ImonAnt" modeling_realm="landIce" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="14" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Surface snow and ice melt flux" type="" uid="d5b31b3c-c78d-11e6-9b25-5404a60d96b5" vid="5912a516-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="fx" label="lithk" mipTable="IfxGre" modeling_realm="landIce" mtid="MIPtable::IfxGre" positive="" prov="ISMIP6 [IfxGre]" provNote="" rowIndex="6" shuffle="0" stid="9439f414-8b06-11e6-94d1-5404a60d96b5" title="Ice Sheet Thickness" type="" uid="d5b36a2e-c78d-11e6-9b25-5404a60d96b5" vid="59176b14-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Carbon Mass in Other Living Compartments on Land" frequency="mon" label="cMisc" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LS3MIP [LCmon]" provNote="" rowIndex="17" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Other Living Compartments on Land" type="real" uid="d2293d68-4a9f-11e6-b84e-ac72891c3257" vid="f3532407075647328e7da9c24f00193d"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="cOther" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="19" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Vegetation Components other than Leaves, Stems and Roots" type="" uid="8b816d2a-4a5b-11e6-9cd2-ac72891c3257" vid="5914b748-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="sfcWind" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="DCPP [DCPP-6hr]" provNote="" rowIndex="9" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" title="Near-Surface Wind Speed" type="real" uid="910442b0-267c-11e7-8933-ac72891c3257" vid="4b97609a32d53dff5b8e73729e4f258b"/>
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<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="siflswutop" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="50" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Upward shortwave flux over sea ice" type="" uid="710ad164-faa7-11e6-bfb7-ac72891c3257" vid="5917e51c-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nOther" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="75" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Nitrogen mass in vegetation components other than leaves, stem and root" type="" uid="8b8205b4-4a5b-11e6-9cd2-ac72891c3257" vid="5917cc94-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Omega (=dp/dt)" frequency="3hr" label="wap7h" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="HighResMIP [3hrPlev]" provNote="" rowIndex="15" shuffle="" stid="f7eb125e-562c-11e6-a2a4-ac72891c3257" title="omega (=dp/dt)" type="real" uid="8baea574-4a5b-11e6-9cd2-ac72891c3257" vid="51fb29dd55442361fa9c5dbe23aca9c6"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="treeFracBdlDcd" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="9" shuffle="0" stid="f2edb934-26b8-11e7-8344-ac72891c3257" title="Broadleaf deciduous tree fraction" type="" uid="6f6a70da-9acb-11e6-b7ee-ac72891c3257" vid="5914ccba-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="simprefrozen" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="24" shuffle="0" stid="c2cc3578-19f2-11e7-bdec-ac72891c3257" title="Thickness of Refrozen Ice on Melt Pond" type="" uid="711b6ea2-faa7-11e6-bfb7-ac72891c3257" vid="591523cc-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Heating rate due to shortwave radiative flux" frequency="mon" label="tntrl27" mipTable="emMon" modeling_realm="aerosol" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_diag]" provNote="" rowIndex="14" shuffle="" stid="f7ea1f3e-562c-11e6-a2a4-ac72891c3257" title="Longwave heating rate" type="float" uid="8bafcad0-4a5b-11e6-9cd2-ac72891c3257" vid="5917483c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="TOA outgoing clear sky longwave" frequency="3hr" label="rlutcs" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="up" prov="HighResMIP [3hr_cloud]" provNote="" rowIndex="16" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="TOA Outgoing Clear-sky Longwave Radiation" type="" uid="8bb0b328-4a5b-11e6-9cd2-ac72891c3257" vid="921b8b8f6620826567d9324314c70410"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="6hr" label="tas" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="24" shuffle="" stid="f7e8b996-562c-11e6-a2a4-ac72891c3257" title="Surface Air Temperature" type="float" uid="9138d660-267c-11e7-8933-ac72891c3257" vid="5c4978e802ba55d5a298cf1b3bdc2b3a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hfls" mipTable="ImonGre" modeling_realm="atmos" mtid="MIPtable::ImonGre" positive="up" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="19" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Surface Upward Latent Heat Flux" type="real" uid="d5b2b688-c78d-11e6-9b25-5404a60d96b5" vid="95cbf6ac889c8fe7d92e20e8c34960d1"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="yr" label="yvelmean" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="27" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Y-component of land ice vertical mean velocity" type="" uid="d5b3ede6-c78d-11e6-9b25-5404a60d96b5" vid="14277916-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="od550aerso" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="7" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Stratospheric Optical depth at 550 nm (all aerosols) 2D-field (here we limit the computation of OD to the stratosphere only)" type="" uid="6f6bc35e-9acb-11e6-b7ee-ac72891c3257" vid="591720a0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="rsdscsaf" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="11" shuffle="0" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Downwelling Clear-Sky, Aerosol-Free Shortwave Radiation" type="" uid="916b703e-267c-11e7-8933-ac72891c3257" vid="590daf66-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="canopy_and_surface_and_subsurface_water_amount" frequency="day" label="tws" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="44" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Terrestrial Water Storage" type="" uid="d228ad76-4a9f-11e6-b84e-ac72891c3257" vid="590e219e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="hflsLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="14" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="latent heat flux on land use tile" type="" uid="d22dbe2e-4a9f-11e6-b84e-ac72891c3257" vid="590ee804-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Flux across 4 straits" frequency="mon" label="simassacrossline" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="90" shuffle="0" stid="e9fa5c14-c1ce-11e6-8067-ac72891c3257" title="Sea mass area flux through straits" type="" uid="7109b964-faa7-11e6-bfb7-ac72891c3257" vid="7309e7f8-7a68-11e6-8db2-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="hflsIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="22" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Upward Latent Heat Flux" type="" uid="812113d6-bf17-11e6-b0d8-ac72891c3257" vid="538279b2-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="over Land Ice//quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only. Needed to analyse the impact of downscaling methods" frequency="mon" label="prra" mipTable="ImonGre" modeling_realm="atmos" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="12" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Rainfall Flux where Ice Free Ocean over Sea over Land Ice" type="real" uid="d5b29cde-c78d-11e6-9b25-5404a60d96b5" vid="5912cab4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="lialb" mipTable="ImonAnt" modeling_realm="landIce" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="25" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Land ice or snow albedo" type="" uid="d5b3433c-c78d-11e6-9b25-5404a60d96b5" vid="5912e2f6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="yr" label="cProductLut" mipTable="emYr" modeling_realm="land" mtid="MIPtable::emYr" positive="" prov="LUMIP [Lyr_Lut]" provNote="" rowIndex="7" shuffle="0" stid="e9fb218a-c1ce-11e6-8067-ac72891c3257" title="wood and agricultural product pool carbon associated with land use tiles; examples of products include paper, cardboard, timber for construction, and crop harvest for food or fuel." type="" uid="3e26d502-b89b-11e6-be04-ac72891c3257" vid="3f306e18-b89b-11e6-be04-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Fluxes are requested at all levels" frequency="fx" label="rsd" mipTable="emFx" modeling_realm="atmos" mtid="MIPtable::emFx" positive="down" prov="RFMIP [OfflineRad]" provNote="" rowIndex="7" shuffle="" stid="70421648-f2a0-11e6-9a05-5404a60d96b5" title="Downwelling Shortwave Radiation" type="real" uid="d23b555c-4a9f-11e6-b84e-ac72891c3257" vid="eb9ac643cd9c73cae960d6d2db7b901d"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sistrxubot" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="69" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="X-component of ocean stress on sea ice" type="" uid="711858ca-faa7-11e6-bfb7-ac72891c3257" vid="590d2848-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="cSoilAbove1m" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Basic]" provNote="" rowIndex="15" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon mass in soil pool above 1m depth" type="" uid="e70578ba-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0f91c-acb7-11e6-b5ee-ac72891c3257"/>
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<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="waterDpth" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="47" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Water table depth from surface." type="" uid="8b81f0ce-4a5b-11e6-9cd2-ac72891c3257" vid="5913b780-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="wtem" mipTable="emMonZ" modeling_realm="atmos" mtid="MIPtable::emMonZ" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="35" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Transformed Eulerian Mean upward wind" type="" uid="feeae56a-96ec-11e6-b81e-c9e268aff03a" vid="c64364df884a3cebaa7aebb664260776"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Greenland" frequency="yr" label="lim" mipTable="IyrGre" modeling_realm="atmos" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="30" shuffle="0" stid="b0ec4e62-a42a-11e6-bfbb-ac72891c3257" title="Ice sheet mass" type="" uid="d5b3f98a-c78d-11e6-9b25-5404a60d96b5" vid="41467ee6-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="This is needed to distinguish between grounded glaciated ice (grounded = ice sheet and glacier) and ice shelves (floating over sea water), since land_ice is by definition ice sheet, glacier and ice shelves" frequency="fx" label="sftgrf" mipTable="emFx" modeling_realm="landIce" mtid="MIPtable::emFx" positive="" prov="ISMIP6 [new_fx]" provNote="" rowIndex="5" shuffle="0" stid="f7decc10-562c-11e6-a2a4-ac72891c3257" title="Grounded Ice Sheet  Area Fraction" type="" uid="b7f330ce-7c00-11e6-bcdf-ac72891c3257" vid="590e5de4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="Average layer soil temperature" frequency="day" label="tsl" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="32" shuffle="" stid="f7ed82f0-562c-11e6-a2a4-ac72891c3257" title="Temperature of Soil" type="real" uid="d227e094-4a9f-11e6-b84e-ac72891c3257" vid="3fd3cb4e2d6dd15b7dd73def96fea129"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="mrsoLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="22" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="Total soil moisture" type="" uid="d22de458-4a9f-11e6-b84e-ac72891c3257" vid="590d606a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="MODIS Optical Thickness-Particle Size joint distribution, liquid" frequency="mon" label="jpdftaureliqmodis" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMonExtra]" provNote="" rowIndex="8" shuffle="0" stid="af25829c-1e00-11e7-a625-5404a60d96b5" title="MODIS Optical Thickness-Particle Size joint  distribution, liquid" type="" uid="8b8a5c50-4a5b-11e6-9cd2-ac72891c3257" vid="5912eff8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="PARASOL Reflectance " frequency="day" label="parasolRefl" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [cfDayExtra]" provNote="" rowIndex="4" shuffle="" stid="e9fa9724-c1ce-11e6-8067-ac72891c3257" title="PARASOL Reflectance" type="real" uid="8b8a85cc-4a5b-11e6-9cd2-ac72891c3257" vid="a06b8e83250b870d9f39dc1f6534efcb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="wap is a lower priority request (level 2, not level 1)" frequency="day" label="wap" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="DynVar [DYVR_daily_d]" provNote="" rowIndex="23" shuffle="" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="omega (=dp/dt)" type="real" uid="8b982c22-4a5b-11e6-9cd2-ac72891c3257" vid="51fb29dd55442361fa9c5dbe23aca9c6"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="subhr" label="rlut" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="up" prov="HighResMIP [1ts]" provNote="" rowIndex="23" shuffle="0" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="TOA Outgoing Longwave Radiatio" type="" uid="8bb18d16-4a5b-11e6-9cd2-ac72891c3257" vid="63345d9732c72b97ca395f24ce2d6642"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="Greenland" frequency="yr" label="iareafl" mipTable="IyrGre" modeling_realm="atmos" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="33" shuffle="0" stid="87a85d84-a3fd-11e6-bfbb-ac72891c3257" title="Area covered by floating ice shelves" type="" uid="d5b40830-c78d-11e6-9b25-5404a60d96b5" vid="590e00b0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="fDeforestToAtmos" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="65" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Deforested biomass that goes into atmosphere as a result of anthropogenic land use change" type="" uid="8b81caea-4a5b-11e6-9cd2-ac72891c3257" vid="591324be-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="MODIS Optical Thickness-Particle Size joint  distribution, liquid" frequency="3hr" label="jpdftaureliqmodis" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="CFMIP [cf3hr_sim_new]" provNote="" rowIndex="15" shuffle="0" stid="af251884-1e00-11e7-a625-5404a60d96b5" title="MODIS Optical Thickness-Particle Size joint  distribution, liquid" type="" uid="f2aa2ed0-26b8-11e7-8344-ac72891c3257" vid="5912eff8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="plev_4" frequency="6hr" label="hus4" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="HighResMIP [6hrPlev_extr_dr]" provNote="" rowIndex="27" shuffle="0" stid="70409cbe-f2a0-11e6-9a05-5404a60d96b5" title="Specific Humidity" type="" uid="8bae64ba-4a5b-11e6-9cd2-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="fddtdin" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="55" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Net Dissolved Inorganic Nitrogen" type="real" uid="e708ed92-aa7f-11e6-9a4a-5404a60d96b5" vid="d3e6e20c91db32a83bcf3d8d8d9dafd3"/>
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<item defaultPriority="3" deflate="0" deflate_level="0" description="Antarctica" frequency="yr" label="tendacabf" mipTable="IyrAnt" modeling_realm="atmos" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="34" shuffle="0" stid="b0ec4e62-a42a-11e6-bfbb-ac72891c3257" title="Total surface mass balance flux" type="" uid="d5b4a2d6-c78d-11e6-9b25-5404a60d96b5" vid="4146943a-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="H2wv" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="14" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="H2 in water vapor" type="" uid="6f68d5cc-9acb-11e6-b7ee-ac72891c3257" vid="5914fd52-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="siflsaltbot" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="60" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Salt flux from sea ice" type="" uid="7143517e-faa7-11e6-bfb7-ac72891c3257" vid="590eb730-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="rsdcsbnd" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="24" shuffle="0" stid="63c353f8-15f2-11e7-87e0-5404a60d96b5" title="Downwelling Clear-Sky Shortwave Radiation at each level for each band" type="" uid="7b3059dc-a220-11e6-a33f-ac72891c3257" vid="ebd63780-a0de-11e6-bc63-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="MODIS Optical Thickness-Particle Size joint distribution, ice" frequency="mon" label="jpdftaureicemodis" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMonExtra]" provNote="" rowIndex="9" shuffle="0" stid="af2589d6-1e00-11e7-a625-5404a60d96b5" title="MODIS Optical Thickness-Particle Size joint  distribution, ice" type="" uid="8b8a61b4-4a5b-11e6-9cd2-ac72891c3257" vid="59149a10-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Eastward wind on pressure levels" frequency="3hr" label="ua7h" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="HighResMIP [3hrPlev]" provNote="" rowIndex="13" shuffle="0" stid="f7eb125e-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind" type="" uid="f2ab1be2-26b8-11e7-8344-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="6hr" label="ta27" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="14" shuffle="0" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="Air Temperature" type="" uid="f2ab3208-26b8-11e7-8344-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="cLitterGrass" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="28" shuffle="0" stid="fa246dce-267c-11e7-9bed-ac72891c3257" title="Carbon mass in litter on grass tiles" type="" uid="e7070806-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0f62e-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="sconcso4" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="GeoMIP [aeroGeo]" provNote="" rowIndex="16" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Concentration of SO4" type="" uid="6f36ef12-9acb-11e6-b7ee-ac72891c3257" vid="96435c8c0c0a8a7423d6abb6c027da69"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="rsdscsdiff" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="GeoMIP [aeroGeo]" provNote="" rowIndex="18" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Diffuse Downwelling Clear Sky Shortwave Radiation" type="" uid="7aff68f4-a220-11e6-a33f-ac72891c3257" vid="6ca9dd8a089b15fb96841e9fe56411cf"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="This is needed in case bed rock elevation changes in time" frequency="yr" label="topg" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="7" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Bedrock Altitude" type="" uid="d5b43954-c78d-11e6-9b25-5404a60d96b5" vid="59148cf0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="tasLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="11" shuffle="0" stid="fa26b836-267c-11e7-9bed-ac72891c3257" title="near-surface air temperature (2m above displacement height, i.e. t_ref) on land use tile" type="" uid="d22dae98-4a9f-11e6-b84e-ac72891c3257" vid="590f1a90-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Surface Radiative Temperature" frequency="day" label="tr" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="26" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Radiative Temperature" type="" uid="d227c546-4a9f-11e6-b84e-ac72891c3257" vid="590d4724-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="irrLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="23" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="Irrigation flux including any irrigation for crops, trees, pasture, or urban lawns" type="" uid="3e26abc2-b89b-11e6-be04-ac72891c3257" vid="3f305b94-b89b-11e6-be04-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="depdust" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="18" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Total Deposition Rate of Dust" type="" uid="6f6bf34c-9acb-11e6-b7ee-ac72891c3257" vid="59131910-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="rsucsaf" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="19" shuffle="0" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Upwelling Clean-Clear-Sky Shortwave Radiation at each level" type="" uid="916b8dd0-267c-11e7-8933-ac72891c3257" vid="ea313ee8-a0de-11e6-bc63-ac72891c3257"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="K=ice depth bands" frequency="mon" label="siitdthick" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="13" shuffle="0" stid="c2cae79a-19f2-11e7-bdec-ac72891c3257" title="Sea-ice thickness in thickness categories" type="" uid="712a1fc4-faa7-11e6-bfb7-ac72891c3257" vid="59133288-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="siforcecorioly" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="77" shuffle="0" stid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5" title="Coriolis force term in force balance (y-component)" type="" uid="712a8130-faa7-11e6-bfb7-ac72891c3257" vid="590d4fc6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="c13Veg" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Hist]" provNote="" rowIndex="8" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Mass of 13C in Vegetation" type="" uid="8b7f6192-4a5b-11e6-9cd2-ac72891c3257" vid="59144c36-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="1hrClimMon" label="rsutcs" mipTable="em1hrclimmon" modeling_realm="atmos" mtid="MIPtable::em1hrclimmon" positive="up" prov="CFMIP [cf1hrClimMon]" provNote="" rowIndex="7" shuffle="0" stid="f7ebefee-562c-11e6-a2a4-ac72891c3257" title="TOA Outgoing Clear-Sky Shortwave Radiation" type="" uid="8b8b57fe-4a5b-11e6-9cd2-ac72891c3257" vid="12e0369ff0ba1a6f1a84e0d9565d4b07"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="vtendnogw" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="DynVar [DYVR_monthly_d]" provNote="" rowIndex="25" shuffle="0" stid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5" title="v-tendency nonorographic gravity wave drag" type="" uid="8b97bfda-4a5b-11e6-9cd2-ac72891c3257" vid="59170700-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="Stratiform cloud optical depth" frequency="6hr" label="dtaus" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="33" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Stratiform Cloud Optical Depth" type="real" uid="8bb08c22-4a5b-11e6-9cd2-ac72891c3257" vid="ffa75c4442ad340cb0cdeb11aa19f044"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="treeFracBdlEvg" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="8" shuffle="0" stid="f2ef7f62-26b8-11e7-8344-ac72891c3257" title="Broadleaf evergreen tree fraction" type="" uid="6f6a6a72-9acb-11e6-b7ee-ac72891c3257" vid="5914dbb0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="mrroLi" mipTable="ImonGre" modeling_realm="atmos" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="18" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Land Ice Runoff Flux" type="" uid="d5b2b2dc-c78d-11e6-9b25-5404a60d96b5" vid="41455e80-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="surface_snow_and_ice_sublimation_flux" frequency="day" label="sbl" mipTable="emDay" modeling_realm="landIce" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="16" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Snow and Ice Sublimation Flux" type="real" uid="d2282ebe-4a9f-11e6-b84e-ac72891c3257" vid="3a8e1636a31c82fbdd9a1ae45ab3be7d"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="only requested for DECK HIST, 1980-present" frequency="3hr" label="ra" mipTable="em3hr" modeling_realm="land" mtid="MIPtable::em3hr" positive="up" prov="C4MIP [L_3hr]" provNote="" rowIndex="5" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Autotrophic (Plant) Respiration on Land" type="real" uid="8b7fe482-4a5b-11e6-9cd2-ac72891c3257" vid="2d38bda3114d03f7543b8af88aadd03a"/>
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<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="twap" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="26" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="air_temperature_times_omega" type="" uid="8baf62e8-4a5b-11e6-9cd2-ac72891c3257" vid="590f753a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Ice water path" frequency="3hr" label="clivi" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="" prov="HighResMIP [3hr_cloud]" provNote="" rowIndex="21" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Ice Water Path" type="" uid="8bb0ccd2-4a5b-11e6-9cd2-ac72891c3257" vid="73c496f5669cc122cf1cddfe4df2a27a"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="expcfe" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="46" shuffle="0" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sinking Particulate Iron Flux" type="" uid="e708c2a4-aa7f-11e6-9a4a-5404a60d96b5" vid="bf956dccd4ff85281065bbf66335b35a"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="opottempdiff" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="49" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water potential temperature expressed as heat content due to parameterized dianeutral mixing" type="real" uid="8b9dfefe-4a5b-11e6-9cd2-ac72891c3257" vid="2aa31f177542022b5d6ca809cf01eff5"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="osaltrmadvect" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="57" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water salinity expressed as salt content due to residual mean advection" type="real" uid="8b9e2528-4a5b-11e6-9cd2-ac72891c3257" vid="4f1bd1a2-12cc-11e6-b2bc-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="cldnci" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="GeoMIP [aeroGeo]" provNote="" rowIndex="15" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Ice Crystal Number Concentration of Cloud Tops" type="" uid="6f36e864-9acb-11e6-b7ee-ac72891c3257" vid="59d5c1ca37702f3ab916f1c9096d8f7f"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="yr" label="licalvf" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="14" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Land ice calving flux" type="" uid="d5b3bd08-c78d-11e6-9b25-5404a60d96b5" vid="590e4e58-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Surface Upwelling Clear-Sky Shortwave Radiation" frequency="3hr" label="rsuscs" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="up" prov="RFMIP [aero_irf]" provNote="" rowIndex="28" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Upwelling Clear-Sky Shortwave Radiation" type="real" uid="916bab76-267c-11e7-8933-ac72891c3257" vid="90df05fe3dcd9fe0c9b48aaa74b5e9e2"/>
<item defaultPriority="3" deflate="" deflate_level="" description="liquid_water_content_of_permafrost_layer" frequency="day" label="pflw" mipTable="emDay" modeling_realm="landIce land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="58" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Liquid Water Content of Permafrost Layer" type="real" uid="d228ee4e-4a9f-11e6-b84e-ac72891c3257" vid="67adc30ae1278d2ef6d696ba0e2c92e8"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="hfssLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="15" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="sensible heat flux on land use tile" type="" uid="d22dc374-4a9f-11e6-b84e-ac72891c3257" vid="590e590c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="downwelling shortwave flux due to volcanic aerosols at TOA under clear sky to be diagnosed through double radiation call" frequency="6hr" label="swtoafluxaerocs" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="VolMIP [VIRF]" provNote="" rowIndex="10" shuffle="0" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Shortwave flux due to volcanic aerosols at TOA under clear sky" type="" uid="f2b1228a-26b8-11e7-8344-ac72891c3257" vid="5914e34e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="siforcetilty" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="75" shuffle="0" stid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5" title="Sea-surface tilt term in force balance (y-component)" type="" uid="710bfb0c-faa7-11e6-bfb7-ac72891c3257" vid="590d7654-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="siv" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="63" shuffle="0" stid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5" title="Y-component of sea ice velocity" type="" uid="71237944-faa7-11e6-bfb7-ac72891c3257" vid="59141748-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="sisaltmass" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="21" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Mass of salt in sea ice per area" type="" uid="713cf6a8-faa7-11e6-bfb7-ac72891c3257" vid="590c7920-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sndmassmelt" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="44" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Snow Mass Rate of Change through Melt" type="" uid="714129a8-faa7-11e6-bfb7-ac72891c3257" vid="590e1ef6-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="mass_fraction_of_unfrozen_water_in_soil_layer" frequency="day" label="mrlqso" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="45" shuffle="0" stid="f7ed82f0-562c-11e6-a2a4-ac72891c3257" title="Average layer fraction of liquid moisture" type="" uid="d228b44c-4a9f-11e6-b84e-ac72891c3257" vid="591432f0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="alevel site time1" frequency="subhr" label="reffclic" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="CFMIP [cfSites_new]" provNote="" rowIndex="29" shuffle="" stid="e4b02c9a-8946-11e6-a0c4-5404a60d96b5" title="Hydrometeor Effective Radius of Convective Cloud Ice" type="real" uid="8b8a2e24-4a5b-11e6-9cd2-ac72891c3257" vid="d80ff3a0dec0b1256a0943aadab66813"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="day" label="utendvtem" mipTable="emDayZ" modeling_realm="atmos" mtid="MIPtable::emDayZ" positive="" prov="DynVar [DYVR_daily_b]" provNote="" rowIndex="13" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Rendency of eastward wind due to TEM northward advection and Coriolis term" type="" uid="8b97f9a0-4a5b-11e6-9cd2-ac72891c3257" vid="590e48f4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="Pressure levels (3)" frequency="1hr" label="ta" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_energy]" provNote="" rowIndex="16" shuffle="0" stid="f7e9888a-562c-11e6-a2a4-ac72891c3257" title="Air Temperature" type="" uid="8bb14612-4a5b-11e6-9cd2-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="This is needed in case ice sheet thickness changes in time" frequency="yr" label="lithk" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="5" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Ice Sheet Thickness" type="" uid="d5b43076-c78d-11e6-9b25-5404a60d96b5" vid="59176b14-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Clay Fraction" frequency="fx" label="clayfrac" mipTable="emFx" modeling_realm="atmos" mtid="MIPtable::emFx" positive="" prov="LS3MIP [fxLS3MIP]" provNote="" rowIndex="10" shuffle="0" stid="81737d70-f751-11e6-8899-5404a60d96b5" title="Clay Fraction" type="" uid="81963e3a-f906-11e6-a176-5404a60d96b5" vid="f8dde114-11ed-11e7-bf88-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Energy of fusion" frequency="day" label="hfmlt" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="16" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Energy of fusion" type="" uid="d2279760-4a9f-11e6-b84e-ac72891c3257" vid="590eacc2-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Canopy Albedo" frequency="day" label="albc" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="30" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Canopy Albedo" type="" uid="d227d7de-4a9f-11e6-b84e-ac72891c3257" vid="590e736a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="ua850" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="PMIP [PMIP-day-02]" provNote="" rowIndex="11" shuffle="0" stid="f94abbb4-80ba-11e6-ab6e-5404a60d96b5" title="Eastward Wind at 850 hPa" type="" uid="6f6c50a8-9acb-11e6-b7ee-ac72891c3257" vid="74664cc3f23008726cc939f53e57325a"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="ta850" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="DCPP [DCPP-day]" provNote="" rowIndex="18" shuffle="0" stid="f7ea7254-562c-11e6-a2a4-ac72891c3257" title="Air Temperature" type="" uid="8b91f2e4-4a5b-11e6-9cd2-ac72891c3257" vid="1e73cc52b4b323161e26ffd19ad68af4"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="mon" label="tntogw" mipTable="emMonZ" modeling_realm="atmos" mtid="MIPtable::emMonZ" positive="" prov="DynVar [DYVR_monthly_b]" provNote="" rowIndex="7" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="temperature tendency orographic gravity wave dissipation" type="" uid="8b978588-4a5b-11e6-9cd2-ac72891c3257" vid="5912b4e8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="zmtnt" mipTable="emMonZ" modeling_realm="atmos" mtid="MIPtable::emMonZ" positive="" prov="DAMIP [DAMIP-emMonZ]" provNote="" rowIndex="14" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Zonal Mean Diabatic Heating Rates" type="" uid="feeaf906-96ec-11e6-b81e-c9e268aff03a" vid="00efa75221917486576896481325ce2f"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="6hr" label="albsrfc" mipTable="6hrPlevpt" modeling_realm="aerosol" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="28" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="surface albedo" type="float" uid="9138e326-267c-11e7-8933-ac72891c3257" vid="3d2a28d882e00559e5c2a779ff420de6"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="yr" label="xvelmean" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="26" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="X-component of land ice vertical mean velocity" type="" uid="d5b48206-c78d-11e6-9b25-5404a60d96b5" vid="14277e02-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Temperature of bare soil" frequency="day" label="tgs" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="25" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Temperature of bare soil" type="" uid="d227c0d2-4a9f-11e6-b84e-ac72891c3257" vid="5913f290-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="cTotFireLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="7" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="Total carbon loss from natural and managed fire on land use tile, including deforestation fires" type="" uid="d22d9ba6-4a9f-11e6-b84e-ac72891c3257" vid="59148f52-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="only requested for DECK HIST, 1980-present" frequency="3hr" label="rh" mipTable="em3hr" modeling_realm="land" mtid="MIPtable::em3hr" positive="up" prov="C4MIP [L_3hr]" provNote="" rowIndex="6" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Heterotrophic Respiration on Land" type="real" uid="8b7fe98c-4a5b-11e6-9cd2-ac72891c3257" vid="93723bb54a2c43450d75403102e618ac"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nppStem" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="43" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="net primary production allcoated to stem" type="" uid="e70740aa-aa7f-11e6-9a4a-5404a60d96b5" vid="84f09f30-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="wap" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="15" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="omega (=dp/dt)" type="real" uid="b7e3ae1a-7c00-11e6-bcdf-ac72891c3257" vid="51fb29dd55442361fa9c5dbe23aca9c6"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="gppLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="4" shuffle="0" stid="e9fa6830-c1ce-11e6-8067-ac72891c3257" title="gross primary productivity on land use tile" type="" uid="d22d8a9e-4a9f-11e6-b84e-ac72891c3257" vid="590a8976-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sivoln" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="86" shuffle="0" stid="e9fb0b1e-c1ce-11e6-8067-ac72891c3257" title="Sea ice volume North" type="" uid="712c4bd2-faa7-11e6-bfb7-ac72891c3257" vid="5913c9aa-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="tntd" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMon_3dstd_new]" provNote="" rowIndex="8" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature due to Numerical Diffusion" type="" uid="8b89be4e-4a5b-11e6-9cd2-ac72891c3257" vid="590dcb0e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="reffclis" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMon_3dstd_new]" provNote="" rowIndex="14" shuffle="" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Hydrometeor Effective Radius of Stratiform Cloud Ice" type="real" uid="8b89deba-4a5b-11e6-9cd2-ac72891c3257" vid="c2270065bb39bfa4fbf0d13a78dfa8a1"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="tdps" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="DCPP [DCPP-mon]" provNote="" rowIndex="26" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="2m dewpoint temperature" type="" uid="6f68feda-9acb-11e6-b7ee-ac72891c3257" vid="4f3e5df56723b77c87e15cce7594ab94"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sltbasin" mipTable="emMonZ" modeling_realm="ocean" mtid="MIPtable::emMonZ" positive="" prov="DCPP [DCPP-mon]" provNote="" rowIndex="33" shuffle="0" stid="f949dcb2-80ba-11e6-ab6e-5404a60d96b5" title="Northward Ocean Salt Transport" type="" uid="f2b4239a-26b8-11e7-8344-ac72891c3257" vid="59171588-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="rlds" mipTable="ImonAnt" modeling_realm="atmos" mtid="MIPtable::ImonAnt" positive="down" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="23" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Surface Downwelling Longwave Radiation" type="real" uid="d5b33c0c-c78d-11e6-9b25-5404a60d96b5" vid="70d7d6fc0e9c2f14624a0270bf2b99b9"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="concdust" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="29" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Concentration of Dust" type="" uid="6d5b0f08-a39e-11e6-8a8c-ac72891c3257" vid="a9e338f20a1b85e4758c5b3cb0ad961c"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="hfss" mipTable="ImonAnt" modeling_realm="atmos" mtid="MIPtable::ImonAnt" positive="up" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="20" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Surface Upward Sensible Heat Flux" type="real" uid="d5b33158-c78d-11e6-9b25-5404a60d96b5" vid="a13ed886b17e20cdae8b89b9ff8e4610"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="yr" label="lifmassbf" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="15" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Land ice vertical front mass balance flux" type="" uid="d5b3c0b4-c78d-11e6-9b25-5404a60d96b5" vid="59130394-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="yr" label="cProduct" mipTable="emYr" modeling_realm="land" mtid="MIPtable::emYr" positive="" prov="LUMIP [Lyr_Lut]" provNote="" rowIndex="11" shuffle="" stid="fa23fd12-267c-11e7-9bed-ac72891c3257" title="Carbon Mass in Products of Land Use Change" type="real" uid="3e26df20-b89b-11e6-be04-ac72891c3257" vid="57c2e414bde585cc60a7b2f980e1f870"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="rsuscsaf" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="12" shuffle="0" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Upwelling Clean Clear-Sky Shortwave Radiation" type="" uid="916b73ea-267c-11e7-8933-ac72891c3257" vid="90df05fe3dcd9fe0c9b48aaa74b5e9e"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="snc" mipTable="ImonGre" modeling_realm="landIce land" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="31" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="snow cover fraction" type="float" uid="d5b2e306-c78d-11e6-9b25-5404a60d96b5" vid="e53e97d7e904fe67aa54b721b3c6a290"/>
<item defaultPriority="1" deflate="" deflate_level="" description="quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only. Needed to analyse the impact of downscaling methods" frequency="mon" label="ts" mipTable="ImonAnt" modeling_realm="atmos" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="5" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Surface Temperature" type="real" uid="d5b2f7ce-c78d-11e6-9b25-5404a60d96b5" vid="90c49fce92dc1f21647dad07d1342843"/>
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<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="o2sat" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T1]" provNote="" rowIndex="28" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Dissolved Oxygen Concentration at Saturation" type="real" uid="e7081246-aa7f-11e6-9a4a-5404a60d96b5" vid="e4e75ce1fe85a547cd0d39d4b64ec0e2"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="treeFrac" mipTable="emYr" modeling_realm="land" mtid="MIPtable::emYr" positive="" prov="DCPP [DCPP-year]" provNote="" rowIndex="57" shuffle="" stid="529e44a0-1ed7-11e7-9366-ac72891c3257" title="Tree Cover Fraction" type="real" uid="fb017168-be37-11e6-bac1-5404a60d96b5" vid="d3eb8c36759afa5ef2c8363e0c16db88"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over grounded land ice" frequency="yr" label="litempbotgr" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="9" shuffle="0" stid="943bbcea-8b06-11e6-94d1-5404a60d96b5" title="Basal temperature of grounded ice sheet" type="" uid="d5b440e8-c78d-11e6-9b25-5404a60d96b5" vid="4144a01c-4f40-11e6-a814-ac72891c3257"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="surface_snow_and_ice_refreezing_flux" frequency="day" label="snrefr" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="23" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Re-freezing of water in the snow" type="" uid="d2284d90-4a9f-11e6-b84e-ac72891c3257" vid="59171af6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nppTree" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="55" shuffle="0" stid="fa260328-267c-11e7-9bed-ac72891c3257" title="net primary production on tree tiles" type="" uid="e7076d96-aa7f-11e6-9a4a-5404a60d96b5" vid="84f10e7a-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Ground heat flux" frequency="day" label="hfdsl" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="12" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Downward Heat Flux at Land Surface" type="" uid="7de83374-1ab7-11e7-8dfc-5404a60d96b5" vid="5d2b76d0-0e25-11e7-bdeb-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="surface_snow_and_ice_melt_flux" frequency="day" label="snm" mipTable="emDay" modeling_realm="landIce land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="22" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Surface Snow Melt" type="real" uid="d22848ea-4a9f-11e6-b84e-ac72891c3257" vid="5652800cc64fd945cc990547aee633a1"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="change_over_time_in_surface_snow_and_ice_amount" frequency="day" label="dsn" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="29" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Change in snow water equivalent" type="" uid="d22868f2-4a9f-11e6-b84e-ac72891c3257" vid="590f1d10-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="yr" label="cVegLut" mipTable="emYr" modeling_realm="land" mtid="MIPtable::emYr" positive="" prov="LUMIP [Lyr_Lut]" provNote="" rowIndex="5" shuffle="0" stid="e9fb218a-c1ce-11e6-8067-ac72891c3257" title="carbon in vegetation on land use tiles" type="" uid="d22e2328-4a9f-11e6-b84e-ac72891c3257" vid="590e39fe-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="siflfwdrain" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="31" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Freshwater flux from sea-ice surface" type="" uid="7111a6e2-faa7-11e6-bfb7-ac72891c3257" vid="0353bea4-dca0-11e5-81c9-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CALIPSO Mid Level Cloud Fraction " frequency="3hr" label="clmcalipso" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="CFMIP [cf3hr_sim_new]" provNote="" rowIndex="11" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="CALIPSO Mid Level Cloud Fraction" type="real" uid="8b8ac30c-4a5b-11e6-9cd2-ac72891c3257" vid="fe9d4b45792f7d6430fe2a9c9b7234b1"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="xgwdparam" mipTable="emMonZ" modeling_realm="atmos" mtid="MIPtable::emMonZ" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="38" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="x_gravity_wave_drag_param" type="" uid="8bafa41a-4a5b-11e6-9cd2-ac72891c3257" vid="591472f6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="Pressure levels (3)" frequency="1hr" label="ua" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_energy]" provNote="" rowIndex="13" shuffle="0" stid="f7e9888a-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind" type="" uid="8bb134b0-4a5b-11e6-9cd2-ac72891c3257" vid="21db90c0a12448299f855fdab60930d4"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="wetlandFrac" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Lmon-02]" provNote="" rowIndex="29" shuffle="0" stid="529fc62c-1ed7-11e7-9366-ac72891c3257" title="Fraction of a grid cell covered by wetland." type="" uid="6f6acb20-9acb-11e6-b7ee-ac72891c3257" vid="59147ddc-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Specific Humidity" frequency="day" label="hus850" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="PMIP [PMIP-day-02]" provNote="" rowIndex="7" shuffle="0" stid="f94abbb4-80ba-11e6-ab6e-5404a60d96b5" title="Specific Humidity" type="" uid="6f6c4072-9acb-11e6-b7ee-ac72891c3257" vid="af0e7f4ba96314bef40cc98e5dd078af"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="cLitterSurf" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="21" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass in Above-Ground Litter" type="" uid="8b817892-4a5b-11e6-9cd2-ac72891c3257" vid="590f4c7c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CALIPSO Total Cloud Fraction " frequency="3hr" label="cltcalipso" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="CFMIP [cf3hr_sim_new]" provNote="" rowIndex="9" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="CALIPSO Total Cloud Fraction" type="real" uid="8b8ab8f8-4a5b-11e6-9cd2-ac72891c3257" vid="ce9ab9b945fcc86013ad10431d8f252e"/>
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<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="fbddtdisi" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="64" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Dissolved Inorganic Silicon due to Biological Activity" type="real" uid="e7091538-aa7f-11e6-9a4a-5404a60d96b5" vid="18060c6741a6b65c90435d19adfbbc98"/>
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<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sidconcdyn" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="33" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="sea-ice area fraction change from dynamics" type="" uid="714c1d90-faa7-11e6-bfb7-ac72891c3257" vid="590ee584-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="grplmxrat27" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="HighResMIP [Amon_diag]" provNote="" rowIndex="25" shuffle="0" stid="f7ea1f3e-562c-11e6-a2a4-ac72891c3257" title="Graupel Mixing Ratio" type="" uid="8bb00784-4a5b-11e6-9cd2-ac72891c3257" vid="590f21d4-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="orog" mipTable="ImonAnt" modeling_realm="land" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="30" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Surface Altitude" type="real" uid="d5b3576e-c78d-11e6-9b25-5404a60d96b5" vid="00e77372e8b909d9a827a0790e991fd9"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="Clear-Sky LW-RF Aerosols at TOA" frequency="mon" label="lwtoacsaer" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="12" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="clear sky lw-rf aerosols at toa" type="" uid="d23719f6-4a9f-11e6-b84e-ac72891c3257" vid="ab57604d6acd918c08aa6252145c608e"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="nwdFracLut" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="LUMIP [Lmon_Lut]" provNote="" rowIndex="10" shuffle="0" stid="fa252444-267c-11e7-9bed-ac72891c3257" title="fraction of land use tile tile that is non-woody vegetation ( e.g. herbaceous crops)" type="" uid="d22da9f2-4a9f-11e6-b84e-ac72891c3257" vid="59170110-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sisnhc" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="30" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Snow-heat content per unit area" type="" uid="714e522c-faa7-11e6-bfb7-ac72891c3257" vid="5912f890-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="fVegSoilMortality" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="41" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Carbon Mass Flux from Vegetation to Soil as a result of mortality" type="" uid="e7073696-aa7f-11e6-9a4a-5404a60d96b5" vid="84ef402c-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="rsusIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="25" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Upwelling Shortwave Radiation" type="" uid="81212218-bf17-11e6-b0d8-ac72891c3257" vid="53828236-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only. Needed to analyse the impact of downscaling methods" frequency="mon" label="tas" mipTable="ImonAnt" modeling_realm="atmos" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="4" shuffle="" stid="af240246-1e00-11e7-a625-5404a60d96b5" title="Surface Air Temperature" type="float" uid="d5b2f3f0-c78d-11e6-9b25-5404a60d96b5" vid="5c4978e802ba55d5a298cf1b3bdc2b3a"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="lifmassbf" mipTable="ImonAnt" modeling_realm="landIce" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="29" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Land ice vertical front mass balance flux" type="" uid="d5b353e0-c78d-11e6-9b25-5404a60d96b5" vid="59130394-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="(in OImon, sim included snow and sea ice mass)" frequency="mon" label="sisnmass" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="10" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Snow mass per area" type="" uid="713ed766-faa7-11e6-bfb7-ac72891c3257" vid="5914a6b8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="tntpbl" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="CFMIP [cfMon_3dstd_new]" provNote="" rowIndex="9" shuffle="0" stid="f7ded7a0-562c-11e6-a2a4-ac72891c3257" title="Tendency of Air Temperature Due to Boundary Layer Mixing" type="" uid="8b89c3ee-4a5b-11e6-9cd2-ac72891c3257" vid="59143570-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="sblIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="11" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Snow and Ice Sublimation Flux" type="" uid="132b2aca-be44-11e6-9e13-f9e3356200b3" vid="53825806-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="yr" label="xvelsurf" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="20" shuffle="0" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="X-component of land ice surface velocity" type="" uid="d5b3d428-c78d-11e6-9b25-5404a60d96b5" vid="1427742a-b574-11e6-9ed4-5404a60d96b5"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Greenland" frequency="yr" label="limnsw" mipTable="IyrGre" modeling_realm="atmos" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="31" shuffle="0" stid="884b287a-a3fd-11e6-bfbb-ac72891c3257" title="Ice sheet mass that does not displace sea water" type="" uid="d5b3fda4-c78d-11e6-9b25-5404a60d96b5" vid="590f019a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Thickness of Soil Layers" frequency="fx" label="slthick" mipTable="emFx" modeling_realm="land" mtid="MIPtable::emFx" positive="" prov="LS3MIP [fxLS3MIP]" provNote="" rowIndex="16" shuffle="0" stid="81737d70-f751-11e6-8899-5404a60d96b5" title="Thickness of Soil Layers" type="" uid="f2fad86e-c38d-11e6-abc1-1b922e5e1118" vid="7124901e-c7b6-11e6-bb2a-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Energy of sublimation" frequency="day" label="hfsbl" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="17" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Energy of sublimation" type="" uid="d2279c2e-4a9f-11e6-b84e-ac72891c3257" vid="591449ca-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="tasminCrop" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="VIACSAB [viacsabExtra]" provNote="" rowIndex="7" shuffle="0" stid="f7e03122-562c-11e6-a2a4-ac72891c3257" title="Daily Minimum Near-Surface Air Temperature over Crop Tile" type="" uid="124a104a-c14f-11e6-bb78-ac72891c3257" vid="1758307c-b622-11e6-bbe2-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="sispeed" mipTable="SIday" modeling_realm="seaIce" mtid="MIPtable::SIday" positive="" prov="SIMIP [seaiceday]" provNote="" rowIndex="11" shuffle="0" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Sea-ice speed" type="" uid="d243d86c-4a9f-11e6-b84e-ac72891c3257" vid="590f4f2e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="sistrxdtop" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="67" shuffle="0" stid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5" title="X-component of atmospheric stress on sea ice" type="" uid="71147110-faa7-11e6-bfb7-ac72891c3257" vid="5913f77c-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="simpmass" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="23" shuffle="0" stid="c2cc3578-19f2-11e7-bdec-ac72891c3257" title="Meltpond Mass per Unit Area" type="" uid="7117858a-faa7-11e6-bfb7-ac72891c3257" vid="aa9073c2-1b36-11e6-a696-35cd2d8034df"/>
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<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="sirdgthick" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="26" shuffle="0" stid="c2cc0486-19f2-11e7-bdec-ac72891c3257" title="Ridged ice thickness" type="" uid="714c1192-faa7-11e6-bfb7-ac72891c3257" vid="5914eb78-9e49-11e5-803c-0d0b866b59f3"/>
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<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="prhmax" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="DCPP [DCPP-mon]" provNote="" rowIndex="48" shuffle="0" stid="b639160c-c69e-11e6-9990-ac72891c3257" title="Maximum Hourly Precipitation Rate" type="" uid="8b91ffaa-4a5b-11e6-9cd2-ac72891c3257" vid="7553003ead183dd3276108b6311a337f"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="od550aerstrat" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="GeoMIP [aeroGeo]" provNote="" rowIndex="4" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Stratospheric Aerosol Optical Depth at 550nm" type="" uid="8ba6e3c0-4a5b-11e6-9cd2-ac72891c3257" vid="590f8aca-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over floating land ice" frequency="yr" label="libmassbffl" mipTable="IyrGre" modeling_realm="landIce" mtid="MIPtable::IyrGre" positive="" prov="ISMIP6 [IyrGre]" provNote="" rowIndex="13" shuffle="0" stid="943a75d8-8b06-11e6-94d1-5404a60d96b5" title="Basal specific mass balance flux of floating ice shelf" type="" uid="d5b3b948-c78d-11e6-9b25-5404a60d96b5" vid="41460524-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Root Distribution" frequency="fx" label="rootdsl" mipTable="emFx" modeling_realm="land" mtid="MIPtable::emFx" positive="" prov="LS3MIP [fxLS3MIP]" provNote="" rowIndex="15" shuffle="0" stid="81737d70-f751-11e6-8899-5404a60d96b5" title="Root Distribution" type="" uid="f2fad4b8-c38d-11e6-abc1-1b922e5e1118" vid="71249bb8-c7b6-11e6-bb2a-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="fAnthDisturb" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT1]" provNote="" rowIndex="24" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="carbon mass flux into atmosphere due to any human activity" type="" uid="8b8098b4-4a5b-11e6-9cd2-ac72891c3257" vid="59149f2e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="fNgasNonFire" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="85" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total N lost to the atmosphere (including NHx, NOx, N2O, N2) from all processes except fire." type="" uid="8b8237c8-4a5b-11e6-9cd2-ac72891c3257" vid="59174d14-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="surface" frequency="day" label="tauvpbl" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="DynVar [DYVR_daily_c]" provNote="" rowIndex="16" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="northward surface stress from planetary boundary layer scheme" type="" uid="8b9809e0-4a5b-11e6-9cd2-ac72891c3257" vid="590f5b72-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="Model levels or plev_27" frequency="1hr" label="ta27" mipTable="em1hr" modeling_realm="atmos" mtid="MIPtable::em1hr" positive="" prov="HighResMIP [1hr_strat]" provNote="" rowIndex="16" shuffle="0" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="Air Temperature" type="" uid="8bb0ffc2-4a5b-11e6-9cd2-ac72891c3257" vid="b9c3eb96337c69c1c4a5aab1317f5563"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="fg14co2abio" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="down" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="53" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Flux of Abiotic 14CO2" type="real" uid="e708e4dc-aa7f-11e6-9a4a-5404a60d96b5" vid="f36046ab9a8a24ce4d7431e2defd9cf6"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="inc" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="CFMIP [aeroDay_2d]" provNote="" rowIndex="30" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Ice Crystal Number Concentration" type="" uid="7d8c9168-1ab7-11e7-8dfc-5404a60d96b5" vid="daf32f6bf53a77e4e30be04b9587f47a"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="sfcWindmax" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="DCPP [DCPP-mon]" provNote="" rowIndex="51" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" title="Daily Maximum Near-Surface Wind Speed" type="real" uid="fee11078-5270-11e6-bffa-5404a60d96b5" vid="1c15d05ab96de917359e54b16c4fbf14"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="sublimation_amount_assuming_no_snow" frequency="day" label="slbnosn" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="17" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Sublimation of the snow free area" type="" uid="d228335a-4a9f-11e6-b84e-ac72891c3257" vid="590f541a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="(in OImon, sit was volume per entire cell area)" frequency="mon" label="sithick" mipTable="SImon" modeling_realm="seaIce ocean" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="7" shuffle="" stid="f94dae78-80ba-11e6-ab6e-5404a60d96b5" title="Sea Ice Thickness" type="real" uid="d241a6d2-4a9f-11e6-b84e-ac72891c3257" vid="591321f8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="day" label="siconc" mipTable="SIday" modeling_realm="seaIce" mtid="MIPtable::SIday" positive="" prov="SIMIP [seaiceday]" provNote="" rowIndex="5" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Sea Ice Area Fraction" type="real" uid="d243b4a4-4a9f-11e6-b84e-ac72891c3257" vid="5914ab90-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Shallow convection precipitation flux" frequency="3hr" label="prcsh" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="" prov="HighResMIP [3hr_extr]" provNote="" rowIndex="16" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Precipitation Flux from Shallow Convection" type="" uid="8bae892c-4a5b-11e6-9cd2-ac72891c3257" vid="590d6e02-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="Specific humidity on pressure levels" frequency="3hr" label="hus7h" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="HighResMIP [3hrPlev]" provNote="" rowIndex="17" shuffle="0" stid="f7eb125e-562c-11e6-a2a4-ac72891c3257" title="Specific Humidity" type="" uid="f2c7178e-26b8-11e7-8344-ac72891c3257" vid="53f4724d228998d54191c73352532ce3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="ygwdparam" mipTable="emMonZ" modeling_realm="atmos" mtid="MIPtable::emMonZ" positive="" prov="HighResMIP [Amon_sparc]" provNote="" rowIndex="39" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="y_gravity_wave_drag_param" type="" uid="8bafa9a6-4a5b-11e6-9cd2-ac72891c3257" vid="59132e1e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="6hr" label="cldicemxrat27" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="18" shuffle="0" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="Cloud Ice Mixing Ratio" type="" uid="f2c73d5e-26b8-11e7-8344-ac72891c3257" vid="5913a2fe-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="prraIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="10" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Rainfall rate" type="" uid="8120d9de-bf17-11e6-b0d8-ac72891c3257" vid="5382550e-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="NEW DEF in LIMON: Loss of snow mass resulting from surface melting. Computed as the surface melt water from snow on the ice sheet portion of the grid cell divided by the ice_sheet area in the grid cell; report as 0.0 for snow-free land_ice regions; report as 0.0 where the land fraction is 0." frequency="mon" label="snmIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="13" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Snow Melt" type="" uid="132b316e-be44-11e6-9e13-f9e3356200b3" vid="53825e00-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="fx" label="topg" mipTable="IfxAnt" modeling_realm="landIce" mtid="MIPtable::IfxAnt" positive="" prov="ISMIP6 [IfxAnt]" provNote="" rowIndex="5" shuffle="0" stid="943ca1c8-8b06-11e6-94d1-5404a60d96b5" title="Bedrock Altitude" type="" uid="d5b378fc-c78d-11e6-9b25-5404a60d96b5" vid="59148cf0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="O18sw" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Omon-02]" provNote="" rowIndex="5" shuffle="0" stid="fa250ed2-267c-11e7-9bed-ac72891c3257" title="O18 in sea water" type="" uid="6f69577c-9acb-11e6-b7ee-ac72891c3257" vid="590e0dd0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="zonal mean; hence YZT" frequency="day" label="epfz" mipTable="emDayZ" modeling_realm="atmos" mtid="MIPtable::emDayZ" positive="" prov="DynVar [DYVR_daily_a]" provNote="" rowIndex="7" shuffle="0" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Upward Component of the Eliassen-Palm Flux" type="" uid="8b97e000-4a5b-11e6-9cd2-ac72891c3257" vid="85631e0f7a8fdcb10737a525f4134181"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="6hr" label="grplmxrat27" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="22" shuffle="0" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="Graupel Mixing Ratio" type="" uid="f2c7dcbe-26b8-11e7-8344-ac72891c3257" vid="590f21d4-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="mon" label="fddtdip" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="56" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Rate of Change of Net Dissolved Inorganic Phosphate" type="real" uid="e708f1f2-aa7f-11e6-9a4a-5404a60d96b5" vid="80a2832b0619764647393e3815ff399b"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="6hr" label="psl" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="DCPP [DCPP-6hr]" provNote="" rowIndex="10" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Sea Level Pressure" type="real" uid="910446fc-267c-11e7-8933-ac72891c3257" vid="3d23c359f44d6a153c4dcab9e07d7cb6"/>
<item defaultPriority="3" deflate="" deflate_level="" description="zonal mean; hence YZT" frequency="mon" label="tntrl" mipTable="emMonZ" modeling_realm="aerosol" mtid="MIPtable::emMonZ" positive="" prov="DynVar [DYVR_monthly_b]" provNote="" rowIndex="9" shuffle="" stid="f7e94ce4-562c-11e6-a2a4-ac72891c3257" title="Longwave heating rate" type="float" uid="11ecb9cc-c14f-11e6-bb78-ac72891c3257" vid="5917483c-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="evspsblpot" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Amon-02]" provNote="" rowIndex="18" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Potential Evapotranspiration" type="" uid="6f68edb4-9acb-11e6-b7ee-ac72891c3257" vid="2ca539fe3d21e4555ac39018c99b357d"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="swtoacsdust" mipTable="emMon" modeling_realm="atmos" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="9" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="clear sky sw-rf dust at toa" type="" uid="d2370dda-4a9f-11e6-b84e-ac72891c3257" vid="332db812bf06c7af2de1b9d1e0cf58c9"/>
<item defaultPriority="1" deflate="" deflate_level="" description="BC Mass Mixing Ratio" frequency="mon" label="mmrbc" mipTable="emMon" modeling_realm="aerosol" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-aero-02]" provNote="" rowIndex="16" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Elemental carbon mass mixing ratio" type="float" uid="6f6be9ce-9acb-11e6-b7ee-ac72891c3257" vid="d63c4dd912d79edc6221c0e09da24a79"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="cLitterShrub" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="27" shuffle="0" stid="fa243638-267c-11e7-9bed-ac72891c3257" title="Carbon mass in litter on shrub tiles" type="" uid="e70703a6-aa7f-11e6-9a4a-5404a60d96b5" vid="84efa3fa-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="nppOther" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="45" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="net primary production allcoated to other pools (not leaves stem or roots)" type="" uid="e7074974-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0bbbe-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="osaltpsmadvect" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="FAFMIP [fafOmonB]" provNote="" rowIndex="60" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="tendency of sea water salinity expressed as salt content due to parameterized submesoscale advection" type="real" uid="8b9e32d4-4a5b-11e6-9cd2-ac72891c3257" vid="9259f1caedb47c287bc1c9dfc3c6f756"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="hfssIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="23" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Upward Sensible Heat Flux" type="" uid="8121189a-bf17-11e6-b0d8-ac72891c3257" vid="53827c8c-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="yr" label="hfgeoubed" mipTable="IyrAnt" modeling_realm="landIce" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="29" shuffle="0" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="Geothermal Heat flux beneath land ice" type="" uid="d5b48e04-c78d-11e6-9b25-5404a60d96b5" vid="5914a1ea-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Total cloud fraction" frequency="day" label="clt" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="36" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Cloud Fraction" type="real" uid="d227f2d2-4a9f-11e6-b84e-ac72891c3257" vid="7c2249d424dde72f8616d42870a9d425"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="mon" label="siforceintstry" mipTable="SImon" modeling_realm="seaIce" mtid="MIPtable::SImon" positive="" prov="SIMIP [seaicemon]" provNote="" rowIndex="79" shuffle="0" stid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5" title="Internal stress term in force balance (y-component)" type="" uid="7112fc9a-faa7-11e6-bfb7-ac72891c3257" vid="590df5e8-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="hcont300" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="PMIP [PMIP-Omon-02]" provNote="" rowIndex="4" shuffle="0" stid="fa248642-267c-11e7-9bed-ac72891c3257" title="Heat content of upper 300 meters" type="" uid="6f69513c-9acb-11e6-b7ee-ac72891c3257" vid="59138f8a-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="albdirbnd" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="5" shuffle="0" stid="63c22a14-15f2-11e7-87e0-5404a60d96b5" title="Direct surface albedo for each band" type="" uid="7b3016c0-a220-11e6-a33f-ac72891c3257" vid="590f3f16-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="yr" label="cSoil" mipTable="emYr" modeling_realm="land" mtid="MIPtable::emYr" positive="" prov="LUMIP [Lyr_Lut]" provNote="" rowIndex="8" shuffle="" stid="fa23fd12-267c-11e7-9bed-ac72891c3257" title="Carbon Mass in Soil Pool" type="real" uid="d22e30fc-4a9f-11e6-b84e-ac72891c3257" vid="6c08493dc9183b6ec7005a6be27f67f1"/>
<item defaultPriority="3" deflate="" deflate_level="" description="" frequency="subhr" label="tnhus" mipTable="emSubhr" modeling_realm="atmos" mtid="MIPtable::emSubhr" positive="" prov="HighResMIP [1ts]" provNote="" rowIndex="31" shuffle="" stid="f7dcede6-562c-11e6-a2a4-ac72891c3257" title="Tendency of Specific Humidity" type="real" uid="8bb1b624-4a5b-11e6-9cd2-ac72891c3257" vid="2a6093caf9e5cd42fb2fba6bdb73d6db"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="rhTree" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="61" shuffle="0" stid="fa260328-267c-11e7-9bed-ac72891c3257" title="heterotrophic respiration on tree tiles" type="" uid="e7078a24-aa7f-11e6-9a4a-5404a60d96b5" vid="84f1117c-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="mon" label="expn" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="down" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="44" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Sinking Particulate Organic Nitrogen Flux" type="real" uid="e708b9da-aa7f-11e6-9a4a-5404a60d96b5" vid="6fc1dd9341ca569ad866695db9878618"/>
<item defaultPriority="2" deflate="" deflate_level="" description="" frequency="yr" label="grassFrac" mipTable="emYr" modeling_realm="land" mtid="MIPtable::emYr" positive="" prov="DCPP [DCPP-year]" provNote="" rowIndex="58" shuffle="" stid="529dda38-1ed7-11e7-9366-ac72891c3257" title="Natural Grass Fraction" type="real" uid="fb01755a-be37-11e6-bac1-5404a60d96b5" vid="f972af18f1817a7bb5f961b534641394"/>
<item defaultPriority="2" deflate="" deflate_level="" description="liquid_water_content_of_snow_layer" frequency="day" label="lwsnl" mipTable="emDay" modeling_realm="landIce land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="38" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Liquid Water Content of Snow Layer" type="real" uid="d228925a-4a9f-11e6-b84e-ac72891c3257" vid="c7452587dbc0d44ad81fc174a656ecea"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Transpiration" frequency="day" label="tran" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="up" prov="LS3MIP [LWday]" provNote="" rowIndex="12" shuffle="" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Transpiration" type="real" uid="d2281cd0-4a9f-11e6-b84e-ac72891c3257" vid="19e117c2298a016c96c496ee22f39976"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="surface" frequency="day" label="tauupbl" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="DynVar [DYVR_daily_c]" provNote="" rowIndex="15" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="eastward surface stress from planetary boundary layer scheme" type="" uid="8b98040e-4a5b-11e6-9cd2-ac72891c3257" vid="590ea93e-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="TOA outgoing shortwave radiation" frequency="3hr" label="rsut" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="up" prov="HighResMIP [3hr_cloud]" provNote="" rowIndex="15" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Top-of-Atmosphere Outgoing Shortwave Radiation" type="" uid="8bb0ae3c-4a5b-11e6-9cd2-ac72891c3257" vid="b907fef85d4c9571a9457ee1b259bb8f"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="gppGrass" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="54" shuffle="0" stid="fa246dce-267c-11e7-9bed-ac72891c3257" title="gross primary production on grass tiles" type="" uid="e7076878-aa7f-11e6-9a4a-5404a60d96b5" vid="84f0afac-acb7-11e6-b5ee-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Near surface northward wind component" frequency="3hr" label="vas" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="" prov="LS3MIP [L3hr]" provNote="" rowIndex="10" shuffle="" stid="af250420-1e00-11e7-a625-5404a60d96b5" title="Northward Near-Surface Wind" type="real" uid="7b1a2c5c-a220-11e6-a33f-ac72891c3257" vid="86b1cd51f370e346ecb20f1e80cb6ea4"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Convective Rainfall rate" frequency="3hr" label="prrc" mipTable="em3hr" modeling_realm="atmos" mtid="MIPtable::em3hr" positive="" prov="LS3MIP [L3hr]" provNote="" rowIndex="15" shuffle="0" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Convective Rainfall rate" type="" uid="7b1a4246-a220-11e6-a33f-ac72891c3257" vid="5917e2ba-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="3hr" label="aeroptbnd" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="RFMIP [aero_irf]" provNote="" rowIndex="7" shuffle="0" stid="63c353f8-15f2-11e7-87e0-5404a60d96b5" title="Aerosol level extinction optical depth for each band" type="" uid="7b301f8a-a220-11e6-a33f-ac72891c3257" vid="afd8ba4a-a0da-11e6-bc63-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="Change in snow/ice cold content" frequency="day" label="dtesn" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LEday]" provNote="" rowIndex="21" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Change in snow/ice cold content" type="" uid="d227aeee-4a9f-11e6-b84e-ac72891c3257" vid="5913ad62-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="tasminCrop" mipTable="emDay" modeling_realm="atmos" mtid="MIPtable::emDay" positive="" prov="VIACSAB [viacsabExtra]" provNote="" rowIndex="5" shuffle="0" stid="f7e59f36-562c-11e6-a2a4-ac72891c3257" title="Daily Minimum Near-Surface Air Temperature over Crop Tile" type="" uid="2eb1b0aa-b64e-11e6-b9ee-ac72891c3257" vid="1758307c-b622-11e6-bbe2-ac72891c3257"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="surface_evapotranspiration" frequency="day" label="et" mipTable="emDay" modeling_realm="land" mtid="MIPtable::emDay" positive="" prov="LS3MIP [LWday]" provNote="" rowIndex="10" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Total Evapotranspiration" type="" uid="d22813e8-4a9f-11e6-b84e-ac72891c3257" vid="590f0e56-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="3" deflate="0" deflate_level="0" description="" frequency="6hr" label="snowmxrat27" mipTable="6hrPlevpt" modeling_realm="atmos" mtid="MIPtable::6hrPlevpt" positive="" prov="HighResMIP [6hrPlev_intense]" provNote="" rowIndex="21" shuffle="0" stid="f7ea8046-562c-11e6-a2a4-ac72891c3257" title="snow_mixing_ratio" type="" uid="f2cb0dee-26b8-11e7-8344-ac72891c3257" vid="5917d1d0-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="mon" label="zoomicro" mipTable="emMon" modeling_realm="ocean" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="14" shuffle="0" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Mole Concentration of Microzooplankton expressed as Carbon in Sea Water" type="" uid="e7086890-aa7f-11e6-9a4a-5404a60d96b5" vid="9a6d9f4e-dca5-11e5-a52e-5404a60d96b5"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over ice_sheet (meaning grounded ice sheet and floating ice shelf) only, to avoid contamination from other surfaces (eg: permafrost)" frequency="mon" label="acabfIs" mipTable="LImon" mipTableSection="new" modeling_realm="landIce" mtid="MIPtable::LImon" positive="" prov="ISMIP6 [new_LImon]" provNote="" rowIndex="8" shuffle="0" stid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5" title="Ice Sheet Surface Mass Balance flux" type="" uid="8120cf70-bf17-11e6-b0d8-ac72891c3257" vid="53824c12-bf01-11e6-a554-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="quantity averaged over ice sheet (grounded ice sheet and floating ice shelf) only. Needed to analyse the impact of downscaling methods" frequency="mon" label="prsn" mipTable="ImonGre" modeling_realm="atmos" mtid="MIPtable::ImonGre" positive="" prov="ISMIP6 [ImonGre]" provNote="" rowIndex="11" shuffle="" stid="943abae8-8b06-11e6-94d1-5404a60d96b5" title="Snowfall Flux" type="real" uid="d5b2982e-c78d-11e6-9b25-5404a60d96b5" vid="051919eddec810e292c883205c944ceb"/>
<item defaultPriority="1" deflate="" deflate_level="" description="quantity averaged over ice sheet  only, to avoid contamination from other surfaces (eg: permafrost)" frequency="yr" label="snc" mipTable="IyrAnt" modeling_realm="landIce land" mtid="MIPtable::IyrAnt" positive="" prov="ISMIP6 [IyrAnt]" provNote="" rowIndex="16" shuffle="" stid="943b4f4e-8b06-11e6-94d1-5404a60d96b5" title="snow cover fraction" type="float" uid="d5b45c2c-c78d-11e6-9b25-5404a60d96b5" vid="e53e97d7e904fe67aa54b721b3c6a290"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="6hr" label="ua200" mipTable="6hrPlev" modeling_realm="atmos" mtid="MIPtable::6hrPlev" positive="" prov="PMIP [PMIP-6hr]" provNote="" rowIndex="4" shuffle="0" stid="f7ed42fe-562c-11e6-a2a4-ac72891c3257" title="Eastward Wind at 200hPa" type="" uid="d237a092-4a9f-11e6-b84e-ac72891c3257" vid="df11ad28e457894085d760bdfb1cfc96"/>
<item defaultPriority="1" deflate="0" deflate_level="0" description="" frequency="day" label="siu" mipTable="SIday" modeling_realm="seaIce" mtid="MIPtable::SIday" positive="" prov="SIMIP [seaiceday]" provNote="" rowIndex="9" shuffle="0" stid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5" title="X-component of sea ice velocity" type="" uid="b811a784-7c00-11e6-bcdf-ac72891c3257" vid="590e80c6-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="" frequency="mon" label="rhLitter" mipTable="emMon" modeling_realm="land" mtid="MIPtable::emMon" positive="" prov="C4MIP [C_LandT2]" provNote="" rowIndex="50" shuffle="0" stid="f7de23aa-562c-11e6-a2a4-ac72891c3257" title="Carbon Mass Flux into Atmosphere due to Heterotrophic Respiration from Litter on Land" type="" uid="8b81baaa-4a5b-11e6-9cd2-ac72891c3257" vid="59136654-9e49-11e5-803c-0d0b866b59f3"/>
<item defaultPriority="1" deflate="" deflate_level="" description="CALIPSO Scattering Ratio CFAD" frequency="3hr" label="cfadLidarsr532" mipTable="em3hrpt" modeling_realm="atmos" mtid="MIPtable::em3hrpt" positive="" prov="CFMIP [cf3hr_sim_new]" provNote="" rowIndex="7" shuffle="" stid="f7ebc67c-562c-11e6-a2a4-ac72891c3257" title="CALIPSO Scattering Ratio" type="real" uid="8b8aaf66-4a5b-11e6-9cd2-ac72891c3257" vid="823b0a0d39e3f3f3a992c49948fde77c"/>
<item defaultPriority="1" deflate="" deflate_level="" description="" frequency="mon" label="fgco2nat" mipTable="emMon" modeling_realm="ocnBgchem" mtid="MIPtable::emMon" positive="down" prov="C4MIP [C_Ocean_T2]" provNote="" rowIndex="51" shuffle="" stid="f7e4000e-562c-11e6-a2a4-ac72891c3257" title="Surface Downward Flux of Natural CO2" type="real" uid="e708dc08-aa7f-11e6-9a4a-5404a60d96b5" vid="97c037c3357f24c4e06c07123224b400"/>
<item defaultPriority="2" deflate="0" deflate_level="0" description="quantity averaged over floating ice shelf" frequency="mon" label="litempbotfl" mipTable="ImonAnt" modeling_realm="landIce" mtid="MIPtable::ImonAnt" positive="" prov="ISMIP6 [ImonAnt]" provNote="" rowIndex="9" shuffle="0" stid="943a846a-8b06-11e6-94d1-5404a60d96b5" title="Basal temperature of floating ice shelf" type="" uid="d5b3076e-c78d-11e6-9b25-5404a60d96b5" vid="4144f026-4f40-11e6-a814-ac72891c3257"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Surface Pressure .. needed for vertical coordinates" frequency="6hr" label="ps" mipTable="E6hrZ" modeling_realm="atmos" mtid="MIPtable::E6hrZ" positive="" prov="scanDreq.py" provNote="CMIP extra" rowIndex="0" shuffle="" stid="94393b0a-8b06-11e6-94d1-5404a60d96b5" title="Surface Pressure" type="float" uid="a53cd9c1dfe3bda1ed10556d0eb2f265c26f1a7f" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Surface Pressure .. needed for vertical coordinates" frequency="mon" label="ps" mipTable="AERmon" modeling_realm="atmos" mtid="MIPtable::AERmon" positive="" prov="scanDreq.py" provNote="CMIP extra" rowIndex="0" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Pressure" type="float" uid="3ea033746b2e830fcdadb54489c669ae0677d5f6" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Surface Pressure .. needed for vertical coordinates" frequency="3hr" label="ps" mipTable="E3hrPt" modeling_realm="atmos" mtid="MIPtable::E3hrPt" positive="" prov="scanDreq.py" provNote="CMIP extra" rowIndex="0" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Pressure" type="float" uid="1d4f24a81e89bf76af2e687be91cd8a02f14ba68" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Surface Pressure .. needed for vertical coordinates" frequency="3hr" label="ps" mipTable="CF3hr" modeling_realm="atmos" mtid="MIPtable::CF3hr" positive="" prov="scanDreq.py" provNote="CMIP extra" rowIndex="0" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Pressure" type="float" uid="1d3e9509489c555a5027e894ae9eda80b2ff7e6f" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Surface Pressure .. needed for vertical coordinates" frequency="3hr" label="ps" mipTable="CFmon" modeling_realm="atmos" mtid="MIPtable::CFmon" positive="" prov="scanDreq.py" provNote="CMIP extra" rowIndex="0" shuffle="" stid="f7dcac96-562c-11e6-a2a4-ac72891c3257" title="Surface Pressure" type="float" uid="d6b53173f6bfd38172564d0e4a114cca518931dd" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Surface Pressure .. needed for vertical coordinates" frequency="3hr" label="ps" mipTable="Esubhr" modeling_realm="atmos" mtid="MIPtable::Esubhr" positive="" prov="scanDreq.py" provNote="CMIP extra" rowIndex="0" shuffle="" stid="63c0cae8-15f2-11e7-87e0-5404a60d96b5" title="Surface Pressure" type="float" uid="a1fa78aecfc6a17c21ff759d0b322306504a47e1" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Surface Pressure .. needed for vertical coordinates" frequency="3hr" label="ps" mipTable="Efx" modeling_realm="atmos" mtid="MIPtable::Efx" positive="" prov="scanDreq.py" provNote="CMIP extra" rowIndex="0" shuffle="" stid="f7decc10-562c-11e6-a2a4-ac72891c3257" title="Surface Pressure" type="float" uid="b5eb92978a5ba87b82db9b70b12c65c65c151442" vid="8c9504d28596e05586c8e193082ac617"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Provide only if altitude of full model levels is fixed" frequency="fx" label="zfull" mipTable="fx" modeling_realm="atmos" mtid="MIPtable::fx" positive="" prov="scanDreq.py" provNote="CMIP extra" rowIndex="0" shuffle="" stid="6ce574f0-2670-11e7-96a5-ac72891c3257" title="Altitude of Model Full-Levels" type="float" uid="0ea7a738776ef049ed7bef9c701a819c8c9ca036" vid="216ab26c-b89b-11e6-a189-5404a60d96b5"/>
<item defaultPriority="1" deflate="" deflate_level="" description="Provide for models with unstructured grids only" frequency="fx" label="ugrid" mipTable="Ofx" modeling_realm="ocean" mtid="MIPtable::Ofx" positive="" prov="scanDreq.py" provNote="CMIP extra" rowIndex="0" shuffle="" stid="4f06575c-2674-11e7-96a5-ac72891c3257" title="UGRID Grid Information" type="float" uid="55e71213b0f6e3e098a0f0112beb2d50c2732f0a" vid="962e51dc-267b-11e7-96a5-ac72891c3257"/>
</CMORvar>
<objective id="obj" label="objective" title="1.6 Scientific objectives" uid="SECTION:objective" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item description="projections of future carbon fluxes and stores and implications for carbon budgets to achieve targets" label="CarbonProjections" mip="C4MIP" title="carbon cycle projections and carbon budgets" uid="ebb396ca-04e9-11e7-9857-5404a60d96b5"/>
<item description="Attempt to constrain climate sensitivity with observations of past climates (example ...)" label="Sensitivity" mip="CMIP" title="climate sensitivity" uid="ebb48e54-04e9-11e7-9857-5404a60d96b5"/>
<item description="Provide climate data sets useful in driving ecosystem models under paleo conditions  (example ....)" label="Paleo" mip="CMIP" title="paleo ecosystems" uid="ebb490de-04e9-11e7-9857-5404a60d96b5"/>
<item description="Assess downscaled projections of regional climate change" label="ClimateChange" mip="CORDEX" title="CORDEX climate change" uid="ebb4935e-04e9-11e7-9857-5404a60d96b5"/>
<item description="The goal of FAFMIP is to explain the model spread in AOGCM projections of ocean climate change forced by CO2 increase, especially regarding the geographical  patterns and magnitude of sea-level change, ocean heat uptake and thermal  expansion." label="Fafmip" mip="FAFMIP" title="Coupled Mode Spread" uid="ebb4af10-04e9-11e7-9857-5404a60d96b5"/>
<item description="compare of impact of removing thermal effects." label="Thermal" mip="GMMIP" title="Thermal effects of TIP" uid="ebb4bac8-04e9-11e7-9857-5404a60d96b5"/>
<item description="Geoengineering has been proposed as a method of addressing future climate change.  One of the goals of GeoMIP is to assess the feasibility and resulting effects on the climate of using geoengineering to address climate change.  There is also evidence to suggest that geoengineering can be used to manage some forms of uncertainty in dealing with future climate projections." label="Future" mip="GeoMIP" title="future climate change" uid="ebb4c450-04e9-11e7-9857-5404a60d96b5"/>
<item description="Allows an analysis of the downscaling of climate variables over ice sheets. This is only needed when models have a downscaling capability" label="Downscaling" mip="ISMIP6" title="ice sheet downscaling" uid="ebb4dee0-04e9-11e7-9857-5404a60d96b5"/>
<item description="Attempt to constrain climate sensitivity and feedbacks due to ice sheets" label="Sensitivity" mip="ISMIP6" title="climate sensitivity due to ice sheets" uid="ebb4e368-04e9-11e7-9857-5404a60d96b5"/>
<item description="Evaluate model instantaneous radiative forcing from aerosols" label="AerosolIrf" mip="RFMIP" title="Aerosol Instantaneous Forcing" uid="ebb4fea2-04e9-11e7-9857-5404a60d96b5"/>
<item description="Improve understanding of volcanic radiative forcing and constrain related uncertainties. Volcanic eruptions are among the largest sources of uncertainty in historical radiative forcing ." label="Forcing" mip="VolMIP" title="estimation of volcanic radiative forcing" uid="ebb51a4a-04e9-11e7-9857-5404a60d96b5"/>
<item description="quantitative evaluation of carbon cycle and other BGC components of the Earth System" label="CarbonEvaluation" mip="C4MIP" title="carbon cycle evaluation" uid="ebb321a4-04e9-11e7-9857-5404a60d96b5"/>
<item description="To determine the origin, mechanisms and predictability of long timescale variations including the &quot;hiatus&quot; and similar variations of both signs" label="Hiatusetc" mip="DCPP" title="Mechanisms and case studies" uid="ebb4a286-04e9-11e7-9857-5404a60d96b5"/>
<item description="understand the forcing of AMO-related SST to global monsoon changes" label="Amo" mip="GMMIP" title="AMO-related forcing" uid="ebb4b654-04e9-11e7-9857-5404a60d96b5"/>
<item description="Improvement in the simulation of ocean and sea-ice dynamics and the exchange with the overlying atmopshere in hot spots such as the Gulf Stream" label="Ocean" mip="HighResMIP" title="ocean and sea-ice dynamics" uid="ebb4d2a6-04e9-11e7-9857-5404a60d96b5"/>
<item description="diagnose systematic biases in the land modules of current ESMs using constrained land-module only experiments" label="LandDiag" mip="LS3MIP" title="diagnosis of systematic biases in land modules" uid="ebb4e5a2-04e9-11e7-9857-5404a60d96b5"/>
<item description="provide a comprehensive assessment of land surface-,  snow-, and soil moisture-climate feedbacks" label="LandClimFeedback" mip="LS3MIP" title="land processes and climate feedback" uid="ebb4e7dc-04e9-11e7-9857-5404a60d96b5"/>
<item description="Assess and quantify the biogeophysical and carbon cycle consequences for climate of historic and future land cover and land use change" label="Lulcc" mip="LUMIP" title="land use and land cover change forcing on climate" uid="ebb4ea16-04e9-11e7-9857-5404a60d96b5"/>
<item description="uncoupled ocean model evaluation" label="Evaluation" mip="OMIP" title="model evaluation" uid="ebb4ec6e-04e9-11e7-9857-5404a60d96b5"/>
<item description="systematic biases : benchmarking (with comparison with results of previous PMIP phases PMIP1, 2, 3)" label="Evaluation" mip="PMIP" title="evaluation of climate models for climate states different from the present/recent one" uid="ebb4f236-04e9-11e7-9857-5404a60d96b5"/>
<item description="Link climate changes to quantities measured to reconstruct paleoclimates: vegetation or ocean biological characteristics, ice-sheets, isotopic tracers (in particular carbon and oxygen) in ocean, land and ice-sheets" label="PaleoImpacts" mip="PMIP" title="impacts on paleoclimate recording systems" uid="ebb4f79a-04e9-11e7-9857-5404a60d96b5"/>
<item description="Allow an analysis of the sea-ice momentum budget" label="Momentum" mip="SIMIP" title="sea ice momentum budget" uid="ebb50c12-04e9-11e7-9857-5404a60d96b5"/>
<item description="Attempt to constrain climate sensitivity with observations of past climates (example ...)" label="Sensitivity" mip="VIACSAB" title="climate sensitivity" uid="ebb51144-04e9-11e7-9857-5404a60d96b5"/>
<item description="Evaluate models against paleo reconstructions This objective is motivated by the mismatch between simulated and reconstructed post-eruption surface cooling for volcanic eruptions during the last millennium. The evaluation must take into account the idealized character of VolMIP experiments." label="Paleo" mip="VolMIP" title="evaluation against reconstructions" uid="ebb51d92-04e9-11e7-9857-5404a60d96b5"/>
<item description="How well do clouds and other relevant variables simulated by models agree with observations?" label="Cloudevaluation" mip="CFMIP" title="cloud evaluation diagnostics" uid="ebb40bb4-04e9-11e7-9857-5404a60d96b5"/>
<item description="Assess potential for regional climate change detection through downscaling of pre-industrial climate" label="Detection" mip="CORDEX" title="CORDEX climate detection" uid="ebb49890-04e9-11e7-9857-5404a60d96b5"/>
<item description="To determine the effect of volcanoes on decadal variability, predictability and skill" label="Volcanoes" mip="DCPP" title="effects of volcanoes on decadal predictions" uid="ebb4a524-04e9-11e7-9857-5404a60d96b5"/>
<item description="Evaluation of the dynamics of momentum transport in the free atmosphere and at the surface, to understand how dynamical processes contribute to persistent model biases in the mean state and variability of the atmosphere. In the free atmosphere, limited to the  Transformed Eulerian Mean (TEM) zonal momentum balace [2D, daily and monthly.  The TEM diagnostics must be calculated from high frequency (6hr or shorter time intervals) atmospheric fields. The  TEM diagnostics here requested are derived from the TEM primitivie equations in spherical, log-pressure coordinates, see  Andrews et al (1987): Middle Atmospheric Dynamics. Accademic Press. Additional tendencies are requested, for gravity wave diagnostics. The surface momentum balance is 2D, XY, daily and monthly." label="MomentumBudget" mip="DynVar" title="atmospheric TEM zonal momentum budget analysis" uid="ebb4aa06-04e9-11e7-9857-5404a60d96b5"/>
<item description="Very high frequency diagnostics are needed to better understand the performance of particularly important model schemes (such as convection) and be able to understand differences between models more thoroughly." label="ProcessStudies" mip="HighResMIP" title="High frequency diagnostics to understand model performance" uid="ebb4d74c-04e9-11e7-9857-5404a60d96b5"/>
<item description="Provide climate data sets useful in driving ice sheet standalone models (examples are temperature and surface mass balance)." label="Forcing" mip="ISMIP6" title="ice sheet forcing" uid="ebb4dc6a-04e9-11e7-9857-5404a60d96b5"/>
<item description="Allows an analysis of climate over and surrounding ice sheets. This is applicable for any climate model. It does not matter if the AOGCM does  not have a coupled ice sheet model. What is important is that the atmospheric fields are saved over the ice sheet portion of the grid cell to avoid contamination of permafrost for example" label="Analysis" mip="ISMIP6" title="ice sheet climate analysis" uid="ebb4e11a-04e9-11e7-9857-5404a60d96b5"/>
<item description="Allow an analysis of the sea-ice salt budget" label="Salt" mip="SIMIP" title="sea ice salt budget" uid="ebb50f14-04e9-11e7-9857-5404a60d96b5"/>
<item description="Evaluate models against observations. Improve understanding of the role of background climate conditions in determining the climate response to the 1991 Pinatubo eruption. The evaluation must take into account the idealized character of VolMIP experiments." label="Evaluation" mip="VolMIP" title="evaluation against observations" uid="ebb520e4-04e9-11e7-9857-5404a60d96b5"/>
<item description="Improve understanding of the (seasonal to interannual) mechanisms underlying the dynamical atmospheric response to large volcanic eruptions, in particular separating indirect responses from the direct radiative response; improve understanding of decadal feedback mechanisms induced in the coupled ocean-atmosphere system by large volcanic eruptions." label="Dynamics" mip="VolMIP" title="understand atmospheric dynamics forced by volcanic eruptions" uid="ebb527f6-04e9-11e7-9857-5404a60d96b5"/>
<item description="What physical processes and mechanisms are important for a credible simulation of clouds, cloud feedbacks and cloud adjustments in climate models?  Which models have the most credible representations of processes relevant to the simulation of clouds?" label="Cloudprocesses" mip="CFMIP" title="cloud process diagnostics" uid="ebb47ff4-04e9-11e7-9857-5404a60d96b5"/>
<item description="Assess regional climate change signal/noise ratios from analyses of climate change and internal variability generated by CMIP GCMs" label="Signals" mip="CORDEX" title="CORDEX climate signals" uid="ebb495e8-04e9-11e7-9857-5404a60d96b5"/>
<item description="To assess the decadal predictability and forecast skill of forced and internally generated climate" label="Hindcasts" mip="DCPP" title="decadal hindcasts" uid="ebb49db8-04e9-11e7-9857-5404a60d96b5"/>
<item description="To provide quasi-operational decadal predictions and to evaluate their utility for climate services and other applications" label="Forecasts" mip="DCPP" title="operational decadal predictions" uid="ebb4a024-04e9-11e7-9857-5404a60d96b5"/>
<item description="understand the roles of SST forcing and external forcings" label="All" mip="GMMIP" title="All forcing" uid="ebb4b168-04e9-11e7-9857-5404a60d96b5"/>
<item description="understand the forcing of IPO-related tropical SST to global monsoon changes." label="Ipo" mip="GMMIP" title="IPO-related forcing" uid="ebb4b410-04e9-11e7-9857-5404a60d96b5"/>
<item description="understand the combined thermal and mechanical forcing of other plateaus except the TIP." label="Topo" mip="GMMIP" title="Topographic effects except for the TIP" uid="ebb4bd0c-04e9-11e7-9857-5404a60d96b5"/>
<item description="Simulations of geoengineering, particularly multi-model simulations like those found in GeoMIP, can reveal the dominant processes that contribute to systematic model biases." label="Bias" mip="GeoMIP" title="origins of model bias" uid="ebb4c6ee-04e9-11e7-9857-5404a60d96b5"/>
<item description="Improvements in the simulation of extreme events such as heat waves, drought and floods and their drivers" label="ExtremeEvents" mip="HighResMIP" title="Extreme events with high impact on society" uid="ebb4ce0a-04e9-11e7-9857-5404a60d96b5"/>
<item description="response of climate forcing to natural forcings: atmospheric composition, insolation, ice-sheets; role of feedbacks: clouds, ocean, sea-ice, vegetation, aerosols..." label="ForcingsFeedbacks" mip="PMIP" title="response of Earth System to external forcings" uid="ebb4ef5c-04e9-11e7-9857-5404a60d96b5"/>
<item description="Allow an analysis of the sea-ice heat budget" label="Heat" mip="SIMIP" title="sea ice heat budget" uid="ebb509e2-04e9-11e7-9857-5404a60d96b5"/>
<item description="Improve understanding of the mechanism(s) underlying the dynamical climate response to large volcanic eruptions, in particular concerning influence on decadal variability" label="Variability" mip="VolMIP" title="understand how volcanic forcing influence climate variability through response of the coupled ocean-atmosphere" uid="ebb52bca-04e9-11e7-9857-5404a60d96b5"/>
<item description="quantify and understand land and ocean carbon cycle feedbacks with climate" label="CarbonFeedbacks" mip="C4MIP" title="climate-carbon cycle feedbacks" uid="ebb2a9cc-04e9-11e7-9857-5404a60d96b5"/>
<item description="How do clouds and their changes interact with other elements of the climate system?" label="Cloudcoupling" mip="CFMIP" title="cloud couplings in the climate system" uid="ebb48b3e-04e9-11e7-9857-5404a60d96b5"/>
<item description="Evaluation of atmospheric variability across time and spacial scales, including model biases in the position, strength, and statistics of blocking events, storm tracks and the stratospheric polar vortex. Estimate of changes in atmospheric variability. Collateral objectives:  Evaluation of the atmospheric mean state and its changes." label="Variability" mip="DynVar" title="atmospheric variability across scales" uid="ebb4a77c-04e9-11e7-9857-5404a60d96b5"/>
<item description="understand the combined thermal and mechanical forcing of the TIP." label="Tip" mip="GMMIP" title="Tibetan-Iranian plateau" uid="ebb4b884-04e9-11e7-9857-5404a60d96b5"/>
<item description="One of the goals of GeoMIP is to understand the Earth System's response to climate forcing agents - both single forcing agents and combinations of forcings." label="Forcing" mip="GeoMIP" title="climate forcing" uid="ebb4bf64-04e9-11e7-9857-5404a60d96b5"/>
<item description="Improvement of the simulation of large scale atmospheric circulation phenomena such as ENSO, storm tracks, blocking, monsoons, global water cycle" label="LargeScale" mip="HighResMIP" title="large scale atmospheric circulation characteristics" uid="ebb4c946-04e9-11e7-9857-5404a60d96b5"/>
<item description="Improved understanding of biases in the simulated diurnal cycle, and potential consequences for surface fluxes, energy cycle, and extremes" label="DiurnalCycle" mip="HighResMIP" title="Diurnal cycle in temperature, precipitation" uid="ebb4d4ea-04e9-11e7-9857-5404a60d96b5"/>
<item description="analysis of mechanisms of climate variability on long (decadal to centennial) time-scales" label="NaturalVariability" mip="PMIP" title="natural variability of climate system over a millenium" uid="ebb4f484-04e9-11e7-9857-5404a60d96b5"/>
<item description="Run regional climate models for past climate changes, following the same methods as CORDEX for future climate, to test these models in for climates very different from now, and to study the spatial extent of significance for paleo-data" label="Paleorcms" mip="PMIP" title="past climate changes at regional scale" uid="ebb4f9de-04e9-11e7-9857-5404a60d96b5"/>
<item description="Evaluate model effective radaitive forcing using fixed SST and sea-ice experiments. Concentrating on present day forcing but also looking at some past and future forcings" label="Erf" mip="RFMIP" title="Effective Radiative Forcing" uid="ebb500dc-04e9-11e7-9857-5404a60d96b5"/>
<item description="CMIP6 Historical Simulations with prescribed aerosol optical properties for  use in detection atribution studies aimed at identifying magnitude of aerosol forcing.  These runs differ from the corresponding DAMIP runs only in that they require all models to use the same prescribed aerosol forcings.    This distinction is not meaningful when models anyway use the RFMIP historical aerosol climatology as their default." label="RfmipSpaer" mip="RFMIP" title="RFMIP prescribed aerosol historical simulations" uid="ebb50546-04e9-11e7-9857-5404a60d96b5"/>
<item description="Describe sea-ice state" label="State" mip="SIMIP" title="sea ice state" uid="ebb507b2-04e9-11e7-9857-5404a60d96b5"/>
<item description="A systematical assessment of regional climate variability - and associated predictability and prediction - during periods of strong volcanic forcing at both intraseasonal-to-seasonal and interannual-to-decadal time scales" label="Predictability" mip="VolMIP" title="predictability of regional climate response to volcanic forcing" uid="ebb5242c-04e9-11e7-9857-5404a60d96b5"/>
<item description="Attempt to understand past climate change and constrain future projections with observations of past climates." label="Da" mip="DAMIP" title="detection and attribution" uid="ebb49b24-04e9-11e7-9857-5404a60d96b5"/>
<item description="Evaluation of the dynamics of heat transfer in the free atmosphere, characterize impacts of external radiative forcing (solar, volcanic, antropogenic) and enable analysis to break down feedbacks in Earth System models. Additional tendencies are requested, for gravity wave diagnostics." label="HeatBudget" mip="DynVar" title="atmospheric heat budget" uid="ebb4ac90-04e9-11e7-9857-5404a60d96b5"/>
<item description="Improvement in the simulation of small scale weather phenomena with potentially severe impacts, such as tropical cyclones, polar lows" label="SmallScale" mip="HighResMIP" title="small scale weather phenomena" uid="ebb4cbb2-04e9-11e7-9857-5404a60d96b5"/>
<item description="Study of simulated tropical cyclone variability, intensity and position, better understand long term variability, interactions with ocean, and possible future changes" label="TropicalCyclones" mip="HighResMIP" title="Tropical cyclone performance" uid="ebb4d058-04e9-11e7-9857-5404a60d96b5"/>
<item description="Describe the ice sheet state (example are velocities, thickness)" label="State" mip="ISMIP6" title="ice sheet state" uid="ebb4d9b8-04e9-11e7-9857-5404a60d96b5"/>
<item description="Evaluate model instantaneous radiative forcing and fluxes from greenhouse gases" label="GreenhouseGasIrf" mip="RFMIP" title="Greenhouse Gas Instantaneous Forcing" uid="ebb4fc5e-04e9-11e7-9857-5404a60d96b5"/>
<item description="Quantifying adjustments of clouds, precip, land-temperature etc." label="RapidAdjustment" mip="RFMIP" title="Quantifying adjustments" uid="ebb50316-04e9-11e7-9857-5404a60d96b5"/>
<item description="Provide climate data sets useful in driving ecosystem models under paleo conditions  (example ....)" label="Paleo" mip="VIACSAB" title="paleo ecosystems" uid="ebb513b0-04e9-11e7-9857-5404a60d96b5"/>
<item description="Improve the characterization of volcanic forcing and associated climate sensitivity through improved understanding of how the hydrological cycle and the large-scale circulation respond to volcanic forcing, through improved understanding of forced responses of the coupled ocean-atmosphere system, and through improved assessment of internal variability." label="Sensitivity" mip="VolMIP" title="climate sensitivity to volcanic forcing" uid="ebb516a8-04e9-11e7-9857-5404a60d96b5"/>
<item description="Caribbean requirements input to VIACSAB" label="Caribbean" mip="VIACSAB" title="VIACSAB: Caribbean" uid="8dfb7b7a-33eb-11e7-80d4-5404a60d96b5"/>
<item description="APECOSM requirements input to VIACSAB" label="APECOSM" mip="VIACSAB" title="VIACSAB: APECOSM" uid="8dfc2ff2-33eb-11e7-80d4-5404a60d96b5"/>
<item description="climateServices requirements input to VIACSAB" label="climateServices" mip="VIACSAB" title="VIACSAB: climateServices" uid="8dfce6cc-33eb-11e7-80d4-5404a60d96b5"/>
<item description="BOATS requirements input to VIACSAB" label="BOATS" mip="VIACSAB" title="VIACSAB: BOATS" uid="8dfd9bc6-33eb-11e7-80d4-5404a60d96b5"/>
<item description="OSMOSE requirements input to VIACSAB" label="OSMOSE" mip="VIACSAB" title="VIACSAB: OSMOSE" uid="8dfe4fa8-33eb-11e7-80d4-5404a60d96b5"/>
<item description="FISH-MIP requirements input to VIACSAB" label="FISH-MIP" mip="VIACSAB" title="VIACSAB: FISH-MIP" uid="8dfe573c-33eb-11e7-80d4-5404a60d96b5"/>
<item description="Atlantis requirements input to VIACSAB" label="Atlantis" mip="VIACSAB" title="VIACSAB: Atlantis" uid="8dfe5930-33eb-11e7-80d4-5404a60d96b5"/>
<item description="Malaria requirements input to VIACSAB" label="Malaria" mip="VIACSAB" title="VIACSAB: Malaria" uid="8dfe5b9c-33eb-11e7-80d4-5404a60d96b5"/>
<item description="DBPM requirements input to VIACSAB" label="DBPM" mip="VIACSAB" title="VIACSAB: DBPM" uid="8dfe5e1c-33eb-11e7-80d4-5404a60d96b5"/>
<item description="Arctic requirements input to VIACSAB" label="Arctic" mip="VIACSAB" title="VIACSAB: Arctic" uid="8dfe60c4-33eb-11e7-80d4-5404a60d96b5"/>
<item description="AgMIP requirements input to VIACSAB" label="AgMIP" mip="VIACSAB" title="VIACSAB: AgMIP" uid="8dfe6344-33eb-11e7-80d4-5404a60d96b5"/>
<item description="EwE requirements input to VIACSAB" label="EwE" mip="VIACSAB" title="VIACSAB: EwE" uid="8dfe65b0-33eb-11e7-80d4-5404a60d96b5"/>
<item description="SEAPODYM requirements input to VIACSAB" label="SEAPODYM" mip="VIACSAB" title="VIACSAB: SEAPODYM" uid="8dfe6826-33eb-11e7-80d4-5404a60d96b5"/>
<item description="SMHI-FoUo requirements input to VIACSAB" label="SMHI-FoUo" mip="VIACSAB" title="VIACSAB: SMHI-FoUo" uid="8dfe6aa6-33eb-11e7-80d4-5404a60d96b5"/>
<item description="DBEM requirements input to VIACSAB" label="DBEM" mip="VIACSAB" title="VIACSAB: DBEM" uid="8dfe6d44-33eb-11e7-80d4-5404a60d96b5"/>
<item description="CSP requirements input to VIACSAB" label="CSP" mip="VIACSAB" title="VIACSAB: CSP" uid="8dfe6fa6-33eb-11e7-80d4-5404a60d96b5"/>
<item description="POEM requirements input to VIACSAB" label="POEM" mip="VIACSAB" title="VIACSAB: POEM" uid="8dfe7212-33eb-11e7-80d4-5404a60d96b5"/>
<item description="Madingley requirements input to VIACSAB" label="Madingley" mip="VIACSAB" title="VIACSAB: Madingley" uid="8dfe7492-33eb-11e7-80d4-5404a60d96b5"/>
<item description="ISI-MIP requirements input to VIACSAB" label="ISI-MIP" mip="VIACSAB" title="VIACSAB: ISI-MIP" uid="8dfe7712-33eb-11e7-80d4-5404a60d96b5"/>
<item description="Macroecological requirements input to VIACSAB" label="Macroecological" mip="VIACSAB" title="VIACSAB: Macroecological" uid="8dfe7974-33eb-11e7-80d4-5404a60d96b5"/>
<item description="SICCME requirements input to VIACSAB" label="SICCME" mip="VIACSAB" title="VIACSAB: SICCME" uid="8dfe7bd6-33eb-11e7-80d4-5404a60d96b5"/>
</objective>
<spatialShape id="ss" label="spatialShape" title="2.1 Spatial dimensions" uid="SECTION:spatialShape" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item dimensions="latitude|olevel|basin" dimids="dim:latitude dim:olevel dim:basin" label="YB-O" levelFlag="false" levels="0" title="Ocean Basin Meridional Section" uid="a655ffac-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude" dimids="dim:longitude dim:latitude" label="XY-na" levelFlag="true" levels="1" title="Global field (single level)" uid="a656047a-8883-11e5-b571-ac72891c3257"/>
<item dimensions="latitude|plev19" dimids="dim:latitude dim:plev19" label="Y-P19" levelFlag="true" levels="19" title="Atmospheric Zonal Mean (on 19 pressure levels)" uid="a6560948-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|plev7c" dimids="dim:longitude dim:latitude dim:plev7c" label="XY-P7" levelFlag="true" levels="7" title="Global field (7 pressure levels)" uid="a6562f4a-8883-11e5-b571-ac72891c3257"/>
<item dimensions="latitude|basin" dimids="dim:latitude dim:basin" label="YB-na" levelFlag="true" levels="1" title="Ocean Basin Zonal Mean" uid="a6560aec-8883-11e5-b571-ac72891c3257"/>
<item dimensions="oline" dimids="dim:oline" label="TR-na" levelFlag="true" levels="1" title="Ocean Transect" uid="a6560c86-8883-11e5-b571-ac72891c3257"/>
<item dimensions="latitude|plev39" dimids="dim:latitude dim:plev39" label="Y-P39" levelFlag="true" levels="36" title="Atmospheric Zonal Mean (on 39 pressure levels)" uid="a6561924-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|plev27" dimids="dim:longitude dim:latitude dim:plev27" label="XY-P27" levelFlag="true" levels="27" title="Global field (27 pressure levels)" uid="a656114a-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|plev19" dimids="dim:longitude dim:latitude dim:plev19" label="XY-P19" levelFlag="true" levels="19" title="Global field (19 pressure levels)" uid="a6562a9a-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|plev4" dimids="dim:longitude dim:latitude dim:plev4" label="XY-P4" levelFlag="true" levels="4" title="Global field (4 pressure levels)" uid="a65612da-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|plev3" dimids="dim:longitude dim:latitude dim:plev3" label="XY-P3" levelFlag="true" levels="3" title="Global field (3 pressure levels)" uid="a65615fa-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|alt40" dimids="dim:longitude dim:latitude dim:alt40" label="XY-H40" levelFlag="true" levels="40" title="Global field on 40 altitude levels" uid="a6561ab4-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|alt16" dimids="dim:longitude dim:latitude dim:alt16" label="XY-H16" levelFlag="true" levels="16" title="Global field (16 altitudes)" uid="a6562770-8883-11e5-b571-ac72891c3257"/>
<item dimensions="site" dimids="dim:site" label="S-na" levelFlag="true" levels="1" title="Site (specific locations requested by CFMIP)" uid="a6561c44-8883-11e5-b571-ac72891c3257"/>
<item dimensions="latitude" dimids="dim:latitude" label="Y-na" levelFlag="true" levels="1" title="Zonal mean (on surface)" uid="6dc25718-a24a-11e5-a29d-5404a60d96b5"/>
<item dimensions="longitude|latitude|plev7h" dimids="dim:longitude dim:latitude dim:plev7h" label="XY-P7T" levelFlag="true" levels="7" title="Global field (7 pressure tropospheric levels)" uid="9f82d666-609e-11e6-b1b8-ac72891c3257"/>
<item dimensions="alevel" dimids="dim:alevel" label="na-A" levelFlag="false" levels="0" title="Atmospheric profile (model levels)" uid="a65607a4-8883-11e5-b571-ac72891c3257"/>
<item dimensions="xgre|ygre" dimids="dim:xgre dim:ygre" label="XYG-na" levelFlag="true" levels="1" title="Greenland Polar Stereographic Grid" uid="f9cbf75e-596b-11e6-a4be-ac72891c3257"/>
<item dimensions="siline" dimids="dim:siline" label="TRS-na" levelFlag="true" levels="1" title="Sea-ice ocean transect" uid="7f30b964-7fca-11e6-a12d-2358a6a87f04"/>
<item dimensions="latitude|alevel" dimids="dim:latitude dim:alevel" label="Y-A" levelFlag="false" levels="0" title="Zonal mean (on model levels)" uid="a65620f4-8883-11e5-b571-ac72891c3257"/>
<item dimensions="alevel|site" dimids="dim:alevel dim:site" label="S-A" levelFlag="false" levels="0" title="Atmospheric profiles at specified sites" uid="a6562298-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|olevel" dimids="dim:longitude dim:latitude dim:olevel" label="XY-O" levelFlag="false" levels="0" title="Global ocean field on model levels" uid="a6562c2a-8883-11e5-b571-ac72891c3257"/>
<item dimensions="" dimids="" label="na-na" levelFlag="true" levels="1" title="Global mean/constant" uid="a6560fba-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|alevhalf" dimids="dim:longitude dim:latitude dim:alevhalf" label="XY-AH" levelFlag="false" levels="0" title="Global field on model atmosphere half-levels" uid="a6563274-8883-11e5-b571-ac72891c3257"/>
<item dimensions="alevhalf|site" dimids="dim:alevhalf dim:site" label="S-AH" levelFlag="false" levels="0" title="Atmospheric profiles (half levels) at specified sites" uid="a6563594-8883-11e5-b571-ac72891c3257"/>
<item dimensions="xant|yant" dimids="dim:xant dim:yant" label="XYA-na" levelFlag="true" levels="1" title="Antarctic Polar Stereographic Grid" uid="fa1c83ea-596b-11e6-a4be-ac72891c3257"/>
<item dimensions="longitude|latitude|alevel" dimids="dim:longitude dim:latitude dim:alevel" label="XY-A" levelFlag="false" levels="0" title="Global field on model atmosphere levels" uid="a6563724-8883-11e5-b571-ac72891c3257"/>
<item dimensions="latitude|rho|basin" dimids="dim:latitude dim:rho dim:basin" label="YB-R" levelFlag="false" levels="0" title="Ocean Basin Meridional Section (on density surfaces)" uid="a65638b4-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|plev8" dimids="dim:longitude dim:latitude dim:plev8" label="XY-P8" levelFlag="true" levels="8" title="Global field (8 pressure levels)" uid="a6563a44-8883-11e5-b571-ac72891c3257"/>
<item dimensions="longitude|latitude|sdepth" dimids="dim:longitude dim:latitude dim:sdepth" label="XY-S" levelFlag="false" levels="0" title="Global field on soil levels" uid="a6563bca-8883-11e5-b571-ac72891c3257"/>
</spatialShape>
<requestLink id="rql" label="requestLink" title="3.3 Request link: linking a set of variables and a set of experiments" uid="SECTION:requestLink" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item comment="" grid="native" gridreq="" label="Amon" mip="VolMIP" objective="evaluation, paleo, sensitivity, predictability, dynamics, variability" opar="" opt="all" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__10"/>
<item comment="" grid="native" gridreq="" label="day-oth" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="26d3f07c-7c16-11e6-8a5b-ac72891c3257" tab="day-oth" title="day-oth" uid="26d3f07c-7c16-11e6-8a5b-ac72891c3257__02"/>
<item comment="All annual data (pdf table 2.10, 2.11, 2.12 [annual fields only])" grid="" gridreq="no*1" label="Oyr" mip="OMIP" objective="evaluation" opar="" opt="all" refid="316ca362-b97e-11e6-a189-5404a60d96b5" tab="Oyr" title="Oyr" uid="316ca362-b97e-11e6-a189-5404a60d96b5__04"/>
<item comment="hfcorr, wfcorr, masso, pbo, pso, volo, zos, zostoga, masscello, thkcello, thetao, thetaoga, bigthetao, bigthetaoga, tos, tob, tomint, tosga, so, soga, sos, sob, somint, msftbarot, uo, vo, wmo, msftmyz, msftmrho, msftyyz, msftyrho, msftmzmpa, msftmrhompa, msftyzmpa, msftyrhompa, msftmzsmpa, msftyzsmpa, hfbasin, hfbasinpmadv, hfbasinpmdiff, hfbasinpsmadv, hfbasinpadv, fsitherm, wfo, wfonocorr, sfdsi, sfriver, hfsifrazil, hfsifrazil, hfsithermds, hfsithermds, hfds, zfull, zhalf" grid="100km" gridreq="" label="Omon-subset-01" mip="DAMIP" objective="D&amp;A" opar="hfcorr, wfcorr, masso, pbo, pso, volo, zos, zostoga, masscello, thkcello, thetao, thetaoga, bigthetao, bigthetaoga, tos, tob, tosga, so, soga, sos, sob, msftbarot, uo, vo, wmo, msftmyz, msftmrho, msftyyz, msftyrho, msftmzmpa, msftmrhompa, msftyzmpa, msftyrhompa, msftmzsmpa, msftyzsmpa, hfbasin, hfbasinpmadv, hfbasinpmdiff, hfbasinpsmadv, hfbasinpadv, fsitherm, wfo, wfonocorr, sfdsi, sfriver, hfsifrazil, hfsifrazil, hfds, zfullo, zhalfo" opt="list" refid="6eb8fbae-605e-11e6-b84c-ac72891c3257" tab="Omon-subset-01" title="Omon-subset-01" uid="6eb8fbae-605e-11e6-b84c-ac72891c3257__00"/>
<item comment="" grid="" gridreq="Yes" label="aermonthly-subset-01" mip="GeoMIP" objective="forcing,future,bias" opar="dryso4,wetso2,od550lt1aer,reffclwtop,dryss,wetso4,abs550aer,wetss,wetdust,dryso2,drydust,od550aer,emidust,emiss,emiso4,emiso2" opt="list" refid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" tab="aermonthly-subset-01" title="aermonthly-subset-01" uid="e24dbd26-5fd1-11e6-914d-5404a60d96b5__00"/>
<item comment="" grid="native" gridreq="" label="Lmon" mip="GMMIP" objective=" TIP THERMAL TOPO" opar="" opt="all" refid="ef12f23a-5629-11e6-9079-ac72891c3257" tab="Lmon" title="Lmon" uid="ef12f23a-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="native" gridreq="No" label="Oclim" mip="LUMIP" objective="LULCC" opar=" " opt="all" refid="ef12f514-5629-11e6-9079-ac72891c3257" tab="Oclim" title="Oclim" uid="ef12f514-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-6hr" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="efc096a6-5629-11e6-9079-ac72891c3257" tab="DCPP.DCPP-6hr" title="DCPP.DCPP-6hr" uid="efc096a6-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="" gridreq="" label="DCPP-day" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="efc0a1be-5629-11e6-9079-ac72891c3257" tab="DCPP.day" title="DCPP.day" uid="efc0a1be-5629-11e6-9079-ac72891c3257__06"/>
<item comment="" grid="" gridreq="" label="DCPP-LImon" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="efc0c40a-5629-11e6-9079-ac72891c3257" tab="DCPP.LImon" title="DCPP.LImon" uid="efc0c40a-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="native" gridreq="" label="C4MIP-LandT2" mip="C4MIP" objective="all" opar="" opt="all" refid="efc0e43a-5629-11e6-9079-ac72891c3257" tab="C4MIP-LandT2" title="C4MIP-LandT2" uid="efc0e43a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="CFMIP Monthly 3D Process Outputs" grid="native" gridreq="No" label="CFMIP-cfMon3dstdNew" mip="CFMIP" objective="cloudprocesses" opar="all" opt="all" refid="efc0f8bc-5629-11e6-9079-ac72891c3257" tab="CFMIP-cfMon3dstdNew" title="CFMIP-cfMon3dstdNew" uid="efc0f8bc-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Monthly Simulator Outputs (COSP)" grid="native" gridreq="No" label="cfMon-sim" mip="CFMIP" objective="cloudevaluation" opar="all" opt="all" refid="efc1777e-5629-11e6-9079-ac72891c3257" tab="cfMon-sim" title="cfMon-sim" uid="efc1777e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="Yes" label="cfMon-3dstd" mip="GeoMIP" objective="forcing,future,bias" opar="" opt="all" refid="efc17d96-5629-11e6-9079-ac72891c3257" tab="cfMon-3dstd" title="cfMon-3dstd" uid="efc17d96-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="day-oth" mip="GMMIP" objective="ALL IPO AMO TIP THERMAL TOPO" opar="" opt="all" refid="26d3f07c-7c16-11e6-8a5b-ac72891c3257" tab="day-oth" title="day-oth" uid="26d3f07c-7c16-11e6-8a5b-ac72891c3257__03"/>
<item comment="" grid="" gridreq="" label="cfDay-subset-01" mip="VolMIP" objective="evaluation, predictability, dynamics, variability" opar="" opt="ps" refid="38c00b66-61f6-11e6-835f-ac72891c3257" tab="cfDay-subset-01" title="cfDay-subset-01" uid="38c00b66-61f6-11e6-835f-ac72891c3257__00"/>
<item comment="2-D variables: tas, pr, psl, uas                  " grid="model grid" gridreq="yes" label="day-subset-02" mip="DynVar" objective="variability" opar=" tas, pr, psl, uas, vas" opt="list" refid="603bec26-5979-11e6-ac77-ac72891c3257" tab="day-subset-02" title="day-subset-02" uid="603bec26-5979-11e6-ac77-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="Yes" label="Lmon" mip="FAFMIP" objective="fafmip" opar="" opt="all" refid="ef12f23a-5629-11e6-9079-ac72891c3257" tab="Lmon" title="Lmon" uid="ef12f23a-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="No" label="Oclim" mip="HighResMIP" objective="Ocean" opar=" " opt="list" refid="ef12f514-5629-11e6-9079-ac72891c3257" tab="Oclim" title="Oclim" uid="ef12f514-5629-11e6-9079-ac72891c3257__02"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-Lmon-02" mip="PMIP" objective="all except paleoRCMs" opar="" opt="all" refid="efc086d4-5629-11e6-9079-ac72891c3257" tab="PMIP-Lmon-02" title="PMIP-Lmon-02" uid="efc086d4-5629-11e6-9079-ac72891c3257__00"/>
<item comment="CFMIP monthly mean diurnal cycle" grid="native" gridreq="No" label="CFMIP-cf1hrClimMon" mip="CFMIP" objective="cloudevaluation" opar="all" opt="all" refid="efc08bac-5629-11e6-9079-ac72891c3257" tab="CFMIP.cf1hrClimMon" title="CFMIP.cf1hrClimMon" uid="efc08bac-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-6hr" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="efc096a6-5629-11e6-9079-ac72891c3257" tab="DCPP.DCPP-6hr" title="DCPP.DCPP-6hr" uid="efc096a6-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="" gridreq="" label="DCPP-day" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="efc0a1be-5629-11e6-9079-ac72891c3257" tab="DCPP-day" title="DCPP-day" uid="efc0a1be-5629-11e6-9079-ac72891c3257__07"/>
<item comment="data on ocean grid" grid="native" gridreq="YES" label="ISMIP6-Omon" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity" opar="" opt="list" refid="efc0a7cc-5629-11e6-9079-ac72891c3257" tab="ISMIP6.Omon" title="ISMIP6.Omon" uid="efc0a7cc-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Very short period to examine model details" grid="native" gridreq="No" label="HighResMIP-1ts" mip="HighResMIP" objective="Process studies" opar="" opt="all" refid="efc0b2ee-5629-11e6-9079-ac72891c3257" tab="HighResMIP.1ts" title="HighResMIP.1ts" uid="efc0b2ee-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-LImon" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="efc0c40a-5629-11e6-9079-ac72891c3257" tab="DCPP.LImon" title="DCPP.LImon" uid="efc0c40a-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="C4MIP-LandT2" mip="LUMIP" objective="" opar="" opt="all" refid="efc0e43a-5629-11e6-9079-ac72891c3257" tab="C4MIP-LandT2" title="C4MIP-LandT2" uid="efc0e43a-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="" label="cfMon-sim" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="efc1777e-5629-11e6-9079-ac72891c3257" tab="cfMon-sim" title="cfMon-sim" uid="efc1777e-5629-11e6-9079-ac72891c3257__01"/>
<item comment="day_oth required for comparison with DECK and CMIP6 Historical" grid="native" gridreq="No" label="day-oth" mip="CFMIP" objective="cloudcoupling" opar="all" opt="all" refid="26d3f07c-7c16-11e6-8a5b-ac72891c3257" tab="day-oth" title="day-oth" uid="26d3f07c-7c16-11e6-8a5b-ac72891c3257__00"/>
<item comment="" grid="100km" gridreq="" label="Lmon" mip="CMIP" objective="Model Intercomparison" opar="" opt="all" refid="ef12f23a-5629-11e6-9079-ac72891c3257" tab="Lmon" title="Lmon" uid="ef12f23a-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="No" label="Oclim" mip="FAFMIP" objective="fafmip" opar="" opt="all" refid="ef12f514-5629-11e6-9079-ac72891c3257" tab="Oclim" title="Oclim" uid="ef12f514-5629-11e6-9079-ac72891c3257__01"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-Lmon" mip="PMIP" objective="all except paleoRCMs" opar="Lmon" opt="all" refid="efc08f58-5629-11e6-9079-ac72891c3257" tab="PMIP.Lmon" title="PMIP.Lmon" uid="efc08f58-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-6hr" mip="DCPP" objective="forecasts" opar="" opt="all" refid="efc096a6-5629-11e6-9079-ac72891c3257" tab="DCPP.DCPP-6hr" title="DCPP.DCPP-6hr" uid="efc096a6-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="" gridreq="" label="LUMIP-Lmon" mip="LUMIP" objective="LULCC" opar="" opt="all" refid="efc097e6-5629-11e6-9079-ac72891c3257" tab="LUMIP.Lmon" title="LUMIP.Lmon" uid="efc097e6-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-day" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="efc0a1be-5629-11e6-9079-ac72891c3257" tab="DCPP.day" title="DCPP.day" uid="efc0a1be-5629-11e6-9079-ac72891c3257__04"/>
<item comment="Lmon required for comparison with DECK and CMIP6 Historical" grid="native" gridreq="No" label="CFMIP-Lmon" mip="CFMIP" objective="cloudcoupling" opar="all" opt="all" refid="efc0b7d0-5629-11e6-9079-ac72891c3257" tab="CFMIP.Lmon" title="CFMIP.Lmon" uid="efc0b7d0-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-LImon" mip="DCPP" objective="forecasts" opar="" opt="all" refid="efc0c40a-5629-11e6-9079-ac72891c3257" tab="DCPP.LImon" title="DCPP.LImon" uid="efc0c40a-5629-11e6-9079-ac72891c3257__01"/>
<item comment="2-D variables: ozone volume mixing ratio" grid="native" gridreq="" label="DAMIP-aermonthly" mip="DAMIP" objective="chemistry" opar="vmro3" opt="all" refid="efc0f04c-5629-11e6-9079-ac72891c3257" tab="DAMIP-aermonthly" title="DAMIP-aermonthly" uid="efc0f04c-5629-11e6-9079-ac72891c3257__00"/>
<item comment="CFMIP Monthly 3D Process Outputs" grid="native" gridreq="No" label="cfMon-3dstd" mip="CFMIP" objective="cloudprocesses" opar="all" opt="all" refid="efc17d96-5629-11e6-9079-ac72891c3257" tab="cfMon-3dstd" title="cfMon-3dstd" uid="efc17d96-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="100km" gridreq="" label="day-oth" mip="CMIP" objective="Model Intercomparison" opar="" opt="all" refid="26d3f07c-7c16-11e6-8a5b-ac72891c3257" tab="day-oth" title="day-oth" uid="26d3f07c-7c16-11e6-8a5b-ac72891c3257__01"/>
<item comment="All monthly data (pdf table 2.2, 2.3, 2.4, 2.5, 2.6, 2.7, 2.8, 2.9 [monthly fields only])" grid="" gridreq="no*1" label="Omon" mip="OMIP" objective="evaluation" opar="" opt="all" refid="ef12e542-5629-11e6-9079-ac72891c3257" tab="Omon" title="Omon" uid="ef12e542-5629-11e6-9079-ac72891c3257__04"/>
<item comment="" grid="native" gridreq="" label="Lmon" mip="AerChemMIP" objective="" opar="" opt="all" refid="ef12f23a-5629-11e6-9079-ac72891c3257" tab="Lmon" title="Lmon" uid="ef12f23a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="no*1" label="Oclim" mip="CMIP" objective="Model Intercomparison" opar=" " opt="all" refid="ef12f514-5629-11e6-9079-ac72891c3257" tab="Oclim" title="Oclim" uid="ef12f514-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-6hr" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="efc096a6-5629-11e6-9079-ac72891c3257" tab="DCPP.DCPP-6hr" title="DCPP.DCPP-6hr" uid="efc096a6-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-day" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="efc0a1be-5629-11e6-9079-ac72891c3257" tab="DCPP-day" title="DCPP-day" uid="efc0a1be-5629-11e6-9079-ac72891c3257__05"/>
<item comment="" grid="" gridreq="" label="DCPP-LImon" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="efc0c40a-5629-11e6-9079-ac72891c3257" tab="DCPP.LImon" title="DCPP.LImon" uid="efc0c40a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="cfMon-3dstd" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="efc17d96-5629-11e6-9079-ac72891c3257" tab="cfMon-3dstd" title="cfMon-3dstd" uid="efc17d96-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="" label="aerzonal-vert" mip="AerChemMIP" objective="" opar="" opt="all" refid="032f597c-c5ef-11e6-9285-ac72891c3257" tab="aerzonal-vert" title="aerzonal-vert" uid="032f597c-c5ef-11e6-9285-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="Amon" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="list" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__07"/>
<item comment="" grid="native" gridreq="" label="day-ss" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257" tab="day-ss" title="day-ss" uid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="Oyr" mip="AerChemMIP" objective="" opar="" opt="all" refid="316ca362-b97e-11e6-a189-5404a60d96b5" tab="Oyr" title="Oyr" uid="316ca362-b97e-11e6-a189-5404a60d96b5__00"/>
<item comment="" grid="" gridreq="No" label="LS3MIP-L3hr" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="all" refid="6078e6bc-a69a-11e6-9a13-ac72891c3257" tab="LS3MIP-L3hr" title="LS3MIP-L3hr" uid="6078e6bc-a69a-11e6-9a13-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-year" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="6e864660-c76e-11e6-b159-5404a60d96b5" tab="DCPP.DCPP-year" title="DCPP.DCPP-year" uid="6e864660-c76e-11e6-b159-5404a60d96b5__00"/>
<item comment="Not so much needed since using aerosol climatologies" grid="" gridreq="" label="aermonthly-oth" mip="HighResMIP" objective="Large-scale" opar="" opt="list" refid="98d5254e-8344-11e6-959e-ac72891c3257" tab="aermonthly-oth" title="aermonthly-oth" uid="98d5254e-8344-11e6-959e-ac72891c3257__01"/>
<item comment="" grid="" gridreq="" label="esmval" mip="CMIP" objective="esmval" opar="" opt="all" refid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" tab="esmval" title="esmval" uid="b7d445ce-c16a-11e6-bb6a-ac72891c3257__00"/>
<item comment="" grid="" gridreq="Yes" label="Omon" mip="GeoMIP" objective="forcing,future,bias" opar="thkcello,wmo,uo,hfnorth,tos,sos,soga,masscello,hfy,msftmrhoz,masso,pso,mlotst,zos,zostoga,rhopoto,hfydiff,hfbasin,ficeberg2d,thetao,so,zossga,dpco2,msftmyz,tauvo,sfdsi,msftyrhoz,spco2,fddtalk,hfxdiff,omlmax,htovovrt,sltovovrt,vmo,tauuo,volo,zsatarag,fgco2,zosga,wfo,vo,msftyyz,mfo,ficeberg,friver,msftbarot,umo,intpcalcite,intparag,fddtdic,hfx,agessc,hfbasindiff" opt="list" refid="ef12e542-5629-11e6-9079-ac72891c3257" tab="Omon" title="Omon" uid="ef12e542-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-AmonExt" mip="HighResMIP" objective="Extreme events" opar="" opt="all" refid="efc08076-5629-11e6-9079-ac72891c3257" tab="HighResMIP-AmonExt" title="HighResMIP-AmonExt" uid="efc08076-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-6hrPlevExtrDr" mip="HighResMIP" objective="Extreme events" opar="" opt="all" refid="efc09cbe-5629-11e6-9079-ac72891c3257" tab="HighResMIP-6hrPlevExtrDr" title="HighResMIP-6hrPlevExtrDr" uid="efc09cbe-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-day" mip="DCPP" objective="forecasts" opar="" opt="all" refid="efc0a1be-5629-11e6-9079-ac72891c3257" tab="DCPP.day" title="DCPP.day" uid="efc0a1be-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-mon" mip="DCPP" objective="forecasts" opar="" opt="all" refid="efc0d2d8-5629-11e6-9079-ac72891c3257" tab="DCPP.DCPP-mon" title="DCPP.DCPP-mon" uid="efc0d2d8-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="" gridreq="" label="DCPP-Amon" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="efc0e570-5629-11e6-9079-ac72891c3257" tab="DCPP.Amon" title="DCPP.Amon" uid="efc0e570-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Amon required for comparison with DECK and CMIP6 Historical" grid="native" gridreq="No" label="CFMIP-Amon" mip="CFMIP" objective="cloudcoupling" opar="all" opt="all" refid="efc0f650-5629-11e6-9079-ac72891c3257" tab="CFMIP.Amon" title="CFMIP.Amon" uid="efc0f650-5629-11e6-9079-ac72891c3257__00"/>
<item comment="CFMIP 3D 4xCO2 Forcing" grid="native" gridreq="No" label="cfMon-3dmod" mip="CFMIP" objective="cloudprocesses" opar="all" opt="all" refid="efc17eea-5629-11e6-9079-ac72891c3257" tab="cfMon-3dmod" title="cfMon-3dmod" uid="efc17eea-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="LEday-subset" mip="LUMIP" objective="" opar="tasmax,tasmin, pr,hfls,hfss" opt="list" refid="38c009cc-61f6-11e6-835f-ac72891c3257" tab="LEday-subset" title="LEday-subset" uid="38c009cc-61f6-11e6-835f-ac72891c3257__00"/>
<item comment="All daily data (pdf table 2.2 [day fields only])" grid="" gridreq="no*1" label="Oday" mip="OMIP" objective="evaluation" opar="" opt="all" refid="ef12f0e6-5629-11e6-9079-ac72891c3257" tab="Oday" title="Oday" uid="ef12f0e6-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="Lmon" mip="VolMIP" objective="evaluation, predictability, dynamics, variability" opar="" opt="all" refid="ef12f23a-5629-11e6-9079-ac72891c3257" tab="Lmon" title="Lmon" uid="ef12f23a-5629-11e6-9079-ac72891c3257__07"/>
<item comment="" grid="" gridreq="" label="SIMIP-seaicemon" mip="RFMIP" objective="Aerosol IRF" opar="" opt="all" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP-seaicemon" title="SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__08"/>
<item comment="" grid="" gridreq="No" label="LS3MIP-LEday" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="all" refid="efc0a088-5629-11e6-9079-ac72891c3257" tab="LS3MIP-LEday" title="LS3MIP-LEday" uid="efc0a088-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Variables need only be stored for experiments that are carried out anyway. No additional experiments are requested within SIMIP" grid="native" gridreq="Yes" label="SIMIP-seaiceday" mip="SIMIP" objective="state, heat, momentum, salt" opar="" opt="all" refid="efc0a2f4-5629-11e6-9079-ac72891c3257" tab="SIMIP.seaiceday" title="SIMIP.seaiceday" uid="efc0a2f4-5629-11e6-9079-ac72891c3257__00"/>
<item comment="tntogw, tntnongw, vstar, wstar, psistar, f_y, f_z, acceldivf/utenddivf, utendvstarad, utendwstarad, accelogw/utendogw, accelnogw/utendnogw,diabdrag/utenddiabdrag, vtendogw, vtendnogw, vtenddiabdrag, tauu, tauv, meanage" grid="native" gridreq="" label="DynVar-monthly-b" mip="VolMIP" objective="evaluation, sensitivity, predictability, dynamics, variability" opar="2.0" opt="all" refid="efc0bcc6-5629-11e6-9079-ac72891c3257" tab="DynVar-monthly-b" title="DynVar-monthly-b" uid="efc0bcc6-5629-11e6-9079-ac72891c3257__01"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-day" mip="PMIP" objective="all except paleoRCMs" opar="day" opt="all" refid="efc0fef2-5629-11e6-9079-ac72891c3257" tab="PMIP.day" title="PMIP.day" uid="efc0fef2-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="C4MIP-Atm" mip="C4MIP" objective="all" opar="" opt="all" refid="073f5734-c76f-11e6-b159-5404a60d96b5" tab="C4MIP-Atm" title="C4MIP-Atm" uid="073f5734-c76f-11e6-b159-5404a60d96b5__00"/>
<item comment="" grid="" gridreq="" label="cx-day" mip="CORDEX" objective="" opar="" opt="list" refid="0bb0caf0-fe9c-11e6-b43f-5404a60d96b5" tab="cx-day" title="cx-day" uid="0bb0caf0-fe9c-11e6-b43f-5404a60d96b5__00"/>
<item comment="" grid="" gridreq="Yes" label="Amon" mip="GeoMIP" objective="forcing,future,bias" opar="" opt="all" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__06"/>
<item comment="" grid="" gridreq="" label="day-ss" mip="HighResMIP" objective="Small scale" opar="" opt="list" refid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257" tab="day-ss" title="day-ss" uid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257__03"/>
<item comment="" grid="" gridreq="no*1" label="Oyr" mip="CMIP" objective="Model Intercomparison" opar=" " opt="all" refid="316ca362-b97e-11e6-a189-5404a60d96b5" tab="Oyr" title="Oyr" uid="316ca362-b97e-11e6-a189-5404a60d96b5__01"/>
<item comment="parasolRefl - moved from cfMon" grid="" gridreq="" label="HighResMIP-cfMon-02" mip="HighResMIP" objective="Large-scale" opar="" opt="all" refid="365499c2-1f70-11e7-acca-5404a60d96b5" tab="HighResMIP-cfMon-02" title="HighResMIP-cfMon-02" uid="365499c2-1f70-11e7-acca-5404a60d96b5__00"/>
<item comment="" grid="" gridreq="Yes" label="Oclim-subset-01" mip="GeoMIP" objective="forcing,future,bias" opar="difvmo,difvho,difvso" opt="list" refid="38bebefa-61f6-11e6-835f-ac72891c3257" tab="Oclim-subset-01" title="Oclim-subset-01" uid="38bebefa-61f6-11e6-835f-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-year" mip="DCPP" objective="forecasts" opar="" opt="all" refid="6e864660-c76e-11e6-b159-5404a60d96b5" tab="DCPP.DCPP-year" title="DCPP.DCPP-year" uid="6e864660-c76e-11e6-b159-5404a60d96b5__01"/>
<item comment="" grid="native" gridreq="" label="aermonthly-oth" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="98d5254e-8344-11e6-959e-ac72891c3257" tab="aermonthly-oth" title="aermonthly-oth" uid="98d5254e-8344-11e6-959e-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="Omon" mip="GMMIP" objective="IPO AMO " opar="" opt="all" refid="ef12e542-5629-11e6-9079-ac72891c3257" tab="Omon" title="Omon" uid="ef12e542-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="" gridreq="" label="Lmon" mip="RFMIP" objective="ERF, Rapid Adjustment, RFMIP Historical, RFMIP AMIP" opar="" opt="all" refid="ef12f23a-5629-11e6-9079-ac72891c3257" tab="Lmon" title="Lmon" uid="ef12f23a-5629-11e6-9079-ac72891c3257__06"/>
<item comment="" grid="native" gridreq="" label="aerhourly" mip="AerChemMIP" objective="" opar="" opt="all" refid="ef12fbea-5629-11e6-9079-ac72891c3257" tab="aerhourly" title="aerhourly" uid="ef12fbea-5629-11e6-9079-ac72891c3257__00"/>
<item comment="daily zonal mean geopotential height (zg): not a new varariable, but new shape and higher vertical resolution, and requested for a large number of years in the experiments.  The goal is too look at variability on longer time scales." grid="model grid" gridreq="yes" label="DynVar-DYVRzg" mip="DynVar" objective="variability" opar="" opt="" refid="efc07cca-5629-11e6-9079-ac72891c3257" tab="DynVar-DYVRzg" title="DynVar-DYVRzg" uid="efc07cca-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-AmonConv" mip="HighResMIP" objective="Large scale" opar="" opt="all" refid="efc08a76-5629-11e6-9079-ac72891c3257" tab="HighResMIP-AmonConv" title="HighResMIP-AmonConv" uid="efc08a76-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-day" mip="DCPP" objective="forecasts" opar="" opt="all" refid="efc0a1be-5629-11e6-9079-ac72891c3257" tab="DCPP-day" title="DCPP-day" uid="efc0a1be-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="native" gridreq="" label="HighResMIP-Lmon" mip="HighResMIP" objective="Large scale" opar="" opt="list" refid="efc0af4c-5629-11e6-9079-ac72891c3257" tab="HighResMIP.Lmon" title="HighResMIP.Lmon" uid="efc0af4c-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-mon" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="efc0d2d8-5629-11e6-9079-ac72891c3257" tab="DCPP.DCPP-mon" title="DCPP.DCPP-mon" uid="efc0d2d8-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Amon" mip="DCPP" objective="forecasts" opar="" opt="all" refid="efc0e570-5629-11e6-9079-ac72891c3257" tab="DCPP.Amon" title="DCPP.Amon" uid="efc0e570-5629-11e6-9079-ac72891c3257__01"/>
<item comment="Variables need only be stored for experiments that are carried out anyway. No additional experiments are requested within SIMIP" grid="native" gridreq="Yes" label="SIMIP-seaicemon" mip="SIMIP" objective="state, heat, momentum, salt" opar="" opt="all" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP.seaicemon" title="SIMIP.seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__09"/>
<item comment="" grid="" gridreq="No" label="LS3MIP-LWday" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="all" refid="efc09566-5629-11e6-9079-ac72891c3257" tab="LS3MIP.LWday" title="LS3MIP.LWday" uid="efc09566-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Variables need only be stored for experiments that are carried out anyway. No additional experiments are requested within SIMIP" grid="native" gridreq="Yes" label="SIMIP-seaiceday" mip="SIMIP" objective="state, heat, momentum, salt" opar="" opt="Priority 1" refid="efc0a2f4-5629-11e6-9079-ac72891c3257" tab="SIMIP.seaiceday" title="SIMIP.seaiceday" uid="efc0a2f4-5629-11e6-9079-ac72891c3257__01"/>
<item comment="monthly and zonal mean of all these quantities: temperature tendency by orographic gravity wave dissipation [tntogw, K/s], temperature tendency by non-orographic gravity wave dissipation [tntnogw, K/s]" grid="model grid" gridreq="yes" label="DynVar-monthly-b" mip="DynVar" objective="heat budget" opar="#tntogw,tntnogw" opt="" refid="efc0bcc6-5629-11e6-9079-ac72891c3257" tab="DynVar-monthly-b" title="DynVar-monthly-b" uid="efc0bcc6-5629-11e6-9079-ac72891c3257__00"/>
<item comment="data on atmosphere grid" grid="50km or smaller" gridreq="YES" label="ISMIP6-LImon-01" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity" opar="" opt="all" refid="efc0c7ac-5629-11e6-9079-ac72891c3257" tab="ISMIP6-LImon-01" title="ISMIP6-LImon-01" uid="efc0c7ac-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-3hrCloud" mip="HighResMIP" objective="Process studies" opar="" opt="all" refid="efc0f178-5629-11e6-9079-ac72891c3257" tab="HighResMIP-3hrCloud" title="HighResMIP-3hrCloud" uid="efc0f178-5629-11e6-9079-ac72891c3257__00"/>
<item comment="3hrPlev is superset of 6hrPlev_extremes - 3hrPlev is favoured, but if not possible then 6hrPlev_extremes is essential" grid="native" gridreq="No" label="HighResMIP-3hrPlev" mip="HighResMIP" objective="Extreme events" opar="" opt="all" refid="efc0fa56-5629-11e6-9079-ac72891c3257" tab="HighResMIP.3hrPlev" title="HighResMIP.3hrPlev" uid="efc0fa56-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="Amon" mip="GMMIP" objective="ALL IPO AMO TIP THERMAL TOPO" opar="" opt="all" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__05"/>
<item comment="day_ss required for comparison with DECK and CMIP6 Historical" grid="native" gridreq="No" label="day-ss" mip="CFMIP" objective="cloudcoupling" opar="all" opt="all" refid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257" tab="day-ss" title="day-ss" uid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="day-oth" mip="HighResMIP" objective="Small scale" opar="" opt="list" refid="26d3f07c-7c16-11e6-8a5b-ac72891c3257" tab="day-oth" title="day-oth" uid="26d3f07c-7c16-11e6-8a5b-ac72891c3257__04"/>
<item comment="" grid="" gridreq="Yes" label="Oyr" mip="GeoMIP" objective="forcing,future,bias" opar="" opt="all" refid="316ca362-b97e-11e6-a189-5404a60d96b5" tab="Oyr" title="Oyr" uid="316ca362-b97e-11e6-a189-5404a60d96b5__02"/>
<item comment="2-D variables: tas, ps, psl.             " grid="model grid" gridreq="yes" label="Amon-subset-02" mip="DynVar" objective="variability" opar=" tas, pr, psl" opt="list" refid="603bdf74-5979-11e6-ac77-ac72891c3257" tab="Amon-subset-02" title="Amon-subset-02" uid="603bdf74-5979-11e6-ac77-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-year" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="6e864660-c76e-11e6-b159-5404a60d96b5" tab="DCPP.DCPP-year" title="DCPP.DCPP-year" uid="6e864660-c76e-11e6-b159-5404a60d96b5__02"/>
<item comment="aero required for comparison with DECK and CMIP6 Historical" grid="native" gridreq="No" label="CFMIP-aero" mip="CFMIP" objective="cloudcoupling" opar="all" opt="all" refid="90104242-a26e-11e6-bfbb-ac72891c3257" tab="CFMIP.aero" title="CFMIP.aero" uid="90104242-a26e-11e6-bfbb-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="Omon" mip="C4MIP" objective="all" opar="" opt="all" refid="ef12e542-5629-11e6-9079-ac72891c3257" tab="Omon" title="Omon" uid="ef12e542-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="" gridreq="" label="Lmon" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="list" refid="ef12f23a-5629-11e6-9079-ac72891c3257" tab="Lmon" title="Lmon" uid="ef12f23a-5629-11e6-9079-ac72891c3257__05"/>
<item comment="" grid="" gridreq="" label="DCPP-day" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="efc0a1be-5629-11e6-9079-ac72891c3257" tab="DCPP.day" title="DCPP.day" uid="efc0a1be-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="HighResMIP-Amon" mip="HighResMIP" objective="Large scale" opar="" opt="list" refid="efc0a90c-5629-11e6-9079-ac72891c3257" tab="HighResMIP.Amon" title="HighResMIP.Amon" uid="efc0a90c-5629-11e6-9079-ac72891c3257__00"/>
<item comment="data on Greenland ice sheet grid" grid="25km or smaller" gridreq="YES, we rather an specified 5km polar stereographic grid" label="ISMIP6-IyrGre" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity, state" opar="" opt="all" refid="efc0b42e-5629-11e6-9079-ac72891c3257" tab="ISMIP6.IyrGre" title="ISMIP6.IyrGre" uid="efc0b42e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="LImon required for comparison with DECK and CMIP6 Historical" grid="native" gridreq="No" label="CFMIP-LImon" mip="CFMIP" objective="cloudcoupling" opar="all" opt="all" refid="efc0b564-5629-11e6-9079-ac72891c3257" tab="CFMIP.LImon" title="CFMIP.LImon" uid="efc0b564-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-mon" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="efc0d2d8-5629-11e6-9079-ac72891c3257" tab="DCPP.DCPP-mon" title="DCPP.DCPP-mon" uid="efc0d2d8-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="native" gridreq="" label="C4MIP-LandT1" mip="C4MIP" objective="all" opar="" opt="all" refid="efc0da26-5629-11e6-9079-ac72891c3257" tab="C4MIP-LandT1" title="C4MIP-LandT1" uid="efc0da26-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Amon" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="efc0e570-5629-11e6-9079-ac72891c3257" tab="DCPP.Amon" title="DCPP.Amon" uid="efc0e570-5629-11e6-9079-ac72891c3257__02"/>
<item comment="Omon_3d required for comparison with DECK and CMIP6 Historical" grid="1deg" gridreq="Yes" label="CFMIP-Omon-3d" mip="CFMIP" objective="cloudcoupling" opar="all" opt="all" refid="efc16608-5629-11e6-9079-ac72891c3257" tab="CFMIP-Omon-3d" title="CFMIP-Omon-3d" uid="efc16608-5629-11e6-9079-ac72891c3257__00"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-aero-02" mip="PMIP" objective="forcings &amp; feedbacks, evaluation" opar="" opt="all" refid="d0e5741a-1ba7-11e7-8b4b-5404a60d96b5" tab="PMIP-aero-02" title="PMIP-aero-02" uid="d0e5741a-1ba7-11e7-8b4b-5404a60d96b5__00"/>
<item comment="" grid="" gridreq="" label="LImon" mip="LUMIP" objective="LULCC" opar="" opt="all" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__08"/>
<item comment="zmtnt, tntlw, tntsw, zg, tas, ps, psl ta, ua, va, wap, zg, hus" grid="native" gridreq="" label="DynVar-daily-d" mip="VolMIP" objective="evaluation, sensitivity, predictability, dynamics, variability" opar="1.0" opt="all" refid="efc0740a-5629-11e6-9079-ac72891c3257" tab="DynVar-daily-d" title="DynVar-daily-d" uid="efc0740a-5629-11e6-9079-ac72891c3257__01"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-LImon" mip="PMIP" objective="all except paleoRCMs" opar="Limon" opt="all" refid="efc0d544-5629-11e6-9079-ac72891c3257" tab="PMIP.LImon" title="PMIP.LImon" uid="efc0d544-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="RFMIP-OfflineRad" mip="RFMIP" objective="Greenhouse Gas IRF" opar="" opt="all" refid="efc0de22-5629-11e6-9079-ac72891c3257" tab="RFMIP.OfflineRad" title="RFMIP.OfflineRad" uid="efc0de22-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="Yes" label="Amon" mip="FAFMIP" objective="fafmip" opar="" opt="all" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__04"/>
<item comment="" grid="100km" gridreq="" label="day-ss" mip="CMIP" objective="Model Intercomparison" opar="" opt="all" refid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257" tab="day-ss" title="day-ss" uid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257__01"/>
<item comment="" grid="2deg" gridreq="" label="Oyr" mip="LUMIP" objective="LULCC" opar="XYT" opt="all" refid="316ca362-b97e-11e6-a189-5404a60d96b5" tab="Oyr" title="Oyr" uid="316ca362-b97e-11e6-a189-5404a60d96b5__03"/>
<item comment="" grid="" gridreq="" label="cx-mon" mip="CORDEX" objective="" opar="" opt="list" refid="ebf44d18-0008-11e7-b43f-5404a60d96b5" tab="cx-mon" title="cx-mon" uid="ebf44d18-0008-11e7-b43f-5404a60d96b5__00"/>
<item comment="" grid="native" gridreq="" label="Omon" mip="AerChemMIP" objective="" opar="" opt="all" refid="ef12e542-5629-11e6-9079-ac72891c3257" tab="Omon" title="Omon" uid="ef12e542-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="Yes" label="Lmon" mip="GeoMIP" objective="forcing,future,bias" opar="" opt="all" refid="ef12f23a-5629-11e6-9079-ac72891c3257" tab="Lmon" title="Lmon" uid="ef12f23a-5629-11e6-9079-ac72891c3257__04"/>
<item comment="" grid="native" gridreq="" label="aerdaily" mip="AerChemMIP" objective="" opar="" opt="all" refid="ef12feba-5629-11e6-9079-ac72891c3257" tab="aerdaily" title="aerdaily" uid="ef12feba-5629-11e6-9079-ac72891c3257__00"/>
<item comment="3-D variables: ta, ua, va, zg, hus (new because we are requesting more levels than in CMIP5)" grid="model grid" gridreq="yes" label="DynVar-daily-d" mip="DynVar" objective="variability" opar=" #ta, ua, va, wap, zg, hus" opt="" refid="efc0740a-5629-11e6-9079-ac72891c3257" tab="DynVar-daily-d" title="DynVar-daily-d" uid="efc0740a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Outputs at 121 fixed site locations" grid="cfsites" gridreq="No" label="CFMIP-cfSitesNew" mip="CFMIP" objective="cloudprocesses,cloudevaluation" opar="all" opt="all" refid="efc081de-5629-11e6-9079-ac72891c3257" tab="CFMIP-cfSitesNew" title="CFMIP-cfSitesNew" uid="efc081de-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-day" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="efc0a1be-5629-11e6-9079-ac72891c3257" tab="DCPP-day" title="DCPP-day" uid="efc0a1be-5629-11e6-9079-ac72891c3257__01"/>
<item comment="data on Antarctic ice sheet grid" grid="25km or smaller" gridreq="YES, we rather an specified 8km polar stereographic grid" label="ISMIP6-IfxAnt" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity, state" opar="" opt="all" refid="efc0c676-5629-11e6-9079-ac72891c3257" tab="ISMIP6.IfxAnt" title="ISMIP6.IfxAnt" uid="efc0c676-5629-11e6-9079-ac72891c3257__00"/>
<item comment="data on atmosphere grid" grid="1deg" gridreq="YES" label="ISMIP6-Amon" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity" opar="" opt="list" refid="efc0cdc4-5629-11e6-9079-ac72891c3257" tab="ISMIP6.Amon" title="ISMIP6.Amon" uid="efc0cdc4-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-DCPP-mon" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="efc0d2d8-5629-11e6-9079-ac72891c3257" tab="DCPP.DCPP-mon" title="DCPP.DCPP-mon" uid="efc0d2d8-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="C4MIP-LandT1" mip="LUMIP" objective="" opar="" opt="all" refid="efc0da26-5629-11e6-9079-ac72891c3257" tab="C4MIP-LandT1" title="C4MIP-LandT1" uid="efc0da26-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="" gridreq="Yes" label="GeoMIP-aeroGeo" mip="GeoMIP" objective="forcing,future,bias" opar="" opt="all" refid="efc0e304-5629-11e6-9079-ac72891c3257" tab="GeoMIP.aeroGeo" title="GeoMIP.aeroGeo" uid="efc0e304-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Amon" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="efc0e570-5629-11e6-9079-ac72891c3257" tab="DCPP.Amon" title="DCPP.Amon" uid="efc0e570-5629-11e6-9079-ac72891c3257__03"/>
<item comment="vstar, wstar, fy, fz,acceldivf[utenddivf], accelogw[utendogw], accelnogw[utendnogw], diabdrag[utenddiabdrag]" grid="native" gridreq="" label="DAMIP-emMonZ" mip="DAMIP" objective="dynamics, optional" opar="vstar, wstar, fy, fz, acceldivf[utenddivf], accelogw[utendogw], accelnogw[utendnogw], diabdrag[utenddiabdrag]" opt="all" refid="efc0e6a6-5629-11e6-9079-ac72891c3257" tab="DAMIP-emMonZ" title="DAMIP-emMonZ" uid="efc0e6a6-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="day-oth" mip="VolMIP" objective="evaluation, paleo, sensitivity, predictability, dynamics, variability" opar="" opt="all" refid="26d3f07c-7c16-11e6-8a5b-ac72891c3257" tab="day-oth" title="day-oth" uid="26d3f07c-7c16-11e6-8a5b-ac72891c3257__05"/>
<item comment="" grid="native" gridreq="" label="LImon" mip="VolMIP" objective="evaluation, paleo, sensitivity, predictability, dynamics, variability" opar="" opt="all" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__09"/>
<item comment="Ocean Heat Update" grid="native" gridreq="No" label="Oclim" mip="RFMIP" objective="ERF, Rapid Adjustment, RFMIP Historical, RFMIP AMIP" opar=" " opt="all" refid="ef12f514-5629-11e6-9079-ac72891c3257" tab="Oclim" title="Oclim" uid="ef12f514-5629-11e6-9079-ac72891c3257__04"/>
<item comment="" grid="" gridreq="" label="RFMIP-AeroIrf" mip="RFMIP" objective="Aerosol IRF" opar="" opt="all" refid="efc0d7ba-5629-11e6-9079-ac72891c3257" tab="RFMIP-AeroIrf" title="RFMIP-AeroIrf" uid="efc0d7ba-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="Yes" label="day-subset-01" mip="GeoMIP" objective="forcing,future,bias" opar="tasmax,tasmin,pr,prc,uas,vas" opt="list" refid="603be802-5979-11e6-ac77-ac72891c3257" tab="day-subset-01" title="day-subset-01" uid="603be802-5979-11e6-ac77-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="aermonthly-3d" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="97d52748-8344-11e6-959e-ac72891c3257" tab="aermonthly-3d" title="aermonthly-3d" uid="97d52748-8344-11e6-959e-ac72891c3257__01"/>
<item comment="" grid="" gridreq="" label="fx" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="ef12e6f0-5629-11e6-9079-ac72891c3257" tab="fx" title="fx" uid="ef12e6f0-5629-11e6-9079-ac72891c3257__04"/>
<item comment="" grid="100km" gridreq="" label="6hrLev" mip="CMIP" objective="Model Intercomparison" opar="" opt="all" refid="ef12e9c0-5629-11e6-9079-ac72891c3257" tab="6hrLev" title="6hrLev" uid="ef12e9c0-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="100km" gridreq="" label="6hrPlev" mip="CMIP" objective="Model Intercomparison" opar="esmval" opt="all" refid="ef12eca4-5629-11e6-9079-ac72891c3257" tab="6hrPlev" title="6hrPlev" uid="ef12eca4-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="LImon" mip="HighResMIP" objective="Large scale" opar="" opt="list" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__06"/>
<item comment="" grid="" gridreq="no*1" label="Ofx" mip="CMIP" objective="Model Intercomparison" opar=" " opt="all" refid="ef12f672-5629-11e6-9079-ac72891c3257" tab="Ofx" title="Ofx" uid="ef12f672-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="SIMIP-seaicemon" mip="GMMIP" objective=" TIP THERMAL TOPO" opar="" opt="all" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP-seaicemon" title="SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__04"/>
<item comment="CFMIP Daily 2D Process &amp; COSP" grid="native" gridreq="No" label="CFMIP-cfDay2dNew" mip="CFMIP" objective="cloudprocesses,cloudevaluation" opar="all" opt="all" refid="efc07a54-5629-11e6-9079-ac72891c3257" tab="CFMIP-cfDay2dNew" title="CFMIP-cfDay2dNew" uid="efc07a54-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Omon" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="efc0859e-5629-11e6-9079-ac72891c3257" tab="DCPP.Omon" title="DCPP.Omon" uid="efc0859e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="yes" label="LUMIP-LyrLut" mip="LUMIP" objective="LULCC" opar="" opt="all" refid="efc08cec-5629-11e6-9079-ac72891c3257" tab="LUMIP-LyrLut" title="LUMIP-LyrLut" uid="efc08cec-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-dayJet" mip="HighResMIP" objective="Large scale" opar="" opt="all" refid="efc0ace0-5629-11e6-9079-ac72891c3257" tab="HighResMIP-dayJet" title="HighResMIP-dayJet" uid="efc0ace0-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Some ocean variabiles are moved from the priority 1 to the priority 2." grid="100km" gridreq="" label="DAMIP-Omon-p2" mip="DAMIP" objective="D&amp;A" opar="" opt="all" refid="efc0c068-5629-11e6-9079-ac72891c3257" tab="DAMIP-Omon-p2" title="DAMIP-Omon-p2" uid="efc0c068-5629-11e6-9079-ac72891c3257__00"/>
<item comment="CFMIP Daily 2D Process &amp; COSP" grid="native" gridreq="No" label="cfDay-2d" mip="CFMIP" objective="cloudprocesses,cloudevaluation" opar="all" opt="all" refid="efc15f32-5629-11e6-9079-ac72891c3257" tab="cfDay-2d" title="cfDay-2d" uid="efc15f32-5629-11e6-9079-ac72891c3257__00"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-6hrLev" mip="PMIP" objective="all" opar="6hrLev" opt="all" refid="804442e6-a269-11e6-bfbb-ac72891c3257" tab="PMIP.6hrLev" title="PMIP.6hrLev" uid="804442e6-a269-11e6-bfbb-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="aermonthly-3d" mip="AerChemMIP" objective="" opar="" opt="all" refid="97d52748-8344-11e6-959e-ac72891c3257" tab="aermonthly-3d" title="aermonthly-3d" uid="97d52748-8344-11e6-959e-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="cfMon" mip="AerChemMIP" objective="" opar="" opt="all" refid="ef12e39e-5629-11e6-9079-ac72891c3257" tab="cfMon" title="cfMon" uid="ef12e39e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="fx" mip="PMIP" objective="all" opar="" opt="all" refid="ef12e6f0-5629-11e6-9079-ac72891c3257" tab="fx" title="fx" uid="ef12e6f0-5629-11e6-9079-ac72891c3257__05"/>
<item comment="" grid="" gridreq="" label="6hrLev" mip="CORDEX" objective="" opar="" opt="list" refid="ef12e9c0-5629-11e6-9079-ac72891c3257" tab="6hrLev" title="6hrLev" uid="ef12e9c0-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="" gridreq="" label="6hrPlev" mip="CORDEX" objective="" opar="" opt="list" refid="ef12eca4-5629-11e6-9079-ac72891c3257" tab="6hrPlev" title="6hrPlev" uid="ef12eca4-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="" gridreq="" label="LImon" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="list" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__07"/>
<item comment="All fixed/static fields (pdf table 2.1 [XY/XYZ fields only])" grid="" gridreq="no*1" label="Ofx" mip="OMIP" objective="evaluation" opar="" opt="all" refid="ef12f672-5629-11e6-9079-ac72891c3257" tab="Ofx" title="Ofx" uid="ef12f672-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="" gridreq="Yes" label="SIMIP-seaicemon" mip="GeoMIP" objective="forcing,future,bias" opar="" opt="all" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP-seaicemon" title="SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__05"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-Oyr" mip="PMIP" objective="all except paleoRCMs" opar="Oyr" opt="all" refid="efc0845e-5629-11e6-9079-ac72891c3257" tab="PMIP.Oyr" title="PMIP.Oyr" uid="efc0845e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Omon" mip="DCPP" objective="forecasts" opar="" opt="all" refid="efc0859e-5629-11e6-9079-ac72891c3257" tab="DCPP.Omon" title="DCPP.Omon" uid="efc0859e-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="No" label="FAFMIP-fafOyrB" mip="FAFMIP" objective="fafmip" opar=" " opt="all" refid="efc092fa-5629-11e6-9079-ac72891c3257" tab="FAFMIP.fafOyrB" title="FAFMIP.fafOyrB" uid="efc092fa-5629-11e6-9079-ac72891c3257__00"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-PMIP-OIclim" mip="PMIP" objective="all except natural variability" opar="" opt="all" refid="efc0aba0-5629-11e6-9079-ac72891c3257" tab="PMIP.PMIP-OIclim" title="PMIP.PMIP-OIclim" uid="efc0aba0-5629-11e6-9079-ac72891c3257__00"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-PMIP-Lclim" mip="PMIP" objective="forcings &amp; feedbacks, evaluation, paleo-impacts" opar="" opt="all" refid="efc0d684-5629-11e6-9079-ac72891c3257" tab="PMIP.PMIP-Lclim" title="PMIP.PMIP-Lclim" uid="efc0d684-5629-11e6-9079-ac72891c3257__00"/>
<item comment="data on ocean grid" grid="native" gridreq="YES" label="ISMIP6-OmonNew" mip="ISMIP6" objective="analysis,  sensitivity" opar="" opt="all" refid="efc0e7d2-5629-11e6-9079-ac72891c3257" tab="ISMIP6-OmonNew" title="ISMIP6-OmonNew" uid="efc0e7d2-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-3hrExtr" mip="HighResMIP" objective="Extreme events" opar="" opt="all" refid="efc0f3e4-5629-11e6-9079-ac72891c3257" tab="HighResMIP-3hrExtr" title="HighResMIP-3hrExtr" uid="efc0f3e4-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="cfDay-2d" mip="HighResMIP" objective="Large-scale, process studies" opar="" opt="all" refid="efc15f32-5629-11e6-9079-ac72891c3257" tab="cfDay-2d" title="cfDay-2d" uid="efc15f32-5629-11e6-9079-ac72891c3257__01"/>
<item comment="Main Output" grid="native" gridreq="" label="Amon" mip="RFMIP" objective="ERF, Rapid Adjustment, RFMIP Historical, RFMIP AMIP" opar="" opt="all" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__09"/>
<item comment="" grid="" gridreq="Yes" label="emMon-subset-01" mip="GeoMIP" objective="forcing,future,bias" opar="reffclwc,reffclws" opt="list" refid="38c003f0-61f6-11e6-835f-ac72891c3257" tab="emMon-subset-01" title="emMon-subset-01" uid="38c003f0-61f6-11e6-835f-ac72891c3257__00"/>
<item comment="" grid="" gridreq="Yes" label="cf3hr-subset" mip="GeoMIP" objective="forcing,future,bias" opar="pr,prc" opt="list" refid="603bd560-5979-11e6-ac77-ac72891c3257" tab="cf3hr-subset" title="cf3hr-subset" uid="603bd560-5979-11e6-ac77-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="6hrLev" mip="VolMIP" objective="evaluation , sensitivity, predictability, dynamics, variability" opar="" opt="all" refid="ef12e9c0-5629-11e6-9079-ac72891c3257" tab="6hrLev" title="6hrLev" uid="ef12e9c0-5629-11e6-9079-ac72891c3257__02"/>
<item comment="Need native resolution to find, track and examine structure of cyclones" grid="native" gridreq="No" label="6hrPlev" mip="HighResMIP" objective="Tropical cyclones" opar="" opt="all" refid="ef12eca4-5629-11e6-9079-ac72891c3257" tab="6hrPlev" title="6hrPlev" uid="ef12eca4-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="LImon" mip="GMMIP" objective=" TIP THERMAL TOPO" opar="" opt="all" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__04"/>
<item comment="" grid="" gridreq="" label="SIMIP-seaicemon" mip="HighResMIP" objective="Ocean" opar="" opt="list" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP-seaicemon" title="SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__06"/>
<item comment="tauu and tauv are new because asked at daily mean frequency. tauu_pbl [Downward Eastward Wind Stress by planetary boundary layer, Pa], tauv_pbl  [Downward Northward Wind Stress by planetary boundary layer, Pa]" grid="model grid" gridreq="yes" label="DynVar-daily-c" mip="DynVar" objective="momentum budget" opar="#tauu,tauv, tauu_pbl, tauv_pbl" opt="" refid="efc0754a-5629-11e6-9079-ac72891c3257" tab="DynVar-daily-c" title="DynVar-daily-c" uid="efc0754a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Omon" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="efc0859e-5629-11e6-9079-ac72891c3257" tab="DCPP.Omon" title="DCPP.Omon" uid="efc0859e-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-1hrStrat" mip="HighResMIP" objective="Process studies" opar="" opt="all" refid="efc08e22-5629-11e6-9079-ac72891c3257" tab="HighResMIP-1hrStrat" title="HighResMIP-1hrStrat" uid="efc08e22-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="No" label="LS3MIP-LCmon" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="all" refid="efc0b1b8-5629-11e6-9079-ac72891c3257" tab="LS3MIP.LCmon" title="LS3MIP.LCmon" uid="efc0b1b8-5629-11e6-9079-ac72891c3257__00"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-PMIP-Aclim" mip="PMIP" objective="forcings &amp; feedbacks, evaluation, paleo-impacts" opar="" opt="all" refid="efc0be06-5629-11e6-9079-ac72891c3257" tab="PMIP.PMIP-Aclim" title="PMIP.PMIP-Aclim" uid="efc0be06-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="DAMIP-3hr-p2" mip="DAMIP" objective="D&amp;A" opar=" " opt="all" refid="efc0d40e-5629-11e6-9079-ac72891c3257" tab="DAMIP-3hr-p2" title="DAMIP-3hr-p2" uid="efc0d40e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-SImon" mip="PMIP" objective="all except paleoRCMs" opar="Oimon" opt="all" refid="efc0f51a-5629-11e6-9079-ac72891c3257" tab="PMIP-SImon" title="PMIP-SImon" uid="efc0f51a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Tendency terms perhaps for shorter periods" grid="" gridreq="" label="HighResMIP-cfMon" mip="HighResMIP" objective="Large-scale" opar="" opt="all" refid="efc164b4-5629-11e6-9079-ac72891c3257" tab="HighResMIP-cfMon" title="HighResMIP-cfMon" uid="efc164b4-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="Amon" mip="LUMIP" objective="LULCC" opar="XYZT" opt="all" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__08"/>
<item comment="" grid="native" gridreq="" label="cfSites" mip="AerChemMIP" objective="" opar="" opt="all" refid="33b0f666-a27a-11e6-bfbb-ac72891c3257" tab="cfSites" title="cfSites" uid="33b0f666-a27a-11e6-bfbb-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="6hrPlev" mip="VolMIP" objective="evaluation, sensitivity, predictability, dynamics, variability" opar="" opt="all" refid="ef12eca4-5629-11e6-9079-ac72891c3257" tab="6hrPlev" title="6hrPlev" uid="ef12eca4-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="" gridreq="Yes" label="LImon" mip="GeoMIP" objective="forcing,future,bias" opar="" opt="all" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__05"/>
<item comment="" grid="" gridreq="" label="SIMIP-seaicemon" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="list" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP-seaicemon" title="SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__07"/>
<item comment="" grid="" gridreq="" label="DCPP-Omon" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="efc0859e-5629-11e6-9079-ac72891c3257" tab="DCPP.Omon" title="DCPP.Omon" uid="efc0859e-5629-11e6-9079-ac72891c3257__03"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-Amon-02" mip="PMIP" objective="all except paleoRCMs" opar="" opt="all" refid="efc0a560-5629-11e6-9079-ac72891c3257" tab="PMIP-Amon-02" title="PMIP-Amon-02" uid="efc0a560-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Monthly COSP CFADS, Cloud Phase &amp; MODIS" grid="native" gridreq="No" label="CFMIP-cfMonExtra" mip="CFMIP" objective="cloudevaluation" opar="all" opt="all" refid="efc0b082-5629-11e6-9079-ac72891c3257" tab="CFMIP.cfMonExtra" title="CFMIP.cfMonExtra" uid="efc0b082-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="DAMIP-day" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="efc0ca22-5629-11e6-9079-ac72891c3257" tab="DAMIP-day" title="DAMIP-day" uid="efc0ca22-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DAMIP-day-zm" mip="DAMIP" objective="dynamics" opar="" opt="all" refid="efc0ede0-5629-11e6-9079-ac72891c3257" tab="DAMIP-day-zm" title="DAMIP-day-zm" uid="efc0ede0-5629-11e6-9079-ac72891c3257__00"/>
<item comment="data on Antarctic ice sheet grid" grid="25km or smaller" gridreq="YES, we rather an specified 8km polar stereographic grid" label="ISMIP6-IyrAnt" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity, state" opar="" opt="all" refid="efc0fc0e-5629-11e6-9079-ac72891c3257" tab="ISMIP6.IyrAnt" title="ISMIP6.IyrAnt" uid="efc0fc0e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="CFMIP 2D 4xCO2 Forcing " grid="native" gridreq="No" label="cfMon-2dmod" mip="CFMIP" objective="cloudprocesses" opar="all" opt="all" refid="efc17512-5629-11e6-9079-ac72891c3257" tab="cfMon-2dmod" title="cfMon-2dmod" uid="efc17512-5629-11e6-9079-ac72891c3257__00"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-cfMon" mip="PMIP" objective="forcings &amp; feedbacks" opar="cfMon" opt="all" refid="7fec3538-a269-11e6-bfbb-ac72891c3257" tab="PMIP.cfMon" title="PMIP.cfMon" uid="7fec3538-a269-11e6-bfbb-ac72891c3257__00"/>
<item comment="" grid="" gridreq="no*1" label="Odec" mip="OMIP" objective="evaluation" opar="" opt="all" refid="9d64b154-ba14-11e6-a189-5404a60d96b5" tab="Odec" title="Odec" uid="9d64b154-ba14-11e6-a189-5404a60d96b5__01"/>
<item comment="" grid="100km" gridreq="" label="fx" mip="CMIP" objective="Model Intercomparison" opar=" " opt="all" refid="ef12e6f0-5629-11e6-9079-ac72891c3257" tab="fx" title="fx" uid="ef12e6f0-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="LImon" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="SIMIP-seaicemon" mip="C4MIP" objective="all" opar="" opt="all" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP-seaicemon" title="SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__00"/>
<item comment="daily and zonal means: utendogw, utendnogw;  and residual mean mass stream function [psistar, kg/s], u-tendency by residual northward wind advection [utendvstarad, m/s**2], u-tendency by residual upward wind advection [utendwstarad, m/s**2], mean age of air [years]" grid="model grid" gridreq="yes" label="DynVar-daily-b" mip="DynVar" objective="momentum budget" opar="#utendogw,utendnogw, and psistar, utendvstarad, utendwstarad" opt="" refid="efc07680-5629-11e6-9079-ac72891c3257" tab="DynVar-daily-b" title="DynVar-daily-b" uid="efc07680-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="FAFMIP-fafOmon" mip="FAFMIP" objective="fafmip" opar=" " opt="all" refid="efc091c4-5629-11e6-9079-ac72891c3257" tab="FAFMIP.fafOmon" title="FAFMIP.fafOmon" uid="efc091c4-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="DAMIP-6hrPlev-p2" mip="DAMIP" objective="D&amp;A" opar=" " opt="all" refid="efc09a52-5629-11e6-9079-ac72891c3257" tab="DAMIP-6hrPlev-p2" title="DAMIP-6hrPlev-p2" uid="efc09a52-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-1hrLev" mip="HighResMIP" objective="Extreme events" opar="" opt="all" refid="efc09e12-5629-11e6-9079-ac72891c3257" tab="HighResMIP.1hrLev" title="HighResMIP.1hrLev" uid="efc09e12-5629-11e6-9079-ac72891c3257__00"/>
<item comment="monthly mean:  vstar, wstar, fy, fz,acceldivf -&gt; suggest a new name: utenddivf" grid="model grid" gridreq="yes" label="DynVar-monthly-c" mip="DynVar" objective="momentum budget" opar="#vstar, wstar, fy, fz, utenddivf" opt="list" refid="efc0bb72-5629-11e6-9079-ac72891c3257" tab="DynVar-monthly-c" title="DynVar-monthly-c" uid="efc0bb72-5629-11e6-9079-ac72891c3257__00"/>
<item comment="variables required as input to VolMIP Tier 1 mechanistic experiments and to assess whether the applied  forcing is sufficiently constrained among the models" grid="native" gridreq="" label="VolMIP-VIRF" mip="VolMIP" objective="forcing, dynamics, variability, sensitivity" opar="" opt="all" refid="efc0c1a8-5629-11e6-9079-ac72891c3257" tab="VolMIP.VIRF" title="VolMIP.VIRF" uid="efc0c1a8-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="C4MIP-3hr" mip="C4MIP" objective="Carbon evaluation" opar="" opt="all" refid="efc0dcd8-5629-11e6-9079-ac72891c3257" tab="C4MIP-3hr" title="C4MIP-3hr" uid="efc0dcd8-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Lmon" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="efc0fdbc-5629-11e6-9079-ac72891c3257" tab="DCPP.Lmon" title="DCPP.Lmon" uid="efc0fdbc-5629-11e6-9079-ac72891c3257__00"/>
<item comment="data on atmosphere grid" grid="1deg" gridreq="YES" label="ISMIP6-fxNew" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity" opar="" opt="all" refid="efc10028-5629-11e6-9079-ac72891c3257" tab="ISMIP6-fxNew" title="ISMIP6-fxNew" uid="efc10028-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="Omon-oth" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="list" refid="efc143a8-5629-11e6-9079-ac72891c3257" tab="Omon-oth" title="Omon-oth" uid="efc143a8-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="Omon-3d" mip="HighResMIP" objective="Ocean" opar="" opt="list" refid="efc154f6-5629-11e6-9079-ac72891c3257" tab="Omon-3d" title="Omon-3d" uid="efc154f6-5629-11e6-9079-ac72891c3257__01"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-cfDay" mip="PMIP" objective="forcings &amp; feedbacks" opar="cfDay" opt="all" refid="2733816c-a26e-11e6-bfbb-ac72891c3257" tab="PMIP.cfDay" title="PMIP.cfDay" uid="2733816c-a26e-11e6-bfbb-ac72891c3257__00"/>
<item comment="3-D variables: ta, ua, va, wap, zg, hus" grid="model grid" gridreq="yes" label="Amon-subset-01" mip="DynVar" objective="variability" opar=" ta, ua, va, wap, zg, hus" opt="list" refid="603bdb1e-5979-11e6-ac77-ac72891c3257" tab="Amon-subset-01" title="Amon-subset-01" uid="603bdb1e-5979-11e6-ac77-ac72891c3257__00"/>
<item comment="" grid="" gridreq="No" label="fxLS3MIP" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="all" refid="8ac1bf7e-c76b-11e6-b159-5404a60d96b5" tab="fxLS3MIP" title="fxLS3MIP" uid="8ac1bf7e-c76b-11e6-b159-5404a60d96b5__00"/>
<item comment="" grid="" gridreq="no*1" label="Odec" mip="CMIP" objective="Model Intercomparison" opar=" " opt="all" refid="9d64b154-ba14-11e6-a189-5404a60d96b5" tab="Odec" title="Odec" uid="9d64b154-ba14-11e6-a189-5404a60d96b5__00"/>
<item comment="" grid="" gridreq="" label="esmval-3hr" mip="CMIP" objective="esmval" opar="" opt="all" refid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" tab="esmval-3hr" title="esmval-3hr" uid="b8257ed0-c16a-11e6-bb6a-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="fx" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="ef12e6f0-5629-11e6-9079-ac72891c3257" tab="fx" title="fx" uid="ef12e6f0-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="Yes" label="LImon" mip="FAFMIP" objective="fafmip" opar="" opt="all" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="" gridreq="fx" label="SIMIP-seaicemon" mip="CMIP" objective="Model Intercomparison" opar="" opt="all" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP-seaicemon" title="SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__01"/>
<item comment="zmtnt, tntlw, tntsw" grid="native" gridreq="" label="DAMIP-emMon" mip="DAMIP" objective="radiation" opar="zmtnt, tntlw, tntsw" opt="all" refid="efc07928-5629-11e6-9079-ac72891c3257" tab="DAMIP-emMon" title="DAMIP-emMon" uid="efc07928-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="FAFMIP-Omon" mip="FAFMIP" objective="fafmip" opar="" opt="all" refid="efc091c4-5629-11e6-9079-ac72891c3257" tab="FAFMIP-Omon" title="FAFMIP-Omon" uid="efc091c4-5629-11e6-9079-ac72891c3257__01"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-aero" mip="PMIP" objective="forcings &amp; feedbacks, evaluation" opar="aero" opt="all" refid="efc09430-5629-11e6-9079-ac72891c3257" tab="PMIP.aero" title="PMIP.aero" uid="efc09430-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-6hrPlevExtr" mip="HighResMIP" objective="Extreme events" opar="" opt="all" refid="efc0b69a-5629-11e6-9079-ac72891c3257" tab="HighResMIP-6hrPlevExtr" title="HighResMIP-6hrPlevExtr" uid="efc0b69a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-AmonSparc" mip="HighResMIP" objective="Large scale" opar="" opt="all" refid="efc0bf3c-5629-11e6-9079-ac72891c3257" tab="HighResMIP-AmonSparc" title="HighResMIP-AmonSparc" uid="efc0bf3c-5629-11e6-9079-ac72891c3257__00"/>
<item comment="data on Antarctic ice sheet grid" grid="25km or smaller" gridreq="YES, we rather an specified 8km polar stereographic grid" label="ISMIP6-ImonAnt" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity, state" opar="" opt="all" refid="efc0df62-5629-11e6-9079-ac72891c3257" tab="ISMIP6.ImonAnt" title="ISMIP6.ImonAnt" uid="efc0df62-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Lmon" mip="DCPP" objective="forecasts" opar="" opt="all" refid="efc0fdbc-5629-11e6-9079-ac72891c3257" tab="DCPP.Lmon" title="DCPP.Lmon" uid="efc0fdbc-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="" gridreq="no*1" label="Omon-3d" mip="CMIP" objective="Model Intercomparison" opar=" " opt="all" refid="efc154f6-5629-11e6-9079-ac72891c3257" tab="Omon-3d" title="Omon-3d" uid="efc154f6-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="aermonthly-2d" mip="AerChemMIP" objective="" opar="" opt="all" refid="fa8d867e-7e3e-11e6-9b26-f192b4cee584" tab="aermonthly-2d" title="aermonthly-2d" uid="fa8d867e-7e3e-11e6-9b26-f192b4cee584__00"/>
<item comment="tntogw, tntnongw, vstar, wstar, psistar, f_y, f_z, acceldivf/utenddivf, utendvstarad, utendwstarad, accelogw/utendogw, accelnogw/utendnogw,diabdrag/utenddiabdrag, vtendogw, vtendnogw, vtenddiabdrag, tauu, tauv, meanage" grid="native" gridreq="" label="DynVar-monthly-c" mip="VolMIP" objective="evaluation, sensitivity, predictability, dynamics, variability" opar="2.0" opt="all" refid="efc0bb72-5629-11e6-9079-ac72891c3257" tab="DynVar-monthly-c" title="DynVar-monthly-c" uid="efc0bb72-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="" label="aerzonal" mip="AerChemMIP" objective="" opar="" opt="all" refid="2dbb3f08-c5ef-11e6-9285-ac72891c3257" tab="aerzonal" title="aerzonal" uid="2dbb3f08-c5ef-11e6-9285-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="cldAerAdj" mip="RFMIP" objective="Rapid adjustment" opar="" opt="all" refid="4f774dc2-a0ff-11e6-bc63-ac72891c3257" tab="cldAerAdj" title="cldAerAdj" uid="4f774dc2-a0ff-11e6-bc63-ac72891c3257__00"/>
<item comment="Daily Aerosol Loadings and Cloud top radius/droplet concentrations" grid="native" gridreq="No" label="aerdaily-2d" mip="CFMIP" objective="cloudprocesses,cloudevaluation" opar="all" opt="all" refid="ee2fcab6-7e40-11e6-9b26-f192b4cee584" tab="aerdaily-2d" title="aerdaily-2d" uid="ee2fcab6-7e40-11e6-9b26-f192b4cee584__00"/>
<item comment="" grid="" gridreq="" label="fx" mip="DCPP" objective="forecasts" opar="" opt="all" refid="ef12e6f0-5629-11e6-9079-ac72891c3257" tab="fx" title="fx" uid="ef12e6f0-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="LImon" mip="C4MIP" objective="all" opar="" opt="all" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="100km" gridreq="" label="SIMIP-seaicemon" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP-seaicemon" title="SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__02"/>
<item comment="daily mean: vstar, wstar, fy, fz, acceldivf -&gt; suggest new name: utenddivf" grid="model grid" gridreq="yes" label="DynVar-daily-a" mip="DynVar" objective="momentum budget" opar="#vstar, wstar, fy, fz, utenddivf" opt="list" refid="efc077e8-5629-11e6-9079-ac72891c3257" tab="DynVar-daily-a" title="DynVar-daily-a" uid="efc077e8-5629-11e6-9079-ac72891c3257__00"/>
<item comment="Outputs at 121 fixed site locations" grid="cfsites" gridreq="No" label="CFMIP-cfSites" mip="CFMIP" objective="cloudprocesses,cloudevaluation" opar="all" opt="all" refid="efc07e0a-5629-11e6-9079-ac72891c3257" tab="CFMIP.cfSites" title="CFMIP.cfSites" uid="efc07e0a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="C4MIP-OceanT2" mip="C4MIP" objective="all" opar="" opt="all" refid="efc0880a-5629-11e6-9079-ac72891c3257" tab="C4MIP-OceanT2" title="C4MIP-OceanT2" uid="efc0880a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="data on Greenland ice sheet grid" grid="25km or smaller" gridreq="YES, we rather an specified 5km polar stereographic grid" label="ISMIP6-ImonGre" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity, state" opar="" opt="all" refid="efc09b88-5629-11e6-9079-ac72891c3257" tab="ISMIP6.ImonGre" title="ISMIP6.ImonGre" uid="efc09b88-5629-11e6-9079-ac72891c3257__00"/>
<item comment="monthly mean: utendogw, utendnogw,  v-tendency by orographic gravity waves [vtendogw, m/s**2], v-tendency by non-orographic gravity waves [vtendnogw, m/s**2]" grid="model grid" gridreq="yes" label="DynVar-monthly-d" mip="DynVar" objective="momentum budget" opar="#utendogw, utendnogw, vtendogw,vtendnogw" opt="" refid="efc0b906-5629-11e6-9079-ac72891c3257" tab="DynVar-monthly-d" title="DynVar-monthly-d" uid="efc0b906-5629-11e6-9079-ac72891c3257__00"/>
<item comment="monthly and zonal mean: zmtnt, tntlw, tntsw" grid="model grid" gridreq="yes" label="DynVar-monthly-a" mip="DynVar" objective="heat budget" opar="#zmtnt, tntlw, tntsw" opt="list" refid="efc0ba3c-5629-11e6-9079-ac72891c3257" tab="DynVar-monthly-a" title="DynVar-monthly-a" uid="efc0ba3c-5629-11e6-9079-ac72891c3257__00"/>
<item comment="aero_oth required for comparison with DECK and CMIP6 Historical" grid="native" gridreq="No" label="CFMIP-SImon" mip="CFMIP" objective="cloudcoupling" opar="all" opt="all" refid="efc0db98-5629-11e6-9079-ac72891c3257" tab="CFMIP-SImon" title="CFMIP-SImon" uid="efc0db98-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Lmon" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="efc0fdbc-5629-11e6-9079-ac72891c3257" tab="DCPP.Lmon" title="DCPP.Lmon" uid="efc0fdbc-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="" gridreq="no*1" label="Omon-oth" mip="CMIP" objective="Model Intercomparison" opar="" opt="all" refid="efc143a8-5629-11e6-9079-ac72891c3257" tab="Omon-oth" title="Omon-oth" uid="efc143a8-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="cfDay-3d" mip="HighResMIP" objective="Large-scale, process studies" opar="" opt="all" refid="efc14b32-5629-11e6-9079-ac72891c3257" tab="cfDay-3d" title="cfDay-3d" uid="efc14b32-5629-11e6-9079-ac72891c3257__01"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-Amon" mip="PMIP" objective="all except paleoRCMs" opar="Amon" opt="all" refid="efc08328-5629-11e6-9079-ac72891c3257" tab="PMIP.Amon" title="PMIP.Amon" uid="efc08328-5629-11e6-9079-ac72891c3257__00"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-day-02" mip="PMIP" objective="forcings &amp; feedbacks, evaluation, paleo-impacts" opar="" opt="all" refid="efc09f48-5629-11e6-9079-ac72891c3257" tab="PMIP-day-02" title="PMIP-day-02" uid="efc09f48-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="aer6hr" mip="AerChemMIP" objective="" opar="" opt="all" refid="188bc360-c5ee-11e6-9285-ac72891c3257" tab="aer6hr" title="aer6hr" uid="188bc360-c5ee-11e6-9285-ac72891c3257__00"/>
<item comment="day_oth required for comparison with DECK and CMIP6 Historical" grid="native" gridreq="No" label="CFMIP-fx" mip="CFMIP" objective="cloudcoupling" opar="all" opt="all" refid="5c72dd92-a277-11e6-bfbb-ac72891c3257" tab="CFMIP.fx" title="CFMIP.fx" uid="5c72dd92-a277-11e6-bfbb-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="fx" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="ef12e6f0-5629-11e6-9079-ac72891c3257" tab="fx" title="fx" uid="ef12e6f0-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="100km" gridreq="" label="LImon" mip="CMIP" objective="Model Intercomparison" opar="" opt="all" refid="ef12f3ac-5629-11e6-9079-ac72891c3257" tab="LImon" title="LImon" uid="ef12f3ac-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="No" label="SIMIP-seaicemon" mip="FAFMIP" objective="fafmip" opar="" opt="all" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP-seaicemon" title="SIMIP-seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__03"/>
<item comment="Variables need only be stored for experiments that are carried out anyway. No additional experiments are requested within SIMIP" grid="native" gridreq="Yes" label="SIMIP-seaicemon" mip="SIMIP" objective="state, heat, momentum, salt" opar="" opt="Priority 1" refid="efc072ca-5629-11e6-9079-ac72891c3257" tab="SIMIP.seaicemon" title="SIMIP.seaicemon" uid="efc072ca-5629-11e6-9079-ac72891c3257__10"/>
<item comment="Daily COSP PARASOL &amp; MODIS" grid="native" gridreq="No" label="CFMIP-cfDayExtra" mip="CFMIP" objective="cloudevaluation" opar="all" opt="all" refid="efc07b94-5629-11e6-9079-ac72891c3257" tab="CFMIP.cfDayExtra" title="CFMIP.cfDayExtra" uid="efc07b94-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="DAMIP-Amon-new" mip="DAMIP" objective="chemistry" opar=" " opt="all" refid="efc0aa60-5629-11e6-9079-ac72891c3257" tab="DAMIP-Amon-new" title="DAMIP-Amon-new" uid="efc0aa60-5629-11e6-9079-ac72891c3257__00"/>
<item comment="tntogw, tntnongw, vstar, wstar, psistar, f_y, f_z, acceldivf/utenddivf, utendvstarad, utendwstarad, accelogw/utendogw, accelnogw/utendnogw,diabdrag/utenddiabdrag, vtendogw, vtendnogw, vtenddiabdrag, tauu, tauv, meanage" grid="native" gridreq="" label="DynVar-monthly-d" mip="VolMIP" objective="evaluation, sensitivity, predictability, dynamics, variability" opar="2.0" opt="all" refid="efc0b906-5629-11e6-9079-ac72891c3257" tab="DynVar-monthly-d" title="DynVar-monthly-d" uid="efc0b906-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-AmonDiag" mip="HighResMIP" objective="Large scale" opar="" opt="all" refid="efc0c540-5629-11e6-9079-ac72891c3257" tab="HighResMIP-AmonDiag" title="HighResMIP-AmonDiag" uid="efc0c540-5629-11e6-9079-ac72891c3257__00"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-PMIP-LIclim" mip="PMIP" objective="all except natural variability" opar="" opt="all" refid="efc0c8e2-5629-11e6-9079-ac72891c3257" tab="PMIP.PMIP-LIclim" title="PMIP.PMIP-LIclim" uid="efc0c8e2-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="HighResMIP-6hrPlevIntense" mip="HighResMIP" objective="Extreme events" opar="" opt="all" refid="efc0d1a2-5629-11e6-9079-ac72891c3257" tab="HighResMIP-6hrPlevIntense" title="HighResMIP-6hrPlevIntense" uid="efc0d1a2-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-Lmon" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="efc0fdbc-5629-11e6-9079-ac72891c3257" tab="DCPP.Lmon" title="DCPP.Lmon" uid="efc0fdbc-5629-11e6-9079-ac72891c3257__03"/>
<item comment="" grid="" gridreq="" label="Omon-oth" mip="HighResMIP" objective="Ocean" opar="" opt="list" refid="efc143a8-5629-11e6-9079-ac72891c3257" tab="Omon-oth" title="Omon-oth" uid="efc143a8-5629-11e6-9079-ac72891c3257__01"/>
<item comment="CFMIP Daily 3D Process &amp; COSP" grid="native" gridreq="No" label="cfDay-3d" mip="CFMIP" objective="cloudprocesses,cloudevaluation" opar="all" opt="all" refid="efc14b32-5629-11e6-9079-ac72891c3257" tab="cfDay-3d" title="cfDay-3d" uid="efc14b32-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="Omon-3d" mip="LS3MIP" objective="land-diag, land-clim-feedback" opar="" opt="list" refid="efc154f6-5629-11e6-9079-ac72891c3257" tab="Omon-3d" title="Omon-3d" uid="efc154f6-5629-11e6-9079-ac72891c3257__02"/>
<item comment="tntogw, tntnongw, vstar, wstar, psistar, f_y, f_z, acceldivf/utenddivf, utendvstarad, utendwstarad, accelogw/utendogw, accelnogw/utendnogw,diabdrag/utenddiabdrag, vtendogw, vtendnogw, vtenddiabdrag, tauu, tauv, meanage" grid="native" gridreq="" label="DynVar-monthly-a" mip="VolMIP" objective="evaluation, sensitivity, predictability, dynamics, variability" opar="2.0" opt="all" refid="efc0ba3c-5629-11e6-9079-ac72891c3257" tab="DynVar-monthly-a" title="DynVar-monthly-a" uid="efc0ba3c-5629-11e6-9079-ac72891c3257__01"/>
<item comment="Remove tasAdjust, tsAdjust, pslAdjust and prAdjust.  " grid="native" gridreq="" label="Amon" mip="DAMIP" objective="D&amp;A" opar="1.0" opt="priority" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__03"/>
<item comment="" grid="" gridreq="" label="cx-6hr" mip="CORDEX" objective="" opar="" opt="list" refid="eb99e9cc-0008-11e7-b43f-5404a60d96b5" tab="cx-6hr" title="cx-6hr" uid="eb99e9cc-0008-11e7-b43f-5404a60d96b5__00"/>
<item comment="" grid="100km" gridreq="" label="3hr" mip="CMIP" objective="Model Intercomparison" opar="" opt="all" refid="ef12df16-5629-11e6-9079-ac72891c3257" tab="3hr" title="3hr" uid="ef12df16-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="FAFMIP-fafOyr" mip="FAFMIP" objective="fafmip" opar=" " opt="all" refid="efc07176-5629-11e6-9079-ac72891c3257" tab="FAFMIP.fafOyr" title="FAFMIP.fafOyr" uid="efc07176-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="No" label="FAFMIP-fafOmonB" mip="FAFMIP" objective="fafmip" opar=" " opt="all" refid="efc07f40-5629-11e6-9079-ac72891c3257" tab="FAFMIP.fafOmonB" title="FAFMIP.fafOmonB" uid="efc07f40-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-SImon" mip="DCPP" objective="volcanoes" opar="" opt="all" refid="efc0a696-5629-11e6-9079-ac72891c3257" tab="DCPP-SImon" title="DCPP-SImon" uid="efc0a696-5629-11e6-9079-ac72891c3257__03"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-PMIP-Oclim" mip="PMIP" objective="forcings &amp; feedbacks, evaluation, paleo-impacts" opar="" opt="all" refid="efc0cc8e-5629-11e6-9079-ac72891c3257" tab="PMIP.PMIP-Oclim" title="PMIP.PMIP-Oclim" uid="efc0cc8e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="C4MIP-Hist" mip="C4MIP" objective="all" opar="" opt="all" refid="efc0cefa-5629-11e6-9079-ac72891c3257" tab="C4MIP-Hist" title="C4MIP-Hist" uid="efc0cefa-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="C4MIP-Basic" mip="LUMIP" objective="" opar="" opt="all" refid="efc0d8f0-5629-11e6-9079-ac72891c3257" tab="C4MIP-Basic" title="C4MIP-Basic" uid="efc0d8f0-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="100km" gridreq="" label="Amon" mip="CMIP" objective="Model Intercomparison" opar=" " opt="all" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__02"/>
<item comment="" grid="" gridreq="Yes" label="aermonthly-subset-02" mip="GeoMIP" objective="forcing,future,bias" opar="mmrdust,mmraerh2o,so2,mmrss" opt="list" refid="38bf05ea-61f6-11e6-835f-ac72891c3257" tab="aermonthly-subset-02" title="aermonthly-subset-02" uid="38bf05ea-61f6-11e6-835f-ac72891c3257__00"/>
<item comment="" grid="100km" gridreq="" label="3hr" mip="CMIP" objective="Model Intercomparison" opar="" opt="all" refid="ef12df16-5629-11e6-9079-ac72891c3257" tab="3hr" title="3hr" uid="ef12df16-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="" label="aerfixed" mip="AerChemMIP" objective="" opar="" opt="all" refid="ef12fd66-5629-11e6-9079-ac72891c3257" tab="aerfixed" title="aerfixed" uid="ef12fd66-5629-11e6-9079-ac72891c3257__00"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-PMIP-aeroclim" mip="PMIP" objective="forcings &amp; feedbacks, evaluation" opar="" opt="all" refid="efc0908e-5629-11e6-9079-ac72891c3257" tab="PMIP.PMIP-aeroclim" title="PMIP.PMIP-aeroclim" uid="efc0908e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-SImon" mip="DCPP" objective="mechanisms" opar="" opt="all" refid="efc0a696-5629-11e6-9079-ac72891c3257" tab="DCPP-SImon" title="DCPP-SImon" uid="efc0a696-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="C4MIP-Hist" mip="LUMIP" objective="" opar="" opt="all" refid="efc0cefa-5629-11e6-9079-ac72891c3257" tab="C4MIP-Hist" title="C4MIP-Hist" uid="efc0cefa-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="" label="C4MIP-Basic" mip="C4MIP" objective="all" opar="" opt="all" refid="efc0d8f0-5629-11e6-9079-ac72891c3257" tab="C4MIP-Basic" title="C4MIP-Basic" uid="efc0d8f0-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="yes" label="LUMIP-LmonLut" mip="LUMIP" objective="LULCC" opar="" opt="all" refid="efc0e1ce-5629-11e6-9079-ac72891c3257" tab="LUMIP-LmonLut" title="LUMIP-LmonLut" uid="efc0e1ce-5629-11e6-9079-ac72891c3257__00"/>
<item comment="To provide model energy spectra" grid="native" gridreq="No" label="HighResMIP-1hrEnergy" mip="HighResMIP" objective="Process studies" opar="" opt="all" refid="efc0ea3e-5629-11e6-9079-ac72891c3257" tab="HighResMIP-1hrEnergy" title="HighResMIP-1hrEnergy" uid="efc0ea3e-5629-11e6-9079-ac72891c3257__00"/>
<item comment="data on Greenland ice sheet grid" grid="25km or smaller" gridreq="YES, we rather an specified 5km polar stereographic grid" label="ISMIP6-IfxGre" mip="ISMIP6" objective="analysis, downscaling, forcing, sensitivity, state" opar="" opt="all" refid="efc0ecaa-5629-11e6-9079-ac72891c3257" tab="ISMIP6.IfxGre" title="ISMIP6.IfxGre" uid="efc0ecaa-5629-11e6-9079-ac72891c3257__00"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-PMIP-6hr" mip="PMIP" objective="all" opar="" opt="all" refid="efc0f2b8-5629-11e6-9079-ac72891c3257" tab="PMIP.PMIP-6hr" title="PMIP.PMIP-6hr" uid="efc0f2b8-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="Amon" mip="C4MIP" objective="all" opar="" opt="all" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="" label="day-ss" mip="VolMIP" objective="evaluation, paleo, sensitivity, predictability, dynamics, variability" opar="" opt="all" refid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257" tab="day-ss" title="day-ss" uid="26d3ae3c-7c16-11e6-8a5b-ac72891c3257__04"/>
<item comment="Need native to distinguish land, sea, ice, orography areas" grid="native" gridreq="No" label="3hr" mip="HighResMIP" objective="Extreme events, diurnal cycle" opar="" opt="all" refid="ef12df16-5629-11e6-9079-ac72891c3257" tab="3hr" title="3hr" uid="ef12df16-5629-11e6-9079-ac72891c3257__02"/>
<item comment="" grid="native" gridreq="" label="C4MIP-OceanT1" mip="C4MIP" objective="all" opar="" opt="all" refid="efc08940-5629-11e6-9079-ac72891c3257" tab="C4MIP-OceanT1" title="C4MIP-OceanT1" uid="efc08940-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-SImon" mip="DCPP" objective="forecasts" opar="" opt="all" refid="efc0a696-5629-11e6-9079-ac72891c3257" tab="DCPP-SImon" title="DCPP-SImon" uid="efc0a696-5629-11e6-9079-ac72891c3257__01"/>
<item comment="New table" grid="native" gridreq="" label="PMIP-Omon-02" mip="PMIP" objective="all except paleoRCMs" opar="" opt="all" refid="efc0e098-5629-11e6-9079-ac72891c3257" tab="PMIP-Omon-02" title="PMIP-Omon-02" uid="efc0e098-5629-11e6-9079-ac72891c3257__01"/>
<item comment="" grid="native" gridreq="" label="Amon" mip="AerChemMIP" objective="" opar="" opt="all" refid="0bb7eb9e-7f05-11e6-b027-ac72891c3257" tab="Amon" title="Amon" uid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="C4MIP-day" mip="C4MIP" objective="all" opar="" opt="all" refid="efc0a42a-5629-11e6-9079-ac72891c3257" tab="C4MIP-day" title="C4MIP-day" uid="efc0a42a-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="DCPP-SImon" mip="DCPP" objective="hindcasts" opar="" opt="all" refid="efc0a696-5629-11e6-9079-ac72891c3257" tab="DCPP-SImon" title="DCPP-SImon" uid="efc0a696-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="native" gridreq="" label="PMIP-Omon" mip="VolMIP" objective="evaluation, paleo, sensitivity, predictability, dynamics, variability" opar="" opt="all" refid="efc0cb58-5629-11e6-9079-ac72891c3257" tab="PMIP-Omon" title="PMIP-Omon" uid="efc0cb58-5629-11e6-9079-ac72891c3257__00"/>
<item comment="3-Hourly COSP Inputs and Outputs (2008 only)" grid="native" gridreq="No" label="cf3hr-sim-new" mip="CFMIP" objective="cloudevaluation" opar="all" opt="all" refid="efc0d062-5629-11e6-9079-ac72891c3257" tab="cf3hr-sim-new" title="cf3hr-sim-new" uid="efc0d062-5629-11e6-9079-ac72891c3257__00"/>
<item comment="See PMIP_standard_output.xls" grid="native" gridreq="" label="PMIP-PMIP-Omon" mip="PMIP" objective="all except paleoRCMs" opar="Omon" opt="all" refid="efc0e098-5629-11e6-9079-ac72891c3257" tab="PMIP.PMIP-Omon" title="PMIP.PMIP-Omon" uid="efc0e098-5629-11e6-9079-ac72891c3257__00"/>
<item comment="3-Hourly COSP Inputs and Outputs (2008 only)" grid="native" gridreq="No" label="cf3hr-sim" mip="CFMIP" objective="cloudevaluation" opar="all" opt="all" refid="efc15b22-5629-11e6-9079-ac72891c3257" tab="cf3hr-sim" title="cf3hr-sim" uid="efc15b22-5629-11e6-9079-ac72891c3257__00"/>
<item comment="" grid="" gridreq="" label="SEAPODYM-1c" mip="VIACSAB" objective="SEAPODYM" opar="" opt="" refid="6d975e0a-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SEAPODYM.1c" uid="8dfe7f96-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="DBEM-2c" mip="VIACSAB" objective="DBEM" opar="" opt="" refid="6d97662a-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: DBEM.2c" uid="8dfe84be-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Caribbean-1c" mip="VIACSAB" objective="Caribbean" opar="" opt="" refid="6d976c4c-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Caribbean.1c" uid="8dfe8874-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="SMHI-FoUo-2" mip="VIACSAB" objective="SMHI-FoUo" opar="" opt="" refid="6d9771ec-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SMHI-FoUo.2" uid="8dfe8bf8-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="SMHI-FoUo-3" mip="VIACSAB" objective="SMHI-FoUo" opar="" opt="" refid="6d9777aa-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SMHI-FoUo.3" uid="8dfe8f9a-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="SICCME-1" mip="VIACSAB" objective="SICCME" opar="" opt="" refid="6d977d4a-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SICCME.1" uid="8dfe931e-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="SMHI-FoUo-1" mip="VIACSAB" objective="SMHI-FoUo" opar="" opt="" refid="6d97833a-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SMHI-FoUo.1" uid="8dfe96a2-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="BOATS-2c" mip="VIACSAB" objective="BOATS" opar="" opt="" refid="6d9788da-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: BOATS.2c" uid="8dfe9a1c-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="CSP-1c" mip="VIACSAB" objective="CSP" opar="" opt="" refid="6d978e7a-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: CSP.1c" uid="8dfe9d6e-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="climateServices-1" mip="VIACSAB" objective="climateServices" opar="" opt="" refid="6d979410-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: climateServices.1" uid="8dfea1f6-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="POEM-1" mip="VIACSAB" objective="POEM" opar="" opt="" refid="6d979992-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: POEM.1" uid="8dfea5fc-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="POEM-2" mip="VIACSAB" objective="POEM" opar="" opt="" refid="6d979f32-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: POEM.2" uid="8dfea96c-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="OSMOSE-1" mip="VIACSAB" objective="OSMOSE" opar="" opt="" refid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: OSMOSE.1" uid="8dfeacbe-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Arctic-4" mip="VIACSAB" objective="Arctic" opar="" opt="" refid="6d97af04-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Arctic.4" uid="8dfeb010-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="SICCME-2" mip="VIACSAB" objective="SICCME" opar="" opt="" refid="6d97b486-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SICCME.2" uid="8dfeb376-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Atlantis-1c" mip="VIACSAB" objective="Atlantis" opar="" opt="" refid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Atlantis.1c" uid="8dfeb6dc-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Arctic-1" mip="VIACSAB" objective="Arctic" opar="" opt="" refid="6d97bf76-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Arctic.1" uid="8dfeba2e-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="DBPM-1c" mip="VIACSAB" objective="DBPM" opar="" opt="" refid="6d97c52a-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: DBPM.1c" uid="8dfebd94-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="SICCME-3d" mip="VIACSAB" objective="SICCME" opar="" opt="" refid="6d97caca-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SICCME.3d" uid="8dfec118-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="EwE-2" mip="VIACSAB" objective="EwE" opar="" opt="" refid="6d97d056-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: EwE.2" uid="8dfec474-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="FISH-MIP-2c" mip="VIACSAB" objective="FISH-MIP" opar="" opt="" refid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: FISH-MIP.2c" uid="8dfec8de-33eb-11e7-80d4-5404a60d96b5"/>
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<item comment="" grid="" gridreq="" label="SICCME-3c" mip="VIACSAB" objective="SICCME" opar="" opt="" refid="6d997262-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SICCME.3c" uid="8dffc91e-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="APECOSM-1c" mip="VIACSAB" objective="APECOSM" opar="" opt="" refid="6d9977d0-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: APECOSM.1c" uid="8dffcc84-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="EwE-3" mip="VIACSAB" objective="EwE" opar="" opt="" refid="6d997d34-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: EwE.3" uid="8dffcfc2-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Atlantis-3c" mip="VIACSAB" objective="Atlantis" opar="" opt="" refid="6d9982f2-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Atlantis.3c" uid="8dffd2f6-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="SICCME-3" mip="VIACSAB" objective="SICCME" opar="" opt="" refid="6d998838-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SICCME.3" uid="8dffd652-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Madingley-3c" mip="VIACSAB" objective="Madingley" opar="" opt="" refid="6d998d92-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Madingley.3c" uid="8dffda6c-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Madingley-3b" mip="VIACSAB" objective="Madingley" opar="" opt="" refid="6d9992e2-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Madingley.3b" uid="8dffdeae-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="ISI-MIP-4" mip="VIACSAB" objective="ISI-MIP" opar="" opt="" refid="6d999846-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: ISI-MIP.4" uid="8dffe1ec-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="ISI-MIP-3" mip="VIACSAB" objective="ISI-MIP" opar="" opt="" refid="6d999eb8-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: ISI-MIP.3" uid="8dffe5b6-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="ISI-MIP-2" mip="VIACSAB" objective="ISI-MIP" opar="" opt="" refid="6d99a458-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: ISI-MIP.2" uid="8dffe8fe-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="ISI-MIP-1" mip="VIACSAB" objective="ISI-MIP" opar="" opt="" refid="6d99a9da-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: ISI-MIP.1" uid="8dffec50-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="SEAPODYM-2c" mip="VIACSAB" objective="SEAPODYM" opar="" opt="" refid="6d99af52-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: SEAPODYM.2c" uid="8dffefca-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="AgMIP-2c" mip="VIACSAB" objective="AgMIP" opar="" opt="" refid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: AgMIP.2c" uid="8dfff312-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Caribbean-2d" mip="VIACSAB" objective="Caribbean" opar="" opt="" refid="6d99ba88-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Caribbean.2d" uid="8dfff68c-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Macroecological-3" mip="VIACSAB" objective="Macroecological" opar="" opt="" refid="6d99c014-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Macroecological.3" uid="8dfff9de-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Macroecological-2" mip="VIACSAB" objective="Macroecological" opar="" opt="" refid="6d99c5be-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Macroecological.2" uid="8dfffd3a-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="Macroecological-1" mip="VIACSAB" objective="Macroecological" opar="" opt="" refid="6d99cb36-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: Macroecological.1" uid="8e000096-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="climateServices-1d" mip="VIACSAB" objective="climateServices" opar="" opt="" refid="6d99d07c-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: climateServices.1d" uid="8e0003de-33eb-11e7-80d4-5404a60d96b5"/>
<item comment="" grid="" gridreq="" label="DBEM-1c" mip="VIACSAB" objective="DBEM" opar="" opt="" refid="6d99d5a4-5979-11e6-8fd9-ac72891c3257" title="VIACSAB: DBEM.1c" uid="8e00071c-33eb-11e7-80d4-5404a60d96b5"/>
</requestLink>
<tableSection id="tbs" label="tableSection" title="3.4 CMOR Table Sections" uid="SECTION:tableSection" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item gpid="3facaaba-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: day_ss" title="CMIP6 Variable Group: day_ss" uid="3facb794-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac9a70-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: Oyr_3dtr" title="CMIP6 Variable Group: Oyr_3dtr" uid="3facbdd4-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac9732-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: aero_3d" title="CMIP6 Variable Group: aero_3d" uid="3facc720-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac89e0-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: cf3hr_grid" title="CMIP6 Variable Group: cf3hr_grid" uid="3faccd4c-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac908e-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: Amon_2d" title="CMIP6 Variable Group: Amon_2d" uid="3facd36e-599f-11e6-a173-ac72891c3257"/>
<item gpid="3facaaba-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: day_oth" title="CMIP6 Variable Group: day_oth" uid="3facd684-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac9f52-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: cfDay_2d" title="CMIP6 Variable Group: cfDay_2d" uid="3facd990-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac9732-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: aero_oth" title="CMIP6 Variable Group: aero_oth" uid="3face2be-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac9232-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: cfMon_sim" title="CMIP6 Variable Group: cfMon_sim" uid="3facb44c-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac9f52-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: cfDay_3d" title="CMIP6 Variable Group: cfDay_3d" uid="3facbab4-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac89e0-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: cf3hr_sim" title="CMIP6 Variable Group: cf3hr_sim" uid="3facc0ea-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac9232-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: cfMon_3dmod" title="CMIP6 Variable Group: cfMon_3dmod" uid="3facc400-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac9232-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: cfMon_3dstd" title="CMIP6 Variable Group: cfMon_3dstd" uid="3facca2c-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac93e0-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: Omon_3d" title="CMIP6 Variable Group: Omon_3d" uid="3facd058-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac93e0-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: Omon_oth" title="CMIP6 Variable Group: Omon_oth" uid="3facdc9c-599f-11e6-a173-ac72891c3257"/>
<item gpid="3fac9232-599f-11e6-a173-ac72891c3257" label="CMIP6" mip="CMIP6" ref="CMIP5" refNote="CMIP5 MIP Table section: cfMon_2dmod" title="CMIP6 Variable Group: cfMon_2dmod" uid="3facdfa8-599f-11e6-a173-ac72891c3257"/>
</tableSection>
<modelConfig id="mcfg" label="modelConfig" title="3.5 Model configuration options" uid="SECTION:modelConfig" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item MIPs="LUMIP" label="TiledLandUseModel" range="xs:boolean" title="Sub-grid land use reporting" type="capability" uid="TiledLandUseModel" usage="Used on LUMIP to indicate variables only needed from models which have the capability to report on land use tiles."/>
<item MIPs="C4MIP" label="InteractiveChemistry" range="xs:boolean" title="Interactive chemistry schemes" type="capability" uid="InteractiveChemistry" usage="Different experiment specifications in C4MIP for models with and without interactive chemistry"/>
<item MIPs="ISMIP6" label="DynamicIceSheet" range="xs:boolean" title="Evolving ice sheets." type="capability" uid="DynamicIceSheet" usage=""/>
<item MIPs="ISMIP6" label="OfflineIceSheetModel" range="xs:boolean" title="Offline ice sheet model (run with prescribed atmosphere and ocean boundary conditions)" type="category" uid="OfflineIceSheetModel" usage=""/>
<item MIPs="LUMIP" label="OfflineLandUseModel" range="xs:boolean" title="Offline ice sheet model (run with prescribed atmosphere boundary conditions)" type="category" uid="OfflineLandUseModel" usage=""/>
<item MIPs="OMIP" label="BoussinesqOcean" range="xs:boolean" title="Boussinesq Ocean (with constant reference density)" type="capability" uid="BoussinesqOcean" usage="The &quot;rhozero&quot; field is only required for Boussinesq models. "/>
<item MIPs="OMIP" label="BoussinesqOceanConstantTh" range="xs:boolean" title="Boussinesq Ocean With Constant Cell Thickness" type="capability" uid="BoussinesqOceanConstantTh" usage="The ocean grid cell mass (masscello) can be supplied as a fixed field for Boussinesq models if the grid cell thickness is constant in time. Otherwise, this variable is required at monthly frequency."/>
<item MIPs="" label="HydrostaticAtmosphere" range="xs:boolean" title="Hydrostatic Atmosphere (pressure determined by weight of air column alone)" type="capability" uid="HydrostaticAtmosphere" usage=""/>
<item MIPs="CFMIP" label="CospEnabled" range="xs:boolean" title="The CFMIP Observation Simulation Package (COSP)" type="capability" uid="CospEnabled" usage=""/>
<item MIPs="HighResMIP" label="usePlev27" range="xs:boolean" title="Use 27 pressure levels rather than model levels were option exists." type="ioOption" uid="usePlev27" usage="A range of variables in the HighResMIP have the option of being delivered either on model levels or 27 pressure levels."/>
<item MIPs="" label="horizontalOceanMeshSize" range="xs:integer" title="Horizontal Ocean Mesh Size" type="size" uid="horizontalOceanMeshSize" usage="Used in volume estimates"/>
<item MIPs="" label="horizontalAmosphereMeshSize" range="xs:integer" title="Horizontal Amosphere Mesh Size" type="size" uid="horizontalAmosphereMeshSize" usage="Used in volume estimates"/>
<item MIPs="" label="verticalOceanLevelCount" range="xs:integer" title="Vertical Ocean Level Count" type="size" uid="verticalOceanLevelCount" usage="Used in volume estimates"/>
<item MIPs="" label="verticalAtmosphereLevelCount" range="xs:integer" title="Vertical Atmosphere Level Count" type="size" uid="verticalAtmosphereLevelCount" usage="Used in volume estimates"/>
<item MIPs="" label="horizontalSoilMeshSize" range="xs:integer" title="Horizontal Soil Mesh Size" type="size" uid="horizontalSoilMeshSize" usage="Used in volume estimates"/>
<item MIPs="" label="verticalSoilLevelCount" range="xs:integer" title="Vertical Soil Level Count" type="size" uid="verticalSoilLevelCount" usage="Used in volume estimates"/>
</modelConfig>
<varChoiceLinkC id="vclc" label="varChoiceLinkC" title="3.6 Links a variable to a choice element" uid="SECTION:varChoiceLinkC" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item cfg="true" cfgid="BoussinesqOceanConstantTh" cid="boussinesq-masscello" label="masscello-fx" title="masscello [fx]" uid="f5c0334e-26b8-11e7-8344-ac72891c3257" vid="baa3ea2a-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="false" cfgid="BoussinesqOceanConstantTh" cid="boussinesq-masscello" label="masscello-mon" title="masscello [mon]" uid="f5c0352e-26b8-11e7-8344-ac72891c3257" vid="baa5147c-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="false" cfgid="DepthResolvedIcebergMelt" cid="iceberg-ficeberg" label="ficeberg-ficeberg2d" title="ficeberg [ficeberg2d]" uid="f5c03f42-26b8-11e7-8344-ac72891c3257" vid="baa62cea-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="true" cfgid="DepthResolvedIcebergMelt" cid="iceberg-ficeberg" label="ficeberg-ficeberg" title="ficeberg [ficeberg]" uid="f5c0410e-26b8-11e7-8344-ac72891c3257" vid="baa628c6-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="false" cfgid="CartesianOceanGrid" cid="meridionalOverturning-ficeberg" label="msftmyz" title="msftmyz" uid="f5c04ad2-26b8-11e7-8344-ac72891c3257" vid="4795d5e4-bb0b-11e6-8316-5980f7b176d1"/>
<item cfg="false" cfgid="CartesianOceanGrid" cid="meridionalOverturning-ficeberg" label="msftmyz" title="msftmyz" uid="f5c04c80-26b8-11e7-8344-ac72891c3257" vid="baa59d48-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="false" cfgid="CartesianOceanGrid" cid="meridionalOverturning-ficeberg" label="msftmrho" title="msftmrho" uid="f5c05608-26b8-11e7-8344-ac72891c3257" vid="baa5a1da-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="false" cfgid="CartesianOceanGrid" cid="meridionalOverturning-ficeberg" label="msftmzmpa" title="msftmzmpa" uid="f5c05fa4-26b8-11e7-8344-ac72891c3257" vid="baa5af36-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="false" cfgid="CartesianOceanGrid" cid="meridionalOverturning-ficeberg" label="msftmrhompa" title="msftmrhompa" uid="f5c06986-26b8-11e7-8344-ac72891c3257" vid="baa5b364-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="false" cfgid="CartesianOceanGrid" cid="meridionalOverturning-ficeberg" label="msftmzsmpa" title="msftmzsmpa" uid="f5c0732c-26b8-11e7-8344-ac72891c3257" vid="baa5c020-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="false" cfgid="SometimesFixed-msftmzsmpa" cid="whenFixed-msftmzsmpa" label="msftmzsmpa-mon" title="msftmzsmpa [mon]" uid="f5c07d36-26b8-11e7-8344-ac72891c3257" vid="baa5c020-e5dd-11e5-8482-ac72891c3257"/>
<item cfg="false" cfgid="SometimesFixed-msftmzsmpa" cid="whenFixed-msftmzsmpa" label="msftmzsmpa-mon" title="msftmzsmpa [mon]" uid="f5c08740-26b8-11e7-8344-ac72891c3257" vid="baa5c020-e5dd-11e5-8482-ac72891c3257"/>
</varChoiceLinkC>
<objectiveLink id="objl" label="objectiveLink" title="3.7 Link between scientific objectives and requests" uid="SECTION:objectiveLink" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="efc0e43a-5629-11e6-9079-ac72891c3257__00" uid="f5c9ef38-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="073f5734-c76f-11e6-b159-5404a60d96b5__00" uid="f5c9f410-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="ef12e542-5629-11e6-9079-ac72891c3257__01" uid="f5c9f7bc-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="efc0da26-5629-11e6-9079-ac72891c3257__00" uid="f5c9fb04-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="efc072ca-5629-11e6-9079-ac72891c3257__00" uid="f5c9fe2e-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="ef12f3ac-5629-11e6-9079-ac72891c3257__00" uid="f5ca0162-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="efc0880a-5629-11e6-9079-ac72891c3257__00" uid="f5ca0496-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="efc0cefa-5629-11e6-9079-ac72891c3257__00" uid="f5ca07b6-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="efc0d8f0-5629-11e6-9079-ac72891c3257__00" uid="f5ca0af4-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="0bb7eb9e-7f05-11e6-b027-ac72891c3257__01" uid="f5ca133c-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="efc08940-5629-11e6-9079-ac72891c3257__00" uid="f5ca1698-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb396ca-04e9-11e7-9857-5404a60d96b5" rid="efc0a42a-5629-11e6-9079-ac72891c3257__00" uid="f5ca19b8-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb321a4-04e9-11e7-9857-5404a60d96b5" rid="efc0dcd8-5629-11e6-9079-ac72891c3257__00" uid="f5ca1cce-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb321a4-04e9-11e7-9857-5404a60d96b5" rid="efc0e43a-5629-11e6-9079-ac72891c3257__00" uid="f5ca2002-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb321a4-04e9-11e7-9857-5404a60d96b5" rid="073f5734-c76f-11e6-b159-5404a60d96b5__00" uid="f5ca2318-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb321a4-04e9-11e7-9857-5404a60d96b5" rid="ef12e542-5629-11e6-9079-ac72891c3257__01" uid="f5ca262e-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb321a4-04e9-11e7-9857-5404a60d96b5" rid="efc0da26-5629-11e6-9079-ac72891c3257__00" uid="f5ca29c6-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb321a4-04e9-11e7-9857-5404a60d96b5" rid="efc072ca-5629-11e6-9079-ac72891c3257__00" uid="f5ca2ce6-26b8-11e7-8344-ac72891c3257"/>
<item label="C4MIP" oid="ebb321a4-04e9-11e7-9857-5404a60d96b5" rid="ef12f3ac-5629-11e6-9079-ac72891c3257__00" uid="f5ca2ffc-26b8-11e7-8344-ac72891c3257"/>
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<item label="Caribbean" oid="8dfb7b7a-33eb-11e7-80d4-5404a60d96b5" rid="8dffab32-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Caribbean.3c" uid="8dffad58-33eb-11e7-80d4-5404a60d96b5"/>
<item label="Arctic" oid="8dfe60c4-33eb-11e7-80d4-5404a60d96b5" rid="8dffaee8-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Arctic.2" uid="8dffb0aa-33eb-11e7-80d4-5404a60d96b5"/>
<item label="CSP" oid="8dfe6fa6-33eb-11e7-80d4-5404a60d96b5" rid="8dffb230-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: CSP.2c" uid="8dffb3f2-33eb-11e7-80d4-5404a60d96b5"/>
<item label="Arctic" oid="8dfe60c4-33eb-11e7-80d4-5404a60d96b5" rid="8dffb578-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Arctic.3" uid="8dffb744-33eb-11e7-80d4-5404a60d96b5"/>
<item label="CSP" oid="8dfe6fa6-33eb-11e7-80d4-5404a60d96b5" rid="8dffb8ca-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: CSP.1" uid="8dffbaa0-33eb-11e7-80d4-5404a60d96b5"/>
<item label="CSP" oid="8dfe6fa6-33eb-11e7-80d4-5404a60d96b5" rid="8dffbc1c-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: CSP.3" uid="8dffbdd4-33eb-11e7-80d4-5404a60d96b5"/>
<item label="CSP" oid="8dfe6fa6-33eb-11e7-80d4-5404a60d96b5" rid="8dffbf50-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: CSP.2" uid="8dffc11c-33eb-11e7-80d4-5404a60d96b5"/>
<item label="CSP" oid="8dfe6fa6-33eb-11e7-80d4-5404a60d96b5" rid="8dffc284-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: CSP.4" uid="8dffc450-33eb-11e7-80d4-5404a60d96b5"/>
<item label="AgMIP" oid="8dfe6344-33eb-11e7-80d4-5404a60d96b5" rid="8dffc5d6-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: AgMIP.3c" uid="8dffc798-33eb-11e7-80d4-5404a60d96b5"/>
<item label="SICCME" oid="8dfe7bd6-33eb-11e7-80d4-5404a60d96b5" rid="8dffc91e-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: SICCME.3c" uid="8dffcafe-33eb-11e7-80d4-5404a60d96b5"/>
<item label="APECOSM" oid="8dfc2ff2-33eb-11e7-80d4-5404a60d96b5" rid="8dffcc84-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: APECOSM.1c" uid="8dffce46-33eb-11e7-80d4-5404a60d96b5"/>
<item label="EwE" oid="8dfe65b0-33eb-11e7-80d4-5404a60d96b5" rid="8dffcfc2-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: EwE.3" uid="8dffd18e-33eb-11e7-80d4-5404a60d96b5"/>
<item label="Atlantis" oid="8dfe5930-33eb-11e7-80d4-5404a60d96b5" rid="8dffd2f6-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Atlantis.3c" uid="8dffd4c2-33eb-11e7-80d4-5404a60d96b5"/>
<item label="SICCME" oid="8dfe7bd6-33eb-11e7-80d4-5404a60d96b5" rid="8dffd652-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: SICCME.3" uid="8dffd81e-33eb-11e7-80d4-5404a60d96b5"/>
<item label="Madingley" oid="8dfe7492-33eb-11e7-80d4-5404a60d96b5" rid="8dffda6c-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Madingley.3c" uid="8dffdd1e-33eb-11e7-80d4-5404a60d96b5"/>
<item label="Madingley" oid="8dfe7492-33eb-11e7-80d4-5404a60d96b5" rid="8dffdeae-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Madingley.3b" uid="8dffe066-33eb-11e7-80d4-5404a60d96b5"/>
<item label="ISI-MIP" oid="8dfe7712-33eb-11e7-80d4-5404a60d96b5" rid="8dffe1ec-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: ISI-MIP.4" uid="8dffe430-33eb-11e7-80d4-5404a60d96b5"/>
<item label="ISI-MIP" oid="8dfe7712-33eb-11e7-80d4-5404a60d96b5" rid="8dffe5b6-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: ISI-MIP.3" uid="8dffe778-33eb-11e7-80d4-5404a60d96b5"/>
<item label="ISI-MIP" oid="8dfe7712-33eb-11e7-80d4-5404a60d96b5" rid="8dffe8fe-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: ISI-MIP.2" uid="8dffeaca-33eb-11e7-80d4-5404a60d96b5"/>
<item label="ISI-MIP" oid="8dfe7712-33eb-11e7-80d4-5404a60d96b5" rid="8dffec50-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: ISI-MIP.1" uid="8dffee30-33eb-11e7-80d4-5404a60d96b5"/>
<item label="SEAPODYM" oid="8dfe6826-33eb-11e7-80d4-5404a60d96b5" rid="8dffefca-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: SEAPODYM.2c" uid="8dfff196-33eb-11e7-80d4-5404a60d96b5"/>
<item label="AgMIP" oid="8dfe6344-33eb-11e7-80d4-5404a60d96b5" rid="8dfff312-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: AgMIP.2c" uid="8dfff4f2-33eb-11e7-80d4-5404a60d96b5"/>
<item label="Caribbean" oid="8dfb7b7a-33eb-11e7-80d4-5404a60d96b5" rid="8dfff68c-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Caribbean.2d" uid="8dfff86c-33eb-11e7-80d4-5404a60d96b5"/>
<item label="Macroecological" oid="8dfe7974-33eb-11e7-80d4-5404a60d96b5" rid="8dfff9de-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Macroecological.3" uid="8dfffbb4-33eb-11e7-80d4-5404a60d96b5"/>
<item label="Macroecological" oid="8dfe7974-33eb-11e7-80d4-5404a60d96b5" rid="8dfffd3a-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Macroecological.2" uid="8dffff10-33eb-11e7-80d4-5404a60d96b5"/>
<item label="Macroecological" oid="8dfe7974-33eb-11e7-80d4-5404a60d96b5" rid="8e000096-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: Macroecological.1" uid="8e000262-33eb-11e7-80d4-5404a60d96b5"/>
<item label="climateServices" oid="8dfce6cc-33eb-11e7-80d4-5404a60d96b5" rid="8e0003de-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: climateServices.1d" uid="8e000596-33eb-11e7-80d4-5404a60d96b5"/>
<item label="DBEM" oid="8dfe6d44-33eb-11e7-80d4-5404a60d96b5" rid="8e00071c-33eb-11e7-80d4-5404a60d96b5" title="VIACSAB: DBEM.1c" uid="8e0008e8-33eb-11e7-80d4-5404a60d96b5"/>
</objectiveLink>
<remarks id="rmk" label="remarks" title="3.8 Remarks about other items" uid="SECTION:remarks" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="__multiple__" techNote="2068" uid=""/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913b780-9e49-11e5-803c-0d0b866b59f3" uid="water_table_depth"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f541a-9e49-11e5-803c-0d0b866b59f3" uid="sublimation_amount_assuming_no_snow"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f192de-267c-11e7-8933-ac72891c3257" uid="f323cdc6-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="93aa8484bd5399920b19acc9f208f664" uid="integral_wrt_depth_of_product_of_sea_water_density_and_prognostic_temperature"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="591437f0-9e49-11e5-803c-0d0b866b59f3" uid="water_potential_evapotranspiration_flux"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="11" uid="f2fecdd2-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="2e3e882a650986c1fdc5df05f5f10263" uid="northward_ocean_heat_transport_due_to_parameterized_eddy_advection"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93fbe478-267c-11e7-8933-ac72891c3257" uid="f32703a6-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="042e575e61a271e122d317ca7b39dcb4" uid="surface_downward_mass_flux_of_abiotic_carbon_dioxide_expressed_as_carbon"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590eb456-9e49-11e5-803c-0d0b866b59f3" uid="fire_CO2_emissions_from_all_sources"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="a41ce7d71eb9622c88b8f18438cbe36c" uid="tendency_of_sea_water_salinity_expressed_as_salt_content_due_to_parameterized_dianeutral_mixing"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="88f1496a06008de969d5913384e6cb17" uid="northward_ocean_heat_transport_due_to_parameterized_mesoscale_diffusion"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96ef9ac-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_carbonate_expressed_as_carbon_for_sea_water_in_equilibrium_with_pure_calcite"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f09690-267c-11e7-8933-ac72891c3257" uid="f33287ee-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96c9c52-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_zooplankton_expressed_as_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e05c4-9e49-11e5-803c-0d0b866b59f3" uid="water_flux_to_downstream"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="var.sn" techNote="2" uid="sinking_mole_flux_of_particulate_nitrogen_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="9" uid="f2ff1878-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93fc337e-267c-11e7-8933-ac72891c3257" uid="f39dbad2-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f09b68-267c-11e7-8933-ac72891c3257" uid="f321b946-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96c720e-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_dissolved_inorganic_carbon13_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="01c8c41a-a0d8-11e6-bc63-ac72891c3257" uid="nudging_increment_in_water_content_of_soil_layer"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913e3e0-9e49-11e5-803c-0d0b866b59f3" uid="nitrogen_mass_flux_to_product_pool_due_to_anthorpogenic_activity"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590dce42-9e49-11e5-803c-0d0b866b59f3" uid="freshwater_flux_from_ice"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f091d6-267c-11e7-8933-ac72891c3257" uid="f39ffaae-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917a070-9e49-11e5-803c-0d0b866b59f3" uid="wetland_methane_emissions"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="d4eb6956-b00f-11e6-a1f0-ac72891c3257" uid="square_of_sea_surface_salinity"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f58de-9e49-11e5-803c-0d0b866b59f3" uid="fire_CO2_emissions_from_wildfire"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="98544553b7ee286405344aa2e3e88c8e" uid="iron_limitation_of_diazotrophs"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f20dea-267c-11e7-8933-ac72891c3257" uid="f3347216-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="84f09af8-acb7-11e6-b5ee-ac72891c3257" uid="fertiliser_of_nitrogen_onto_land"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="0353bea4-dca0-11e5-81c9-5404a60d96b5" uid="freshwater_flux_from_ice_surface"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="3cbe53c2-12cc-11e6-b2bc-ac72891c3257" uid="tendency_of_sea_water_potential_temperature_expressed_as_heat_content_due_to_residual_mean_advection"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917a796-9e49-11e5-803c-0d0b866b59f3" uid="harvested_biomass_into_product_pool"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f1062a-267c-11e7-8933-ac72891c3257" uid="f3404e92-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590ec93c-9e49-11e5-803c-0d0b866b59f3" uid="wetland_methane_consumption"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59144c36-9e49-11e5-803c-0d0b866b59f3" uid="vegetation_c13_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.tslice" techNote="4" uid="_slice_historical000"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.tslice" techNote="4" uid="_slice_historical001"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="gpid" tid="3facd36e-599f-11e6-a173-ac72891c3257" uid="3fac908e-599f-11e6-a173-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96c8078-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_dissolved_organic_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590df00c-9e49-11e5-803c-0d0b866b59f3" uid="sea_water_additional_potential_temperature"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914bc20-9e49-11e5-803c-0d0b866b59f3" uid="change_over_time_in_water_content_of_soil_layer"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="1742f769c80d35356bf80ab91789eec6" uid="tendency_of_sea_water_conservative_temperature_expressed_as_heat_content_due_to_parameterized_submesoscale_advection"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590d98b4-9e49-11e5-803c-0d0b866b59f3" uid="sea_ice_area_fraction_over_categories"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="vid" tid="93af3671fdb4f0df178f9d22edd45193526a3222" uid="9009431a-267c-11e7-8933-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="7309b2ce-7a68-11e6-8db2-ac72891c3257" uid="snow_mass_transport_across_line"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f06e18-267c-11e7-8933-ac72891c3257" uid="f352b00a-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="3f25d295551edcd3949776cccca7656c" uid="irradiance_limitation_of_diatoms"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="0abbdddc-a0d8-11e6-bc63-ac72891c3257" uid="nudging_increment_in_surface_snow_and_ice_amount"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f0b85a-267c-11e7-8933-ac72891c3257" uid="f38db466-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="14" uid="f2ff0310-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e5100-9e49-11e5-803c-0d0b866b59f3" uid="soil_nitrogen_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="1e8aa2d7958602eef45a81400ab57bd5" uid="irradiance_limitation_of_picophytoplankton"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="712478c2-c7b6-11e6-bb2a-ac72891c3257" uid="CO2_total_mass_in_atmos"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917aa7a-9e49-11e5-803c-0d0b866b59f3" uid="total_land_carbon"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96c5576-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_due_to_abiotic_component"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917acf0-9e49-11e5-803c-0d0b866b59f3" uid="vertical_integral_eastward_wind_by_dry_static_energy"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e3260-9e49-11e5-803c-0d0b866b59f3" uid="mass_fraction_of_rainfall_onto_snow"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917ed1e-9e49-11e5-803c-0d0b866b59f3" uid="mass_fraction_of_snowfall_onto_snow"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="180d4bd9a18a9d5ecf3d45690b8e9c75" uid="integral_wrt_depth_of_product_of_sea_water_density_and_prognostic_salinity"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93fc5d68-267c-11e7-8933-ac72891c3257" uid="f39ea028-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f10b0c-267c-11e7-8933-ac72891c3257" uid="f31ebe26-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e5b82-9e49-11e5-803c-0d0b866b59f3" uid="air_sea_flux_of_13CO2"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590dfb2e-9e49-11e5-803c-0d0b866b59f3" uid="fraction_of_ridged_sea_ice"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914d6d8-9e49-11e5-803c-0d0b866b59f3" uid="sea_ice_bottom_temperature"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="84f0fc3c-acb7-11e6-b5ee-ac72891c3257" uid="soil_carbon_content_by_pool"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="2aa31f177542022b5d6ca809cf01eff5" uid="tendency_of_sea_water_potential_temperature_expressed_as_heat_content_due_to_parameterized_dianeutral_mixing"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="591357b8-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_sea_ice_amount_due_to_dynamics"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913bfe6-9e49-11e5-803c-0d0b866b59f3" uid="deposition_of_nitrogen_onto_land"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="varChoiceLinkC.cfgid" techNote="2" uid="SometimesFixed-msftmzsmpa"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f0e474-267c-11e7-8933-ac72891c3257" uid="f361ffec-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="84f0ea44-acb7-11e6-b5ee-ac72891c3257" uid="nitrogen_flux_into_atmos_due_to_direct_human_disturbance"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96ea5e2-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_phytoplankton_expressed_as_iron_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96d459e-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_miscellaneous_zooplankton_expressed_as_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c4c0cce59536f11df06a045fa8d0c091" uid="tendency_of_sea_water_conservative_temperature_expressed_as_heat_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96dd518-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_dissolved_inorganic_phosphorus_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f1586-9e49-11e5-803c-0d0b866b59f3" uid="longwave_flux_due_to_volcanic_aerosols_at_TOA_under_clear_sky"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913de9a-9e49-11e5-803c-0d0b866b59f3" uid="deforested_biomass_into_product_pool_due_to_anthorpogenic_land_use_change"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93fb43ce-267c-11e7-8933-ac72891c3257" uid="f39dad80-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590de850-9e49-11e5-803c-0d0b866b59f3" uid="litter_c13_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913462e-9e49-11e5-803c-0d0b866b59f3" uid="temperature_flux_due_to_rainfall_expressed_as_heat_flux_onto_snow_and_ice"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f43f8-9e49-11e5-803c-0d0b866b59f3" uid="liquid_cloud_area_fraction_in_atmosphere_layer"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="591768a8-9e49-11e5-803c-0d0b866b59f3" uid="water_flux_from_soil_layer_to_groundwater"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f182e-9e49-11e5-803c-0d0b866b59f3" uid="change_over_time_in_surface_water_amount"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f2087c-267c-11e7-8933-ac72891c3257" uid="f398ecdc-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f18bc2-267c-11e7-8933-ac72891c3257" uid="f394f5c8-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f1c9e8-267c-11e7-8933-ac72891c3257" uid="f39ae9f6-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914c95e-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_surface_snow_amount_due_to_conversion_of_snow_to_sea_ice"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590df5e8-9e49-11e5-803c-0d0b866b59f3" uid="internal_stress_in_sea_ice_y"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590df8a4-9e49-11e5-803c-0d0b866b59f3" uid="internal_stress_in_sea_ice_x"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="var.sn" techNote="2" uid="ocean_meridional_overturning_mass_streamfunction_due_to_parameterized_mesoscale_advection"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59144254-9e49-11e5-803c-0d0b866b59f3" uid="mole_concentration_of_dissolved_inorganic_c14_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f3674-9e49-11e5-803c-0d0b866b59f3" uid="heterotrophic_respiration_carbon_flux_from_soil"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="14" uid="f2ff0752-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59132b58-9e49-11e5-803c-0d0b866b59f3" uid="net_atmos_to_land_C14_flux"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="ea83846e-a0de-11e6-bc63-ac72891c3257" uid="downwelling_shortwave_flux_assuming_clean_clear_sky"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96d0cb4-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_picophytoplankton_expressed_as_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914640a-9e49-11e5-803c-0d0b866b59f3" uid="liquid_moisture_content_of_soil_layer"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59170700-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_northward_wind_due_to_nonorographic_gravity_wave_drag"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914d462-9e49-11e5-803c-0d0b866b59f3" uid="land_nitrogen_lost_to_atmosphere"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="ba8065ebbce734a631b427699ddbaf7e" uid="nitrogen_limitation_of_miscellaneous_phytoplankton"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59140c12-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_northward_wind_due_to_orographic_gravity_wave_drag"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="rid" tid="f1b65440-26b8-11e7-8344-ac72891c3257" uid="baaad2d6-e5dd-11e5-8482-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f1f68-9e49-11e5-803c-0d0b866b59f3" uid="heterotrophic_respiration_c13_flux"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c4b3f6005f73f2fc2d0e348fdff3c2bc" uid="tendency_of_sea_water_conservative_temperature_expressed_as_heat_content_due_to_parameterized_dianeutral_mixing"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="var.sn" techNote="2" uid="sea_water_ph_reported_on_total_scale_due_to_abiotic_component"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="55febff83b78e06576947e1c0e5b7a7d" uid="mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_abiotic_component"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590de2ce-9e49-11e5-803c-0d0b866b59f3" uid="surface_snow_sublimation_flux"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59135d8a-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_specific_humidity_due_to_stratiform_clouds_and_precipitation"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f2bfc-9e49-11e5-803c-0d0b866b59f3" uid="autotrophic_respiration_from_leaves"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="df05d7b7c578eeb7aa49c2ef6f79b30f" uid="nitrogen_limitation_of_diazotrophs"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="var.sn" techNote="4" uid="ocean_y_overturning_mass_streamfunction_due_to_parameterized_mesoscale_advection"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f09906-267c-11e7-8933-ac72891c3257" uid="f3a46d50-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f1907c-267c-11e7-8933-ac72891c3257" uid="f3a0132c-26b8-11e7-8344-ac72891c3257"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f131e0-267c-11e7-8933-ac72891c3257" uid="f380f258-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59174d14-9e49-11e5-803c-0d0b866b59f3" uid="land_nitrogen_lost_to_atmosphere_not_due_to_fire"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e219e-9e49-11e5-803c-0d0b866b59f3" uid="canopy_and_surface_and_subsurface_water_amount"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59176128-9e49-11e5-803c-0d0b866b59f3" uid="vegetation_nitrogen_content"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59137d56-9e49-11e5-803c-0d0b866b59f3" uid="photolysis_rate_of_molecular_oxygen"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590ec6bc-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_specific_humidity_due_to_boundary_layer_mixing"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5912cf78-9e49-11e5-803c-0d0b866b59f3" uid="land_net_n2o_flux"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96d9daa-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_dissolved_molecular_oxygen_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f87f18-267c-11e7-8933-ac72891c3257" uid="f39cda18-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59137716-9e49-11e5-803c-0d0b866b59f3" uid="meridional_streamfunction_transformed_eulerian_mean"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f0bc1a-267c-11e7-8933-ac72891c3257" uid="f3722e6c-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914ede4-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_all_sky_surface_longwave_flux_to_dust_ambient_aerosol_particles"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e034e-9e49-11e5-803c-0d0b866b59f3" uid="water_flux_from_upstream"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f0bf4-9e49-11e5-803c-0d0b866b59f3" uid="liquid_water_evaporation_flux_from_canopy"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e536c-9e49-11e5-803c-0d0b866b59f3" uid="canopy_snow_amount"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913edcc-9e49-11e5-803c-0d0b866b59f3" uid="total_precipitation_flux"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913ba00-9e49-11e5-803c-0d0b866b59f3" uid="litter_nitrogen_flux"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="structure.cids" techNote="2" uid="typecrop"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590dfdc2-9e49-11e5-803c-0d0b866b59f3" uid="snow_thickness_over_categories"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59128f0e-9e49-11e5-803c-0d0b866b59f3" uid="stem_nitrogen_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="2" uid="f2feaba4-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96d280c-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_microzooplankton_expressed_as_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914b748-9e49-11e5-803c-0d0b866b59f3" uid="other_vegegtation_components_carbon_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e2f36-9e49-11e5-803c-0d0b866b59f3" uid="fire_CO2_emissions_from_vegetation_carbon"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="02e08dbdee260db0debd5685cb62934f" uid="tendency_of_sea_water_salinity_expressed_as_salt_content_due_to_parameterized_mesoscale_diffusion"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f8aca-9e49-11e5-803c-0d0b866b59f3" uid="strat_aerosol_optical_depth"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93fb6c0a-267c-11e7-8933-ac72891c3257" uid="f3255556-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59137996-9e49-11e5-803c-0d0b866b59f3" uid="number_concentration_of_convective_cloud_liquid_water_particles_in_air_at_liquid_water_cloud_top"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914f852-9e49-11e5-803c-0d0b866b59f3" uid="shortwave__flux_due_to_volcanic_aerosols_at__the_surface"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590ddf9a-9e49-11e5-803c-0d0b866b59f3" uid="carbon_mass_flux_into_ocean_from_rivers"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914567c-9e49-11e5-803c-0d0b866b59f3" uid="water_content_of_root_zone"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="15410a16-f746-11e5-950e-5404a60d96b5" uid="sea_water_added_conservative_temperature"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e1974-9e49-11e5-803c-0d0b866b59f3" uid="symbiontic_biological_nitrogen_fixation"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59151756-9e49-11e5-803c-0d0b866b59f3" uid="deposition_of_oxidised_nitrogen_onto_land"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f96734-267c-11e7-8933-ac72891c3257" uid="f3927bd6-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f9b8e2-267c-11e7-8933-ac72891c3257" uid="f33ac044-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e8b2a-9e49-11e5-803c-0d0b866b59f3" uid="sea_ice_time_fraction"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914de26-9e49-11e5-803c-0d0b866b59f3" uid="litter_wood_debris_nitrogen_content"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96f0758-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_carbonate_expressed_as_carbon_for_sea_water_in_equilibrium_with_pure_aragonite"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="84f1146a-acb7-11e6-b5ee-ac72891c3257" uid="soil_carbon_turnover_rate_by_pool"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96d36ee-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_mesozooplankton_expressed_as_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f12f88-267c-11e7-8933-ac72891c3257" uid="f39d5786-26b8-11e7-8344-ac72891c3257"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59147ddc-9e49-11e5-803c-0d0b866b59f3" uid="wetland_fraction"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f49fc-9e49-11e5-803c-0d0b866b59f3" uid="total_land_c13"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f885e-9e49-11e5-803c-0d0b866b59f3" uid="total_land_c14"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="11" uid="f2feca08-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590d8fc2-9e49-11e5-803c-0d0b866b59f3" uid="depth_of_subsurface_melting"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f13438-267c-11e7-8933-ac72891c3257" uid="f36044d6-26b8-11e7-8344-ac72891c3257"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="2fcdf51262cdbc4279810b7a487b149e" uid="mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_natural_component"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="12" uid="f2ff0c98-26b8-11e7-8344-ac72891c3257"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590de58a-9e49-11e5-803c-0d0b866b59f3" uid="vertical_integral_eastward_wind_by_total_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93fb92e8-267c-11e7-8933-ac72891c3257" uid="f36ba36c-26b8-11e7-8344-ac72891c3257"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="73097b4c-7a68-11e6-8db2-ac72891c3257" uid="sea_ice_area_transport_across_line"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c972f264-c5f0-11e6-ac20-5404a60d96b5" uid="surface_partial_pressure_of_carbon_dioxide_in_sea_water_due_to_natural_component"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="97c037c3357f24c4e06c07123224b400" uid="surface_downward_mass_flux_of_natural_carbon_dioxide_expressed_as_carbon"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f10fd0-267c-11e7-8933-ac72891c3257" uid="f37e29ba-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590ef524-9e49-11e5-803c-0d0b866b59f3" uid="ice_ocean_heat_flux"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59133ddc-9e49-11e5-803c-0d0b866b59f3" uid="integral_wrt_depth_of_product_of_sea_water_density_and_potential_temperature"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="af7306dc-a0da-11e6-bc63-ac72891c3257" uid="band_solar_insolation"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e4bd8-9e49-11e5-803c-0d0b866b59f3" uid="average_normal_stress"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f9fe92-267c-11e7-8933-ac72891c3257" uid="f355599a-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96de29c-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_dissolved_iron_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59139246-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_snow_mass_due_to_sea_ice_dynamics"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="4e0d59a6102625043f701d5527c44957" uid="iron_limitation_of_calcareous_phytoplankton"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f18e24-267c-11e7-8933-ac72891c3257" uid="f3621806-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="4f6a8297671856ee117fa285ad5d6e88" uid="tendency_of_ocean_mole_content_of_nitrogen_due_to_biological_production"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59151c42-9e49-11e5-803c-0d0b866b59f3" uid="nitrogen_mass_flux_into_ocean_from_rivers"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59170f66-9e49-11e5-803c-0d0b866b59f3" uid="change_over_time_in_canopy_water_amount"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="11" uid="f2fed188-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917ba9c-9e49-11e5-803c-0d0b866b59f3" uid="conductive_heat_flux_at_sea_ice_bottom"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96c470c-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_due_to_natural_component"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="eb28c564-a0de-11e6-bc63-ac72891c3257" uid="band_downwelling_shortwave_flux_assuming_clean_clear_sky"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="64c745ab7c8597bb0afed2bafd12c20c" uid="tendency_of_sea_water_potential_temperature_expressed_as_heat_content_due_to_parameterized_submesoscale_advection"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="tableSection.gpid" techNote="4" uid="3fac9232-599f-11e6-a173-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="2" uid="f2febf72-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="structure.dids" techNote="4" uid="tau"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f1e248-267c-11e7-8933-ac72891c3257" uid="f33464d8-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f20624-267c-11e7-8933-ac72891c3257" uid="f33692d0-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="var.sn" techNote="2" uid="sinking_mole_flux_of_particulate_phosphorus_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590eaf60-9e49-11e5-803c-0d0b866b59f3" uid="surface_water_amount_assuming_no_snow"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f0e56-9e49-11e5-803c-0d0b866b59f3" uid="surface_evapotranspiration"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96cd366-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_aragonite_epressed_as_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59137fd6-9e49-11e5-803c-0d0b866b59f3" uid="photolysis_rate_of_ozone"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59142e0e-9e49-11e5-803c-0d0b866b59f3" uid="total_land_nitrogen"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="0086e9daf8d4fb6cb305e03119d2ac2d" uid="sea_water_salinity_at_sea_floor"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.tslice" techNote="20" uid="_slice_historical065"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f0c0f2-267c-11e7-8933-ac72891c3257" uid="f3589e0c-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5914d1ba-9e49-11e5-803c-0d0b866b59f3" uid="longwave__flux__due_to_volcanic_aerosols_at_the_surface"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f1dd8e-267c-11e7-8933-ac72891c3257" uid="f3382460-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f95c4-9e49-11e5-803c-0d0b866b59f3" uid="gross_primary_productivity_of_c14"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96d1a6a-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_miscellaneous_phytoplankton_expressed_as_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f5b72-9e49-11e5-803c-0d0b866b59f3" uid="surface_downward_northward_stress_due_to_planetary_boundary_layer"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="84ef402c-acb7-11e6-b5ee-ac72891c3257" uid="mortality_vegtosoil_carbon_flux"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f1d10-9e49-11e5-803c-0d0b866b59f3" uid="change_over_time_in_surface_snow_and_ice_amount"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913d382-9e49-11e5-803c-0d0b866b59f3" uid="soil_c14_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f465a-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_all_sky_surface_shortwave_flux_due_to_dust_ambient_aerosol_particles"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590d7654-9e49-11e5-803c-0d0b866b59f3" uid="sea_surface_tilt_force_on_sea_ice_y"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590ed33c-9e49-11e5-803c-0d0b866b59f3" uid="sea_surface_tilt_force_on_sea_ice_x"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590ecbda-9e49-11e5-803c-0d0b866b59f3" uid="conductive_heat_flux_at_sea_ice_surface"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="3f30714c-b89b-11e6-be04-ac72891c3257" uid="carbon_mass_flux_into_wood_and_agricultural_product_pools_due_to_anthropogenic_land_use_or_land_cover_change"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f8d3dc-267c-11e7-8933-ac72891c3257" uid="f326e150-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="591523cc-9e49-11e5-803c-0d0b866b59f3" uid="melt_pond_refrozen_ice"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f138de-267c-11e7-8933-ac72891c3257" uid="f3536b1c-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f2698-9e49-11e5-803c-0d0b866b59f3" uid="asymbiontic_biological_nitrogen_fixation"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c9793390-c5f0-11e6-ac20-5404a60d96b5" uid="mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water_due_to_natural_component"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96eb3e8-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_phytoplankton_expressed_as_silicon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="11806b1e-f747-11e5-950e-5404a60d96b5" uid="sea_water_redistributed_conservative_temperature"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59131910-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_total_deposition"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59171df8-9e49-11e5-803c-0d0b866b59f3" uid="stem_carbon_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f1ab70-267c-11e7-8933-ac72891c3257" uid="f3923dce-26b8-11e7-8344-ac72891c3257"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96e895e-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_phytoplankton_expressed_as_nitrogen_in_sea_water"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c9a77f2a-c5f0-11e6-ac20-5404a60d96b5" uid="volume_lidar_backwards_scattering_coefficient_in_air_due_to_ambient_aerosol_particles"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e12ee-9e49-11e5-803c-0d0b866b59f3" uid="snow_and_ice_albedo"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f0e15e-267c-11e7-8933-ac72891c3257" uid="f37b0f1e-26b8-11e7-8344-ac72891c3257"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f5672-9e49-11e5-803c-0d0b866b59f3" uid="bottom_downwelling_shortwave_flux_into_ocean"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96caa26-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_bacteria_expressed_as_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59149f2e-9e49-11e5-803c-0d0b866b59f3" uid="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_anthrogpogenic_emission"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590d4fc6-9e49-11e5-803c-0d0b866b59f3" uid="coriolis_force_on_sea_ice_y"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="3f3051c6-b89b-11e6-be04-ac72891c3257" uid="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_direct_to_atmosphere_due_to_anthropogenic_land_use_land_cover_change"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="6" uid="f2ff1dc8-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59131f28-9e49-11e5-803c-0d0b866b59f3" uid="deforested_biomass_due_to_anthorpogenic_land_use_change"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="71c982aa-b8ab-11e6-97ab-ac72891c3257" uid="surface_litter_nitrogen_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59129468-9e49-11e5-803c-0d0b866b59f3" uid="mineral_no3_soil_nitrogen_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="5" uid="f2fee948-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f8fca-9e49-11e5-803c-0d0b866b59f3" uid="wetland_methane_production"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="591397be-9e49-11e5-803c-0d0b866b59f3" uid="leaf_nitrogen_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="6b8715466e3423119e9642776eacb693" uid="tendency_of_mole_concentration_of_organic_matter_expressed_as_carbon_in_sea_water_due_to_remineralization"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f9ace-9e49-11e5-803c-0d0b866b59f3" uid="gross_primary_productivity_of_c13"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59138f8a-9e49-11e5-803c-0d0b866b59f3" uid="heat_content_of_ocean_layer"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="32cbc6ae59c0abfe8e9c526e548452cc" uid="northward_ocean_heat_transport_due_to_parameterized_mesoscale_advection"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f1e496-267c-11e7-8933-ac72891c3257" uid="f36ab40c-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59143570-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_air_temperature_due_to_boundary_layer_mixing"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="84f0bbbe-acb7-11e6-b5ee-ac72891c3257" uid="net_primary_production_allocated_to_other"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c972ffd4-c5f0-11e6-ac20-5404a60d96b5" uid="surface_partial_pressure_of_carbon_dioxide_in_sea_water_due_to_abiotic_component"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59176d94-9e49-11e5-803c-0d0b866b59f3" uid="net_atmos_to_land_C13_flux"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59151012-9e49-11e5-803c-0d0b866b59f3" uid="mineral_nh4_soil_nitrogen_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96d62fe-c5f0-11e6-ac20-5404a60d96b5" uid="sea_water_alkalinity_expressed_as_mole_equivalent_due_to_natural_component"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f0b5ee-267c-11e7-8933-ac72891c3257" uid="f38ea47a-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96ecf22-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="4146743c-4f40-11e6-a814-ac72891c3257" uid="magnitude_of_basal_drag_at_land_ice_base"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="f507e49404f47a6255539751483d8bdc" uid="tendency_of_sea_water_salinity_expressed_as_salt_content_due_to_parameterized_eddy_advection"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917ff52-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_mole_concentration_of_ozone_and_atomic_oxygen_and_1D_oxygen_atom_due_to_chemical_production_and_photolysis"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f1324-9e49-11e5-803c-0d0b866b59f3" uid="liquid_water_evaporation_flux_from_soil"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="var.sn" techNote="2" uid="sea_water_ph_reported_on_total_scale_due_to_natural_component"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.tslice" techNote="12" uid="_slice_historical035"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="f1b2785c2f21b3ca1fbe97a1152920f6" uid="nitrogen_limitation_of_diatoms"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917ca14-9e49-11e5-803c-0d0b866b59f3" uid="liquid_water_evaporation_flux_from_open_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590db236-9e49-11e5-803c-0d0b866b59f3" uid="autotrophic_respiration_from_stem"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="117c89cc-b574-11e6-9ed4-5404a60d96b5" uid="integral_wrt_depth_of_product_of_sea_water_density_and_conservative_temperature"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590ded6e-9e49-11e5-803c-0d0b866b59f3" uid="nitrogen_mass_flux_into_soil_from_litter"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c97316d6-c5f0-11e6-ac20-5404a60d96b5" uid="surface_carbon_dioxide_partial_pressure_difference_between_sea_water_and_air_due_to_natural_component"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f3f16-9e49-11e5-803c-0d0b866b59f3" uid="band_direct_albedo"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590f0442-9e49-11e5-803c-0d0b866b59f3" uid="snow_area_fraction_over_categories"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f0eb86-267c-11e7-8933-ac72891c3257" uid="f393e660-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59130e98-9e49-11e5-803c-0d0b866b59f3" uid="soil_liquid_water_content"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="var.sn" techNote="2" uid="surface_upwelling_shortwave_flux_in_air_assuming_clean_clear_sky"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59139cfa-9e49-11e5-803c-0d0b866b59f3" uid="band_diffuse_albedo"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913ad62-9e49-11e5-803c-0d0b866b59f3" uid="change_over_time_in_thermal_energy_content_of_surface_snow_and_ice"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f10d78-267c-11e7-8933-ac72891c3257" uid="f34706d8-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="2" uid="f2fed912-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96e5fc4-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_particulate_organic_matter_expressed_as_phosphorus_in_sea_water"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590db8c6-9e49-11e5-803c-0d0b866b59f3" uid="tendency_of_mole_concentration_of_ozone_and_atomic_oxygen_and_1D_oxygen_atom_due_to_chemical_destruction"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93fa2ed0-267c-11e7-8933-ac72891c3257" uid="f3429a26-26b8-11e7-8344-ac72891c3257"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93fd0128-267c-11e7-8933-ac72891c3257" uid="f33bbe22-26b8-11e7-8344-ac72891c3257"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917f9c6-9e49-11e5-803c-0d0b866b59f3" uid="change_over_time_in_thermal_energy_content_of_surface"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5912b4e8-9e49-11e5-803c-0d0b866b59f3" uid="temperature_tendency_due_to_dissipation_orographic_gravity_wave_drag"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93fbbdd6-267c-11e7-8933-ac72891c3257" uid="f36a334c-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="591514ea-9e49-11e5-803c-0d0b866b59f3" uid="land_nitrogen_lost_to_leaching"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="590e883c-9e49-11e5-803c-0d0b866b59f3" uid="u-tendency_by_vstar_advection"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5917c654-9e49-11e5-803c-0d0b866b59f3" uid="plant_nitrogen_uptake"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.esid" techNote="2" uid="f2fec2e2-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="5913aa10-9e49-11e5-803c-0d0b866b59f3" uid="deposition_of_reduced_nitrogen_onto_land"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="esid" tid="93f13686-267c-11e7-8933-ac72891c3257" uid="f365f174-26b8-11e7-8344-ac72891c3257"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="requestItem.tslice" techNote="24" uid="_slice_piControl040"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="structure.cids" techNote="2" uid="typenatgr"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="59133288-9e49-11e5-803c-0d0b866b59f3" uid="sea_ice_thickness_over_categories"/>
<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="c96eddd2-c5f0-11e6-ac20-5404a60d96b5" uid="surface_mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water_due_to_natural_component"/>
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<item class="missingLink" description="Missing links detected and marked for fixing" prov="scanDreq.py:annotate" tattr="sn" tid="f36046ab9a8a24ce4d7431e2defd9cf6" uid="surface_downward_mass_flux_of_abiotic_14_carbon_dioxide_expressed_as_carbon"/>
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</remarks>
<experiment id="exp" label="experiment" title="1.5 Experiments" uid="SECTION:experiment" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item comment="" description="Concentration-driven future RCP5-3.4 overshoot scenario simulation,  biogeochemically-coupled" egid="f16d3098-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="esmssp5-34-over-bgc" mcfg="" mip="C4MIP" nstart="1" ntot="60" starty="2040.0" tier="2" uid="f16d393a-dd9e-11e6-b89b-ac72891c3257" yps="60"/>
<item comment="Historical and future uninitialized simulations to assess the impact of initialization" description="climate simulation initialized from control with forcing prescribed from the historical period and future scenario as in A1" egid="f16dbbe4-dd9e-11e6-b89b-ac72891c3257" endy="2030.0" ensz="10" label="dcppA-historical" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="1700" starty="1850.0" tier="2" uid="f16dc166-dd9e-11e6-b89b-ac72891c3257" yps="170"/>
<item comment="" description="Pacemaker 20th century historical run that includes all forcing as used in CMIP6 Historical Simulation, and the observational historical SST is restored in the AMO domain (0o-70oN, 70oW-0o)" egid="f16e220a-dd9e-11e6-b89b-ac72891c3257" endy="2013.0" ensz="3" label="HIST-AMO" mcfg="CGCM with SST restored to the model climatology plus observational historical anomaly in the AMO domain" mip="GMMIP" nstart="1" ntot="432" starty="1870.0" tier="2" uid="f16e24c6-dd9e-11e6-b89b-ac72891c3257" yps="144"/>
<item comment="" description="Land only simulations" egid="f16eab80-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="Land-Hist" mcfg="LND" mip="LS3MIP" nstart="1" ntot="165" starty="1850.0" tier="1" uid="f16eaa36-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="Prescribed anthropogenic aerosol optical properties. Changes in aerosols only. Sea surface temperatures and sea ice fixed at pre-industrial values as per  RFMIP-ERF-PI-Control." egid="f16f49aa-dd9e-11e6-b89b-ac72891c3257" endy="30.0" ensz="4" label="RFMIP-SpAer-ERF-anthro" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="120" starty="1.0" tier="2" uid="f16f4842-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="As volc-pinatubo-full, but with a slab ocean" description="Pinatubo experiment with slab ocean" egid="f16f90b8-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="25" label="volc-pinatubo-slab" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="25" ntot="75" starty="Preindustrial conditions" tier="3" uid="f16fa8e6-dd9e-11e6-b89b-ac72891c3257" yps="3"/>
<item comment="" description="" egid="f16fbb42-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="esm-piControl" mcfg="" mip="CMIP" nstart="1" ntot="500" starty="" tier="1" uid="f16fcc40-dd9e-11e6-b89b-ac72891c3257" yps="500"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs" description="idealized positive extratropical AMV anomaly pattern" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="25" label="dcppC-amv-extrop-plus" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="250" starty="control" tier="2" uid="f16ddeb2-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="The topography of the TIP is modified by setting surface elevations to 500m; to understand the combined thermal and mechanical forcing of the TIP. Same model as DECK." egid="f16e28d6-dd9e-11e6-b89b-ac72891c3257" endy="2013.0" ensz="1" label="DTIP" mcfg="AGCM" mip="GMMIP" nstart="1" ntot="35" starty="1979.0" tier="3" uid="f16e2778-dd9e-11e6-b89b-ac72891c3257" yps="35"/>
<item comment="" description="Prescribed land conditions 1980-2014 climate" egid="f16ebb02-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="4" label="LFMIP-pdLC2" mcfg="LND-ATM-OC" mip="LS3MIP" nstart="1" ntot="484" starty="1980.0" tier="2" uid="f16ebdaa-dd9e-11e6-b89b-ac72891c3257" yps="121"/>
<item comment="" description="Same as CMIP6 historical but with land cover held at 1850, no human activity; concentration driven" egid="f16ee168-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="2" label="hist-noLULCC-02" mcfg="GCM" mip="LUMIP" nstart="1" ntot="330" starty="1850.0" tier="2" uid="f16ee46a-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="DECK: abrupt4xCO2" egid="f16fbb42-dd9e-11e6-b89b-ac72891c3257" endy=" " ensz="1" label="abrupt-4xCO2" mcfg="" mip="CMIP" nstart="1" ntot="150" starty=" " tier="1" uid="f16fbe1c-dd9e-11e6-b89b-ac72891c3257" yps="150"/>
<item comment="" description="idealized impact of AMV-" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="25" label="DCPP-C13" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="250" starty="control" tier="1" uid="f16dd49e-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Using solar irradiance reduction, return the radiative forcing from a background of the ScenarioMIP high forcing to the ScenarioMIP middle forcing" description="total solar irradiance reduction to reduce net forcing from SSP585 to SSP245" egid="f16e3790-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="3" label="G6solar" mcfg="AOGCM" mip="GeoMIP" nstart="1" ntot="243" starty="2020.0" tier="1" uid="f16e3a6a-dd9e-11e6-b89b-ac72891c3257" yps="81"/>
<item comment="Pre-industrial control simulation for &quot;offline&quot; ice sheets" description="offline ice sheet forced by ISM's own AOGCM piControl output" egid="f16e6e9a-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="ism-piControl-self" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="500" starty="1850.0" tier="1" uid="f16e714c-dd9e-11e6-b89b-ac72891c3257" yps="451"/>
<item comment="Historical simulation that includes interactive ice sheets. Set up follows the historical experiment" description="historical with interactive ice sheet" egid="f16e8682-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="historical-withism" mcfg="AOGCM-ISM" mip="ISMIP6" nstart="1" ntot="165" starty="1850.0" tier="2" uid="f16e8524-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="Future climate ScenarioMIP SSP5-8.5 simulation using &quot;offline&quot; ice sheet models. Forcing for ice sheet model is the standard dataset based on ScenarioMIP ssp585" description="offline ice sheet forced by ISMIP6-specified AOGCM ssp585 output" egid="f16e9118-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="ism-ssp585-std" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="286" starty="2015.0" tier="2" uid="f16e969a-dd9e-11e6-b89b-ac72891c3257" yps="286"/>
<item comment="" description="Initialized pseudo-observations land" egid="f16eceee-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="10" label="LFMIP-Pobs" mcfg="LND-ATM-OC" mip="LS3MIP" nstart="1" ntot="350" starty="1980.0" tier="2" uid="f16ecd9a-dd9e-11e6-b89b-ac72891c3257" yps="35"/>
<item comment="" description="Extension of SSP5_85 to 2300, in style of CMIP5 extension. Assumes emissions eventually decline from 2100 levels to produce stabilized forcing by 2300." egid="f16f65f2-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="SSP585ext" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="199" starty="2101.0" tier="2" uid="f16f6b7e-dd9e-11e6-b89b-ac72891c3257" yps="199"/>
<item comment="" description="Time slice at 1850 (picontrol) for G1ext to examine radiative forcing of abrupt4xCO2" egid="f16e4352-dd9e-11e6-b89b-ac72891c3257" endy="1850.0" ensz="1" label="G1extSlice1" mcfg="AGCM" mip="GeoMIP" nstart="1" ntot="10" starty="1850.0" tier="2" uid="f16e41fe-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="Coupled integrations, at least one with constant 1950's forcing (CTL) and one or more with historic and then RCP4.5 (as in Forced_Atmos_Land, EXP)." egid="f16e66d4-dd9e-11e6-b89b-ac72891c3257" endy="2050.0" ensz="2" label="Coupled" mcfg="HIGH and LOW (e.g. 25km and 60-100km resolution)" mip="HighResMIP" nstart="1" ntot="200" starty="1951.0" tier="2" uid="f16e658a-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="" description="" egid="f16fc70e-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="historical-ext" mcfg="" mip="CMIP" nstart="1" ntot="1" starty="" tier="2" uid="f16fcec0-dd9e-11e6-b89b-ac72891c3257" yps="1"/>
<item comment="" description="" egid="f16fbb42-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="esm-piControl-spinup" mcfg="" mip="CMIP" nstart="1" ntot="100" starty="" tier="1" uid="f16fd636-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="" description="Fully-coupled specified concentration simulation in which CO2 increases at a rate of 1% per year until quadrupling, plus an additional scenario of anthropogenic nitrogen deposition" egid="f16d22b0-dd9e-11e6-b89b-ac72891c3257" endy="1989.0" ensz="1" label="esm1pccouNdep" mcfg="" mip="C4MIP" nstart="1" ntot="140" starty="1850.0" tier="2" uid="f16d28b4-dd9e-11e6-b89b-ac72891c3257" yps="140"/>
<item comment="Extension of well-mixed GHG-only run under SSP2-4.5. Models with interactive chemistry schemes should either turn off the chemistry or use a preindustrial climatology of stratospheric and tropospheric ozone in their radiation schemes" description="well-mixed GHG-only SSP2-4.5 run" egid="f16d9880-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="ssp245-GHG" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="80" starty="2021.0" tier="2" uid="f16d9740-dd9e-11e6-b89b-ac72891c3257" yps="80"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs" description="idealized positive northern extratropical IPV anomaly pattern" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="10" label="dcppC-ipv-nextrop-plus" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="100" starty="control" tier="2" uid="f16dea60-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Early 19th century cluster of strong tropical volcanic eruptions, including the 1809 event of unknown location, the 1815 Tambora and 1835 Cosigueina eruptions. Experiment initialized from past1000 (all forcings except volcanic kept constant from year AD 1790 on)" description="19th century volcanic cluster initialized from past1000" egid="f16f9e8c-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="3" label="volc-cluster-mill" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="3" ntot="150" starty="past1000, January 1st 1809" tier="3" uid="f16fa5b2-dd9e-11e6-b89b-ac72891c3257" yps="50"/>
<item comment="" description="As CMIP5/CFMIP-2.  Aquaplanet experiment where SSTs are subject to a uniform warming of 4K." egid="f16d4718-dd9e-11e6-b89b-ac72891c3257" endy="1988.0" ensz="1" label="aqua4K" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="10" starty="1979.0" tier="1" uid="f16d4c86-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="Identical to the DECK abrupt4xCO2, but at 0.5xCO2" egid="f16d5672-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="abrupt0-5xCO2" mcfg="Coupled AOGCM" mip="CFMIP" nstart="1" ntot="150" starty="" tier="2" uid="f16d6bda-dd9e-11e6-b89b-ac72891c3257" yps="150"/>
<item comment="An AGCM experiment with monthly-varying SSTs, sea-ice, atmospheric constituents and any other necessary boundary conditions (e.g. vegetation if required) taken from each model's own piControl run (using the 30 years of piControl that are parallel to years 111-140 of its abrupt4xCO2 run). Dynamic vegetation should be turned off in all the piSST set of experiments" description="experiment forced with pre-industrial SSTs, sea ice and atmospheric constituents" egid="f16d72d8-dd9e-11e6-b89b-ac72891c3257" endy="Year 140 of abrupt4xCO2" ensz="1" label="piSST" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="30" starty="Year 111 of abrupt4xCO2" tier="2" uid="f16d718e-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="Future climate from ScenarioMIP SSP5-8.5 simulation that includes interactive ice sheets. Set up follows the standard SSP5-8.5 experiment" description="ssp585 with interactive ice sheet" egid="f16e9118-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="ssp585-withism" mcfg="AOGCM-ISM" mip="ISMIP6" nstart="1" ntot="286" starty="2015.0" tier="2" uid="f16e8fb0-dd9e-11e6-b89b-ac72891c3257" yps="286"/>
<item comment="" description="Additional land use policy sensitivity simulation for high radiative forcing scenario, keep all forcings the same as in C4MIP esmssp5-8.5 scenario except use SSP1-2.6 land use; emission driven" egid="f16ef5ae-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="esmSSP5-85wSSP1-26landuse" mcfg="ESM" mip="LUMIP" nstart="1" ntot="95" starty="2015.0" tier="1" uid="f16ef464-dd9e-11e6-b89b-ac72891c3257" yps="95"/>
<item comment="" description="main forcings : orbital parameters, ice-sheet, trace gases" egid="f16f14c6-dd9e-11e6-b89b-ac72891c3257" endy="as long as possible to have &gt;= 100 stabilised years (I.e 500 )" ensz="1" label="LIG" mcfg="ESM" mip="PMIP" nstart="1" ntot="100" starty="from PI or pre-existing LIG" tier="1" uid="f16f1354-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="" description="DECK: 1pctCO2" egid="f16fbb42-dd9e-11e6-b89b-ac72891c3257" endy=" " ensz="1" label="1pctCO2" mcfg="" mip="CMIP" nstart="1" ntot="150" starty=" " tier="1" uid="f16fc0b0-dd9e-11e6-b89b-ac72891c3257" yps="150"/>
<item comment="" description="As CMIP5/CFMIP-2 aquaControl experiment, but with cloud-radiative effects switched off in the LW radiation code." egid="f16d5672-dd9e-11e6-b89b-ac72891c3257" endy="1988.0" ensz="1" label="offlwaquaControl" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="10" starty="1979.0" tier="2" uid="f16d5be0-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Historical solar-only transient simulation using settings from CMIP6 historical simulation but fixed GHG&amp;ODS (1850 level)" description="historical solar-only run" egid="f16da38e-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="3" label="hist-sol" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="513" starty="1850.0" tier="3" uid="f16da636-dd9e-11e6-b89b-ac72891c3257" yps="171"/>
<item comment="Offline ice sheet evolution for the last few decades forced by amip" description="offline ice sheet forced by ISMIP6-specified AGCM AMIP output" egid="f16e9ab4-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="ism-amip-std" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="36" starty="1979.0" tier="3" uid="f16e9956-dd9e-11e6-b89b-ac72891c3257" yps="36"/>
<item comment="" description="Prescribed land conditions 30yr running mean" egid="f16ebb02-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="LFMIP-rmLC" mcfg="LND-ATM-OC" mip="LS3MIP" nstart="1" ntot="121" starty="1980.0" tier="2" uid="f16ec598-dd9e-11e6-b89b-ac72891c3257" yps="121"/>
<item comment="" description="Future scenario with low radiative forcing by the end of century. Reaches about 3.7 W/m2 by 2100; fills gap in RCP forcing pathways between 4.5 and 2.6 W/m2. Concentration-driven." egid="f16f65f2-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="SSP437" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="86" starty="2015.0" tier="2" uid="f16f68b8-dd9e-11e6-b89b-ac72891c3257" yps="86"/>
<item comment="Extension of stratospheric-ozone-only run under SSP2-4.5. In models with coupled chemistry, the chemistry scheme should be turned off, and the simulated ensemble mean monthly mean 3D stratospheric ozone concentrations from the SSP2-4.5 simulations should be prescribed. Tropospheric ozone should be fixed at 3D long-term monthly mean piControl values, with a value of 100 ppbv ozone concentration in this piControl climatology used to separate the troposphere from the stratosphere. In models without coupled chemistry the same stratospheric ozone prescribed in SSP2-4.5 should be prescribed. Stratospheric ozone concentrations will be provided by CCMI" description="stratospheric-ozone-only SSP2-4.5 run" egid="f16d9880-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="ssp245-stratO3" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="80" starty="2021.0" tier="2" uid="f16d9f60-dd9e-11e6-b89b-ac72891c3257" yps="80"/>
<item comment="Effects of volcanoes on decadal prediction and predictability of forced and internal variability components: years per sim abbreviated: 5 to 10: total number of years abbreviated: 50-100" description="hindcast but with only background volcanic forcing" egid="f16dfb22-dd9e-11e6-b89b-ac72891c3257" endy="1991.0" ensz="10" label="dcppC-hindcast-noPinatubo" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="50" starty="1991.0" tier="1" uid="f16df9d8-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="" description="Against a background of RCP6.0, a layer of stratospheric aerosols is injected into the lower stratosphere at a rate of 8 Tg SO2 per year.  The distribution of sulfate aerosols will be precomputed and provided to all modeling groups." egid="f16e584c-dd9e-11e6-b89b-ac72891c3257" endy="2071.0" ensz="1" label="G4-SSA" mcfg="AOGCM with fixed stratospheric sulfur distribution" mip="GeoMIP" nstart="1" ntot="72" starty="2020.0" tier="2" uid="f16e5702-dd9e-11e6-b89b-ac72891c3257" yps="72"/>
<item comment="Idealized 1%/yr CO2 increase to 4xC02 over 140yrs and kept constant at 4xCO2 for an additional 200 to 400 yrs simulation with ice sheets forced &quot;offline&quot; with DECK 1pctCO2 using a standard forcing" description="offline ice sheet model forced by ISMIP6-specified AOGCM 1pctCO2to4x output" egid="f16e77fa-dd9e-11e6-b89b-ac72891c3257" endy="As long as possible (350 or 500)" ensz="1" label="ism-1pctCO2to4x-std" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="350" starty="From pdControlforcedism" tier="1" uid="f16e7ef8-dd9e-11e6-b89b-ac72891c3257" yps="350"/>
<item comment="" description="Same as the OMIP experiment except that it is not initialized with observed climatologies; rather it is initialized with results from at least a 1000-year spin up of the coupled physical-biogeochemical models. Also it includes radiocarbon to evaluate deep-ocean circulation." egid="f16eff5e-dd9e-11e6-b89b-ac72891c3257" endy="310.0" ensz="1" label="OMIP-B" mcfg="Global ocean - sea-ice coupled with required biogeochemistry" mip="OMIP" nstart="1" ntot="311" starty="1.0" tier="2" uid="f16efdf6-dd9e-11e6-b89b-ac72891c3257" yps="311"/>
<item comment="" description="Slab ocean control run, necessary for volc-pinatubo-slab" egid="f16fb11a-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="1" label="slab-control" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="1" ntot="30" starty="Preindustrial conditions" tier="3" uid="f16fafd0-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="Historical anthropogenic-Aerosols-only run" description="historical anthropogenic aerosols-only run" egid="f16d9470-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="3" label="hist-aer" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="513" starty="1850.0" tier="1" uid="f16d931c-dd9e-11e6-b89b-ac72891c3257" yps="171"/>
<item comment="" description="idealized impact of IPV-" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="10" label="DCPP-C16" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="100" starty="control" tier="1" uid="f16ddc32-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="1xCO2 experiment, parallel to piControl, forced over the ocean by surface windstress anomalies obtained from the CMIP5 ensemble mean of 1pctCO2 experiments at the time of 2xCO2" egid="f16e0d74-dd9e-11e6-b89b-ac72891c3257" endy="70.0" ensz="1" label="stressFAF" mcfg="AOGCM" mip="FAFMIP" nstart="1" ntot="70" starty="1.0" tier="1" uid="f16e0c20-dd9e-11e6-b89b-ac72891c3257" yps="70"/>
<item comment="" description="1xCO2 experiment, parallel to piControl, forced over the ocean by surface net freshwater flux anomalies obtained from the CMIP5 ensemble mean of 1pctCO2 experiments at the time of 2xCO2" egid="f16e0d74-dd9e-11e6-b89b-ac72891c3257" endy="70.0" ensz="1" label="waterFAF" mcfg="AOGCM" mip="FAFMIP" nstart="1" ntot="70" starty="1.0" tier="1" uid="f16e12ec-dd9e-11e6-b89b-ac72891c3257" yps="70"/>
<item comment="" description="Extend Forced_Atmos_land to 2050 with agreed forcings (with option to extend further to 2100)" egid="f16e6ac6-dd9e-11e6-b89b-ac72891c3257" endy="2050.0" ensz="1" label="Forced-Atmos-Land-2050" mcfg="HIGH and LOW (e.g. 25km and 60-100km resolution)" mip="HighResMIP" nstart="1" ntot="36" starty="2015.0" tier="3" uid="f16e697c-dd9e-11e6-b89b-ac72891c3257" yps="36"/>
<item comment="Present-day control simulation for &quot;offline&quot; ice sheets" description="offline ice sheet forced by ISMIP6-specified AOGCM pdControl output" egid="f16e6e9a-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="ism-pdControl-std" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="500" starty="" tier="1" uid="f16e7408-dd9e-11e6-b89b-ac72891c3257" yps="25"/>
<item comment="" description="Paired idealized timeslice control and deforestation experiments for specific regions (tropical, boreal, temperate?, TBD)" egid="f16ed2ea-dd9e-11e6-b89b-ac72891c3257" endy="2010.0" ensz="1" label="idealized-reg-deforest" mcfg="LND, ATM, GCM" mip="LUMIP" nstart="1" ntot="90" starty="1980.0" tier="3" uid="f16ed57e-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="Additional land use policy sensitivity simulation for high radiative forcing scenario, keep all forcings the same as ScenarioMIP SSP3-7 (deforestation scenario), but replace land use from SSP1-2.6 (afforestation) scenario; concentration-driven" egid="f16eec44-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="SSP3-7wSSP1-26landuse-01" mcfg="GCM" mip="LUMIP" nstart="1" ntot="95" starty="2015.0" tier="1" uid="f16eeb04-dd9e-11e6-b89b-ac72891c3257" yps="95"/>
<item comment="" description="As in RFMIP-ERF-PI-Control but with 4xCO2" egid="f16f21a0-dd9e-11e6-b89b-ac72891c3257" endy="30.0" ensz="1" label="RFMIP-ERF-4xCO2" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="30" starty="1.0" tier="1" uid="f16f2484-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="As in RFMIP-ERF-PI-Control but with present-day anthropogenic forcing (greenhouse gases, aerosols and land-use)" egid="f16f21a0-dd9e-11e6-b89b-ac72891c3257" endy="30.0" ensz="1" label="RFMIP-ERF-Anthro" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="30" starty="1.0" tier="1" uid="f16f2754-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="Extension of SSP1_26 to 2300, in style of CMIP5 extension. Extends negative emissions level reached in 2100 to produce slowly declining forcing." egid="f16f65f2-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="SSP126ext" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="199" starty="2101.0" tier="2" uid="f16f7128-dd9e-11e6-b89b-ac72891c3257" yps="199"/>
<item comment="As volc-pinatubo-full, but with prescribed perturbation to the shortwave flux to mimic the attenuation of solar radiation by volcanic aerosols" description="Pinatubo experiment with partial radiative forcing, solar radiation scattering only" egid="f16f90b8-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="25" label="volc-pinatubo-surf" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="25" ntot="75" starty="Preindustrial conditions" tier="1" uid="f16f93b0-dd9e-11e6-b89b-ac72891c3257" yps="3"/>
<item comment="Early 19th century cluster of strong tropical volcanic eruptions, including the 1809 event of unknown location, the 1815 Tambora and 1835 Cosigueina eruptions. Experiment initialized from PiControl" description="19th century volcanic cluster initialized from PiControl" egid="f16f9e8c-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="3" label="volc-cluster-ctrl" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="3" ntot="150" starty="Preindustrial conditions" tier="2" uid="f16f9c20-dd9e-11e6-b89b-ac72891c3257" yps="50"/>
<item comment="Idealized Northern Hemisphere high-latitude eruption emitting 28.1 Tg of SO2. Experiment initialized from PiControl" description="idealized Northern Hemisphere high-latitude eruption emitting 28.1 Tg of SO2" egid="f16f8b72-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="9" label="volc-long-hlN" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="9" ntot="180" starty="Preindustrial conditions" tier="2" uid="f16fa22e-dd9e-11e6-b89b-ac72891c3257" yps="20"/>
<item comment="Idealized Southern Hemisphere high-latitude eruption emitting 28.1 Tg of SO2. Experiment initialized from PiControl" description="Idealized Southern Hemisphere high-latitude eruption emitting 28.1 Tg of SO2" egid="f16f8b72-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="9" label="volc-long-hlS" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="9" ntot="180" starty="Preindustrial conditions" tier="3" uid="f16fb3a4-dd9e-11e6-b89b-ac72891c3257" yps="20"/>
<item comment="" description="Concentration-driven future RCP5-3.4 overshoot scenario simulation extension to 2300 biogeochemically-coupled" egid="f16d3098-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="esmssp5-34-over-bgc-ext" mcfg="" mip="C4MIP" nstart="1" ntot="200" starty="2101.0" tier="2" uid="f16d3c14-dd9e-11e6-b89b-ac72891c3257" yps="200"/>
<item comment="" description="As CMIP5/CFMIP-2.  AMIP experiment where SSTs are subject to a composite SST warming pattern derived from coupled models, scaled to a global mean of 4K." egid="f16d4718-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="amipFuture" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="36" starty="1979.0" tier="1" uid="f16d45ce-dd9e-11e6-b89b-ac72891c3257" yps="36"/>
<item comment="" description="Identical to standard AMIP experiment but from 1870-present with constant pre-industrial forcing levels (anthro &amp; natural)" egid="f16d5672-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="amipPiForcing" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="145" starty="1870.0" tier="2" uid="f16d6e64-dd9e-11e6-b89b-ac72891c3257" yps="145"/>
<item comment="" description="As piSST, but with monthly-varying SSTs taken from years 111-140 of each model's own abrupt4xCO2 experiment instead of from piControl. Sea-ice is unchanged from piSST." egid="f16d72d8-dd9e-11e6-b89b-ac72891c3257" endy="As above" ensz="1" label="futureSST" mcfg="As above" mip="CFMIP" nstart="1" ntot="30" starty="As above" tier="2" uid="f16d8070-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="Historical volcanic-only run" description="historical volcanic-only run" egid="f16da38e-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="3" label="hist-volc" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="513" starty="1850.0" tier="3" uid="f16da23a-dd9e-11e6-b89b-ac72891c3257" yps="171"/>
<item comment="Historical ALL forcing run with alternate estimates of aerosol concentrations/emissions" description="historical ALL-forcing run with alternate estimates of aerosol forcing" egid="f16db536-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="3" label="hist-all-aer2" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="513" starty="1850.0" tier="3" uid="f16db3ec-dd9e-11e6-b89b-ac72891c3257" yps="171"/>
<item comment="Decadal hindcasts begun each year from 1960 to present, or every other year at minimum: nstart abbreviated: 30-60: total number of years abbreviated: 1500-6000" description="year 1-5 hindcast initialized based on observations and using historical forcing" egid="f16dbbe4-dd9e-11e6-b89b-ac72891c3257" endy="present (to 2019)" ensz="10" label="dcppA-hindcast" mcfg="AOGCM/ESM" mip="DCPP" nstart="30" ntot="1500" starty="1960.0" tier="1" uid="f16dba9a-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs" description="pacemaker atlantic experiment" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="10" label="dcppC-atl-pacemaker" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="650" starty="1950 (from 1910 if possible)" tier="3" uid="f16df2bc-dd9e-11e6-b89b-ac72891c3257" yps="65"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs: years per sim abbreviated: 5 to 10: total number of years abbreviated: 200-400" description="predictability of 1990s warming of Atlantic sub-polar gyre" egid="f16df71c-dd9e-11e6-b89b-ac72891c3257" endy="1996.0" ensz="10" label="dcppC-atl-spg" mcfg="AOGCM/ESM" mip="DCPP" nstart="4" ntot="200" starty="1993.0" tier="3" uid="f16df5d2-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="Effects of volcanoes on decadal prediction and predictability of forced and internal variability components: years per sim abbreviated: 5 to 10: total number of years abbreviated: 50-100" description="2015 forecast with added Agung forcing" egid="f16dfb22-dd9e-11e6-b89b-ac72891c3257" endy="2015.0" ensz="10" label="dcppC-forecast-addAgung" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="50" starty="2015.0" tier="3" uid="f16e0978-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="" description="Time slice at 2020 (ScenarioMIP Tier 1 high forcing scenario)" egid="f16e4352-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="1" label="G6Slice1" mcfg="AGCM" mip="GeoMIP" nstart="1" ntot="10" starty="2020.0" tier="2" uid="f16e48d4-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Historical simulation using &quot;offline&quot; ice sheet models. Forcing for ice sheet model is the standard dataset based on CMIP6 AOGCM historical" description="offline ice sheet forced by ISMIP6-specified AOGCM historical output" egid="f16e8682-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="ism-historical-std" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="165" starty="From pdControlforcedism" tier="2" uid="f16e8ce0-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="land conditions from Land-Hist; SSTs prescribed" egid="f16ebb02-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="LFMIP-PobsSST" mcfg="LND-ATM" mip="LS3MIP" nstart="1" ntot="114" starty="1901.0" tier="2" uid="f16ec2dc-dd9e-11e6-b89b-ac72891c3257" yps="114"/>
<item comment="" description="Factorial set of land only experiments with increasingly realistic treatment of land management; derivatives of LMIP-hist (LS3MIP)" egid="f16ed97a-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="10" label="landcover-manage-LND" mcfg="LND" mip="LUMIP" nstart="1" ntot="1650" starty="1850.0" tier="2" uid="f16ed83a-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="main forcings : trace gases, orography, ice-sheet" egid="f16f108e-dd9e-11e6-b89b-ac72891c3257" endy="as long as possible to have &gt;= 100 stabilised years (I.e 500 )" ensz="1" label="PlioExp" mcfg="ESM" mip="PMIP" nstart="1" ntot="100" starty="from PI or pre-existing PlioExp" tier="1" uid="f16f0f30-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="" description="Offline radiation calculations with specified surface and atmospheric conditions. No clouds or aerosols." egid="f16f18ea-dd9e-11e6-b89b-ac72891c3257" endy="0.0" ensz="0" label="RFMIP-IRF-GHG" mcfg="Offline-rad" mip="RFMIP" nstart="1" ntot="0" starty="0.0" tier="1" uid="f16f178c-dd9e-11e6-b89b-ac72891c3257" yps="0"/>
<item comment="" description="Future scenario with low radiative forcing by the end of century. Following approximately RCP2.6 global forcing pathway but with new forcing based on SSP1. Concentration-driven." egid="f16f57e2-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="SSP126" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="86" starty="2015.0" tier="1" uid="f16f6188-dd9e-11e6-b89b-ac72891c3257" yps="86"/>
<item comment="" description="" egid="f16fbb42-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="piControl-spinup" mcfg="" mip="CMIP" nstart="1" ntot="100" starty="" tier="1" uid="f16fd3b6-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="" description="Emissions-driven future scenario simulation" egid="f16cd3fa-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="esmssp5-85" mcfg="" mip="C4MIP" nstart="1" ntot="85" starty="2015.0" tier="1" uid="f16c8fe4-dd9e-11e6-b89b-ac72891c3257" yps="85"/>
<item comment="" description="Biogeochemically-coupled specified concentration simulation in which CO2 increases at a rate of 1% per year until quadrupling, plus an additional scenario of anthropogenic nitrogen deposition" egid="f16d22b0-dd9e-11e6-b89b-ac72891c3257" endy="1989.0" ensz="1" label="esm1pcbgcNdep" mcfg="" mip="C4MIP" nstart="1" ntot="140" starty="1850.0" tier="2" uid="f16d2c2e-dd9e-11e6-b89b-ac72891c3257" yps="140"/>
<item comment="" description="Concentration-driven future RCP5-8.5 scenario simulation extension to 2300 biogeochemically-coupled" egid="f16d3098-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="esmssp5-85extbgc" mcfg="" mip="C4MIP" nstart="1" ntot="200" starty="2101.0" tier="2" uid="f16d3656-dd9e-11e6-b89b-ac72891c3257" yps="200"/>
<item comment="" description="As CMIP5/CFMIP-2.  AMIP experiment where SSTs are subject to a uniform warming of 4K." egid="f16d404c-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="amip4K" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="36" starty="1979.0" tier="1" uid="f16d3ef8-dd9e-11e6-b89b-ac72891c3257" yps="36"/>
<item comment="Historical well-mixed GHG-only run. Models with interactive chemistry schemes should either turn off the chemistry or use a preindustrial climatology of stratospheric and tropospheric ozone in their radiation schemes. This will ensure that ozone is fixed in all these simulations, and simulated responses in models with and without coupled chemistry are comparable" description="historical well-mixed GHG-only run" egid="f16d8c96-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="3" label="hist-GHG" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="513" starty="1850.0" tier="1" uid="f16d8f5c-dd9e-11e6-b89b-ac72891c3257" yps="171"/>
<item comment="Historical ALL forcing run with alternates estimate of solar and volcanic forcing" description="historical ALL-forcing run with alternate estimates of natural forcing" egid="f16db536-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="3" label="hist-all-nat2" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="513" starty="1850.0" tier="3" uid="f16db7e8-dd9e-11e6-b89b-ac72891c3257" yps="171"/>
<item comment="" description="Synthetic atmospheric forcing initMIP experiment" egid="f16ea284-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="ism-asmb-std" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="100" starty="" tier="1" uid="f16ea50e-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="" description="Additional land use policy sensitivity simulation for low radiative forcing scenario, keep all forcings the same as ScenarioMIP SSP1-2.6 (afforestation scenario), but replace land use from SSP3-7 (afforestation) scenario; concentration-driven" egid="f16eec44-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="SSP1-26wSSP3-7landuse" mcfg="GCM" mip="LUMIP" nstart="1" ntot="95" starty="2015.0" tier="1" uid="f16ef1b2-dd9e-11e6-b89b-ac72891c3257" yps="95"/>
<item comment="" description="As in RFMIP-ERF-PI-Control but with present-day greenhouse gases" egid="f16f21a0-dd9e-11e6-b89b-ac72891c3257" endy="30.0" ensz="1" label="RFMIP-ERF-GHG" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="30" starty="1.0" tier="1" uid="f16f2a2e-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="Time-varying forcing by aerosols. SST and sea ice fixed at preindustrial control. Ozone at PI concentration (in radiation scheme, if emissions-based model, as in DAMIP). Interactive vegetation" egid="f16f3406-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="3" label="RFMIP-ERF-HistAer" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="753" starty="1850.0" tier="2" uid="f16f39ec-dd9e-11e6-b89b-ac72891c3257" yps="251"/>
<item comment="" description="Future scenario with medium radiative forcing by the end of century. Following approximately RCP4.5 global forcing pathway but with new forcing based on SSP. Concentration-driven." egid="f16f57e2-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="SSP245" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="86" starty="2015.0" tier="1" uid="f16f5da0-dd9e-11e6-b89b-ac72891c3257" yps="86"/>
<item comment="As volc-pinatubo-full, but with prescribed perturbation to the total (LW+SW) radiative heating rates" description="Pinatubo experiment with partial radiative forcing, includes only stratospheric warming" egid="f16f90b8-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="25" label="volc-pinatubo-strat" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="25" ntot="75" starty="Preindustrial conditions" tier="1" uid="f16f97b6-dd9e-11e6-b89b-ac72891c3257" yps="3"/>
<item comment="" description="As CMIP5/CFMIP-2 amip experiment, but with cloud-radiative effects switched off in the LW radiation code." egid="f16d5672-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="offlwamip" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="36" starty="1979.0" tier="2" uid="f16d550a-dd9e-11e6-b89b-ac72891c3257" yps="36"/>
<item comment="" description="Same as amip, but a patterned SST anomaly is applied on top of the monthly-varying amip SSTs. This anomaly is a monthly climatology, taken from each model's own abrupt4xCO2 run minus piControl (using the mean of years 111-140 of abrupt4xCO2, and the parallel 30-year section of piControl). CO2 is quadrupled, and the increase in CO2 is seen by both the radiation scheme and vegetation." egid="f16d72d8-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="amipFuture-4xCO2-all" mcfg="As above" mip="CFMIP" nstart="1" ntot="36" starty="1979.0" tier="2" uid="f16d8854-dd9e-11e6-b89b-ac72891c3257" yps="36"/>
<item comment="Extension of aerosol-only run under SSP2-4.5" description="aerosol-only SSP2-4.5 run" egid="f16dae9c-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="ssp245-aer" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="80" starty="2021.0" tier="3" uid="f16dad48-dd9e-11e6-b89b-ac72891c3257" yps="80"/>
<item comment="Extension of natural-only run under SSP2-4.5" description="natural-only SSP2-4.5 run" egid="f16dae9c-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="ssp245-nat" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="80" starty="2021.0" tier="3" uid="f16db13a-dd9e-11e6-b89b-ac72891c3257" yps="80"/>
<item comment="Uninitialized climate simulations as in DCPP-A2.2, but with no information from the future: nstart abbreviated: 30-60: years per sim abbreviated: 300 to 600: total number of years abbreviated: 1500-6000" description="hindcast initialized from historical climate simulation without observed forcing after initialization" egid="f16dbbe4-dd9e-11e6-b89b-ac72891c3257" endy="present (to 2019)" ensz="10" label="dcppA-historical-niff" mcfg="AOGCM/ESM" mip="DCPP" nstart="30" ntot="1500" starty="1960.0" tier="4" uid="f16dc6f2-dd9e-11e6-b89b-ac72891c3257" yps="300"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs" description="idealized Atlantic control" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="25" label="dcppC-atl-control" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="250" starty="control" tier="1" uid="f16dcdf0-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs" description="idealized negative tropical AMV anomaly pattern" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="25" label="dcppC-amv-trop-minus" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="250" starty="control" tier="2" uid="f16de6b4-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="1xCO2 experiment, parallel to piControl, forced over the ocean by surface net heat flux anomalies obtained from the CMIP5 ensemble mean of 1pctCO2 experiments at the time of 2xCO2, using a passive tracer to prevent negative climate feedback on the heat flux applied" egid="f16e0d74-dd9e-11e6-b89b-ac72891c3257" endy="70.0" ensz="1" label="heatFAF" mcfg="AOGCM" mip="FAFMIP" nstart="1" ntot="70" starty="1.0" tier="1" uid="f16e1030-dd9e-11e6-b89b-ac72891c3257" yps="70"/>
<item comment="" description="The topography of the highlands in Africa, N. America and S. America TP is modified by setting surface elevations to a certain height (500m).Same model as DECK." egid="f16e28d6-dd9e-11e6-b89b-ac72891c3257" endy="2013.0" ensz="1" label="DHLD" mcfg="AGCM" mip="GMMIP" nstart="1" ntot="35" starty="1979.0" tier="3" uid="f16e2e30-dd9e-11e6-b89b-ac72891c3257" yps="35"/>
<item comment="" description="Control for initMIP experiments" egid="f16ea284-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="ism-ctrl-std" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="100" starty="" tier="1" uid="f16ea13a-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="Idealized 1%/yr CO2 increase to 4xC02 over 140yrs and kept constant at 4xCO2 for an additional 200 to 400 yrs simulation that includes interactive ice sheets" description="simulation with interactive ice sheet forced by 1 percent per year increase in CO2 to 4xCO2 (subsequently held fixed)" egid="f16e77fa-dd9e-11e6-b89b-ac72891c3257" endy="As long as possible (350 or 500)" ensz="1" label="1pctCO2to4x-withism" mcfg="AOGCM-ISM" mip="ISMIP6" nstart="1" ntot="350" starty="From piControlwithism" tier="1" uid="f16e76a6-dd9e-11e6-b89b-ac72891c3257" yps="350"/>
<item comment="" description="Idealized transient global deforestation with all other forcings held constant" egid="f16ed2ea-dd9e-11e6-b89b-ac72891c3257" endy="1920.0" ensz="1" label="idealized-global-deforest" mcfg="GCM" mip="LUMIP" nstart="1" ntot="70" starty="1850.0" tier="1" uid="f16ed18c-dd9e-11e6-b89b-ac72891c3257" yps="70"/>
<item comment="" description="Historical land only simulation with land use held at 1850; no human activity; derivative of LMIP-hist (LS3MIP)" egid="f16edd76-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="hist-noLULCC-LND" mcfg="LND" mip="LUMIP" nstart="1" ntot="165" starty="1850.0" tier="1" uid="f16edc2c-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="Global ocean - sea-ice coupled experiment forced with the Coordinated Ocean - ice Reference Experiments inter-annually varying atmopsheric data sets for the 1948-2009 period. The 62-year forcing period is repeated for no less than 5 cycles." egid="f16efa68-dd9e-11e6-b89b-ac72891c3257" endy="310.0" ensz="1" label="OMIP-A" mcfg="Global ocean - sea-ice coupled with optional biogeochemistry" mip="OMIP" nstart="1" ntot="310" starty="1.0" tier="1" uid="f16ef8f6-dd9e-11e6-b89b-ac72891c3257" yps="310"/>
<item comment="" description="Time-varying forcing from volcanos, solar variability, etc. SST and sea ice fixed at preindustrial control. Interactive vegetation" egid="f16f3406-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="3" label="RFMIP-ERF-HistNat" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="753" starty="1850.0" tier="2" uid="f16f36f4-dd9e-11e6-b89b-ac72891c3257" yps="251"/>
<item comment="" description="Future scenario with high radiative forcing by the end of century. Following approximately RCP8.5 global forcing pathway but with new forcing based on SSP5. Concentration-driven." egid="f16f57e2-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="SSP585" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="86" starty="2015.0" tier="1" uid="f16f5684-dd9e-11e6-b89b-ac72891c3257" yps="86"/>
<item comment="" description="Future scenario with low radiative forcing by the end of century. Following a forcing pathway below RCP2.6. Specific SSP and 2100 forcing level to be finalized with IAM groups within next few months. Concentration-driven." egid="f16f792a-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="SSPXY" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="86" starty="2015.0" tier="3" uid="f16f77c2-dd9e-11e6-b89b-ac72891c3257" yps="86"/>
<item comment="1991 Pinatubo forcing as used in the CMIP6 historical simulations. Requires special diagnostics of radiative and latent heating rates. A large number of ensemble members is required to address internal atmospheric variability" description="Pinatubo experiment" egid="f16f90b8-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="25" label="volc-pinatubo-full" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="25" ntot="75" starty="Preindustrial conditions" tier="1" uid="f16f8f50-dd9e-11e6-b89b-ac72891c3257" yps="3"/>
<item comment="" description="Concentration-driven historical simulation,  biogeochemically-coupled" egid="f16d3098-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="esmhistbgc" mcfg="" mip="C4MIP" nstart="1" ntot="165" starty="1850.0" tier="2" uid="f16d2f3a-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="As CMIP5/CFMIP-2.  Aquaplanet (no land) experiment with no seasonal cycle forced with specified zonally symmetric SSTs." egid="f16d4718-dd9e-11e6-b89b-ac72891c3257" endy="1988.0" ensz="1" label="aquaControl" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="10" starty="1979.0" tier="1" uid="f16d49c0-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="As CMIP5/CFMIP-2 aqua4K experiment, but with cloud-radiative effects switched off in the LW radiation code." egid="f16d5672-dd9e-11e6-b89b-ac72891c3257" endy="1988.0" ensz="1" label="offlwaqua4K" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="10" starty="1979.0" tier="2" uid="f16d60f4-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="Same as piSST but CO2 is quadrupled. The increase in CO2 is seen by both the radiation scheme and vegetation. Dynamic vegetation (if available) should be turned off in all piSST and futureSST experiments." egid="f16d72d8-dd9e-11e6-b89b-ac72891c3257" endy="As above" ensz="1" label="piSST-4xCO2-all" mcfg="As above" mip="CFMIP" nstart="1" ntot="30" starty="As above" tier="2" uid="f16d7d96-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs" description="idealized positive tropical AMV anomaly pattern" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="25" label="dcppC-amv-trop-plus" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="250" starty="control" tier="2" uid="f16de40c-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Effects of volcanoes on decadal prediction and predictability of forced and internal variability components: years per sim abbreviated: 5 to 10: total number of years abbreviated: 50-100" description="2015 forecast with added Pinatubo forcing" egid="f16dfb22-dd9e-11e6-b89b-ac72891c3257" endy="2015.0" ensz="10" label="dcppC-forecast-addPinatubo" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="50" starty="2015.0" tier="1" uid="f16e0342-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="Effects of volcanoes on decadal prediction and predictability of forced and internal variability components: years per sim abbreviated: 5 to 10: total number of years abbreviated: 50-100" description="2015 forecast with added El Chichon forcing" egid="f16dfb22-dd9e-11e6-b89b-ac72891c3257" endy="2015.0" ensz="10" label="dcppC-forecast-addElChichon" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="50" starty="2015.0" tier="3" uid="f16e06c6-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="" description="1xCO2 experiment, parallel to piControl, with a flux of passive tracer added at the ocean surface at the same rate as the surface net heat flux anomaly applied in the FAFMIP heat experiment." egid="f16e16de-dd9e-11e6-b89b-ac72891c3257" endy="70.0" ensz="1" label="passiveheat" mcfg="AOGCM" mip="FAFMIP" nstart="1" ntot="70" starty="1.0" tier="2" uid="f16e1594-dd9e-11e6-b89b-ac72891c3257" yps="70"/>
<item comment="" description="Time slice at 2100 (G6solar)" egid="f16e4352-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="G6solarSlice2" mcfg="AGCM" mip="GeoMIP" nstart="1" ntot="10" starty="2100.0" tier="2" uid="f16e4ed8-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Pre-industrial control simulation that includes interactive ice sheets" description="preindustrial control with interactive ice sheet" egid="f16e6e9a-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="piControl-withism" mcfg="AOGCM-ISM" mip="ISMIP6" nstart="1" ntot="500" starty="1850.0" tier="1" uid="f16e6d50-dd9e-11e6-b89b-ac72891c3257" yps="451"/>
<item comment="" description="Synthetic oceanic forcing initMIP experiment" egid="f16ea284-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="ism-bsmb-std" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="100" starty="" tier="1" uid="f16ea7a2-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="Historical simulation using &quot;offline&quot; ice sheet models. Forcing for ice sheet model is from its own AOGCM" description="offline ice sheet forced by ISM's own AOGCM historical output" egid="f16e8682-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="ism-historical-self" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="165" starty="1850.0" tier="2" uid="f16e893e-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="Land only simulations with different forcing data" egid="f16eab80-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="Land-Hist-princeton" mcfg="LND" mip="LS3MIP" nstart="1" ntot="114" starty="1901.0" tier="2" uid="f16eb0c6-dd9e-11e6-b89b-ac72891c3257" yps="114"/>
<item comment="" description="Land only simulations" egid="f16eb738-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="3" label="Land-Future" mcfg="LND" mip="LS3MIP" nstart="1" ntot="258" starty="2015.0" tier="2" uid="f16eb5f8-dd9e-11e6-b89b-ac72891c3257" yps="86"/>
<item comment="" description="Prescribed land conditions 1980-2014 climate; SSTs prescribed" egid="f16ebb02-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="5" label="LFMIP-pdLCSST" mcfg="LND-ATM" mip="LS3MIP" nstart="1" ntot="605" starty="1980.0" tier="2" uid="f16ec048-dd9e-11e6-b89b-ac72891c3257" yps="121"/>
<item comment="" description="Same as CMIP6 historical but with land cover held at 1850, no human activity; concentration driven" egid="f16ee168-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="hist-noLULCC-01" mcfg="GCM" mip="LUMIP" nstart="1" ntot="165" starty="1850.0" tier="1" uid="f16ee028-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="Future scenario with high radiative forcing by the end of century. Reaches about 7.0 W/m2 by 2100; fills gap in RCP forcing pathways between 6.0 and 8.5 W/m2. Concentration-driven." egid="f16f57e2-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1 10" label="SSP370" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="860" starty="2015.0" tier="1 2" uid="f16f5ab2-dd9e-11e6-b89b-ac72891c3257" yps="86"/>
<item comment="" description="DECK: control" egid="f16fbb42-dd9e-11e6-b89b-ac72891c3257" endy=" " ensz="1" label="piControl" mcfg="" mip="CMIP" nstart="1" ntot="500" starty=" " tier="1" uid="f16fb9da-dd9e-11e6-b89b-ac72891c3257" yps="500"/>
<item comment="" description="" egid="f16fc70e-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="esm-hist-ext" mcfg="" mip="CMIP" nstart="1" ntot="1" starty="" tier="2" uid="f16fd136-dd9e-11e6-b89b-ac72891c3257" yps="1"/>
<item comment="" description="Radiatively-coupled specified concentration simulation in which CO2 increases at a rate of 1% per year until quadrupling" egid="f16d22b0-dd9e-11e6-b89b-ac72891c3257" endy="1989.0" ensz="1" label="esm1pcrad" mcfg="" mip="C4MIP" nstart="1" ntot="140" starty="1850.0" tier="2" uid="f16d1d60-dd9e-11e6-b89b-ac72891c3257" yps="140"/>
<item comment="" description="AMIP experiment where SSTs are subject to a uniform cooling of 4K." egid="f16d4718-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="amipMinus4K" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="36" starty="1979.0" tier="2" uid="f16d521c-dd9e-11e6-b89b-ac72891c3257" yps="36"/>
<item comment="" description="idealized impact of IPV+" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="10" label="DCPP-C15" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="100" starty="control" tier="1" uid="f16dd9b2-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="1xCO2 experiment, parallel to piControl, forced over the ocean simultaneously by surface windstress (as in the wind experiment), net heat flux (as in the heat experiment) and net freshwater flux (as in the water experiment) anomalies obtained from the CMIP5 ensemble mean of 1pctCO2 experiments at the time of 2xCO2, using a passive tracer to prevent negative climate feedback on the heat flux applied" egid="f16e16de-dd9e-11e6-b89b-ac72891c3257" endy="70.0" ensz="1" label="allFAF" mcfg="AOGCM" mip="FAFMIP" nstart="1" ntot="70" starty="1.0" tier="2" uid="f16e19ea-dd9e-11e6-b89b-ac72891c3257" yps="70"/>
<item comment="" description="Using equatorial SO2 injection, return the radiative forcing from a background of the ScenarioMIP high forcing overshoot extension (years 2101-2300) to the ScenarioMIP middle forcing." egid="f16e5c3e-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="G4sulfurExt" mcfg="AOGCM" mip="GeoMIP" nstart="1" ntot="200" starty="2101.0" tier="2" uid="f16e5af4-dd9e-11e6-b89b-ac72891c3257" yps="200"/>
<item comment="Future climate ScenarioMIP SSP5-8.5 simulation using &quot;offline&quot; ice sheet models. Forcing for ice sheet model is from its own AOGCM" description="offline ice sheet forced by ISM's own AOGCM ssp585 output" egid="f16e9118-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="ism-ssp585-self" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="286" starty="2015.0" tier="2" uid="f16e93ca-dd9e-11e6-b89b-ac72891c3257" yps="286"/>
<item comment="" description="Prescribed land conditions 30yr running mean" egid="f16ebb02-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="4" label="LFMIP-rmLC2" mcfg="LND-ATM-OC" mip="LS3MIP" nstart="1" ntot="484" starty="1980.0" tier="2" uid="f16ec82c-dd9e-11e6-b89b-ac72891c3257" yps="121"/>
<item comment="main forcings : trace gases, orbital parameters, dust" description="mid-Holocene" egid="f16f080a-dd9e-11e6-b89b-ac72891c3257" endy="about 300 to 1000 for interannual variability" ensz="1" label="midHolocene" mcfg="ESM" mip="PMIP" nstart="1" ntot="200" starty="from PI or pre-existing midHolocene" tier="1" uid="f16f06a2-dd9e-11e6-b89b-ac72891c3257" yps="200"/>
<item comment="main forcings : trace gases, volcanoes, solar variability, land use" description="last millenium" egid="f16f0c56-dd9e-11e6-b89b-ac72891c3257" endy="1850.0" ensz="1" label="past1000" mcfg="ESM" mip="PMIP" nstart="1" ntot="1000" starty="850.0" tier="1" uid="f16f0af8-dd9e-11e6-b89b-ac72891c3257" yps="1000"/>
<item comment="" description="Prescribed anthropogenic aerosol optical properties. Changes in aerosols only. Sea surface temperatures and sea ice fixed at pre-industrial values as per  RFMIP-ERF-PI-Control." egid="f16f49aa-dd9e-11e6-b89b-ac72891c3257" endy="30.0" ensz="4" label="RFMIP-SpAer-ERF-aer" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="120" starty="1.0" tier="2" uid="f16f4c7a-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="Parallel experiment to volc-cluster-ctrl, using restart files from the end of the historical simulation instead of from piControl, and boundary conditions from the 21st century SSP2-4.5 scenario experiment of ScenarioMIP" description="volcanic cluster experiment under 21st century SSP2-4.5 scenario" egid="f16f9e8c-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="3" label="volc-cluster-21C" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="3" ntot="255" starty="historical, January 1st  2015" tier="3" uid="f16fb64c-dd9e-11e6-b89b-ac72891c3257" yps="85"/>
<item comment="Same as piSST but CO2 as seen by the radiation scheme is quadrupled" description="as piSST with radiation-only seeing 4xCO2" egid="f16d72d8-dd9e-11e6-b89b-ac72891c3257" endy="As above" ensz="1" label="piSST-4xCO2-rad" mcfg="As above" mip="CFMIP" nstart="1" ntot="30" starty="As above" tier="2" uid="f16d79cc-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="Historical stratospheric-ozone-only. In models with coupled chemistry, the chemistry scheme should be turned off, and the simulated ensemble mean monthly mean 3D stratospheric ozone concentrations from the histALL simulations should be prescribed. Tropospheric ozone should be fixed at 3D long-term monthly mean piControl values, with a value of 100 ppbv ozone concentration in this piControl climatology used to separate the troposphere from the stratosphere. In models without coupled chemistry the same stratospheric ozone prescribed in histALL should be prescribed. Stratospheric ozone concentrations will be provided by CCMI" description="historical stratospheric-ozone-only run" egid="f16d9c7c-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="3" label="hist-stratO3" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="513" starty="1850.0" tier="2" uid="f16d9b32-dd9e-11e6-b89b-ac72891c3257" yps="171"/>
<item comment="Historical CO2-only run" description="historical CO2-only run" egid="f16da38e-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="3" label="hist-CO2" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="513" starty="1850.0" tier="3" uid="f16da8fc-dd9e-11e6-b89b-ac72891c3257" yps="171"/>
<item comment="Assimilation runs used to generate initial conditions for hindcasts if used" description="assimilation run (if available) that is used to generate initial conditions for hindcasts and which parallels the historical simulation and uses the same forcing" egid="f16dbbe4-dd9e-11e6-b89b-ac72891c3257" endy="present (to 2019)" ensz="1" label="dcppA-assim" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="60" starty="1960.0" tier="2" uid="f16dbe96-dd9e-11e6-b89b-ac72891c3257" yps="60"/>
<item comment="" description="Extended AMIP run that covers 1850-2014. All natural and anthropogenic historical forcings as used in CMIP6 Historical Simulation will be included. AGCM resolution as CMIP6 Historical Simulation. The HadISST data will be used." egid="f16e1e04-dd9e-11e6-b89b-ac72891c3257" endy="2013.0" ensz="1" label="AMIP20C" mcfg="AGCM" mip="GMMIP" nstart="1" ntot="144" starty="1870.0" tier="1" uid="f16e1cba-dd9e-11e6-b89b-ac72891c3257" yps="144"/>
<item comment="" description="Time slice at 1949 (picontrol) for G1ext to examine radiative forcing of abrupt4xCO2 + G1" egid="f16e4352-dd9e-11e6-b89b-ac72891c3257" endy="1949.0" ensz="1" label="G1extSlice2" mcfg="AGCM" mip="GeoMIP" nstart="1" ntot="10" starty="1949.0" tier="2" uid="f16e462c-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="Using solar irradiance reduction, return the radiative forcing from a background of the ScenarioMIP high forcing overshoot extension (years 2101-2300) to the ScenarioMIP middle forcing." egid="f16e5c3e-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="G4solarExt" mcfg="AOGCM" mip="GeoMIP" nstart="1" ntot="200" starty="2101.0" tier="2" uid="f16e5ee6-dd9e-11e6-b89b-ac72891c3257" yps="200"/>
<item comment="" description="30-year atmosphere only integration using preindustrial conditions. Interactive vegetation" egid="f16f21a0-dd9e-11e6-b89b-ac72891c3257" endy="30.0" ensz="1" label="RFMIP-ERF-PI-Control" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="30" starty="1.0" tier="1" uid="f16f2042-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="Time-varying forcing. SST and sea ice fixed at preindustrial control. Interactive vegetation" egid="f16f3406-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="3" label="RFMIP-ERF-HistAll" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="753" starty="1850.0" tier="2" uid="f16f32a8-dd9e-11e6-b89b-ac72891c3257" yps="251"/>
<item comment="" description="As CMIP5/CFMIP-2.  Aquaplanet experiment where SSTs are held at control values and the CO2 seen by the radiation scheme is quadrupled." egid="f16d4718-dd9e-11e6-b89b-ac72891c3257" endy="1988.0" ensz="1" label="aqua4xCO2" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="10" starty="1979.0" tier="1" uid="f16d4f56-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Historical natural-only run" description="historical natural-only run" egid="f16d8c96-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="3" label="hist-nat" mcfg="AOGCM/ESM" mip="DAMIP" nstart="1" ntot="513" starty="1850.0" tier="1" uid="f16d8b56-dd9e-11e6-b89b-ac72891c3257" yps="171"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs" description="idealized negative northern extratropical IPV anomaly pattern" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="10" label="dcppC-ipv-nextrop-minus" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="100" starty="control" tier="2" uid="f16ded3a-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="Pacemaker 20th century historical run that includes all forcing as used in CMIP6 Historical Simulation, and the observational historical SST is restored in the tropical lobe of the IPO domain (20oS-20oN, 175oE-75oW). The HadISST data will be used." egid="f16e220a-dd9e-11e6-b89b-ac72891c3257" endy="2013.0" ensz="3" label="HIST-IPO" mcfg="CGCM with SST restored to the model climatology plus observational historical anomaly in the tropical lobe of IPO domain" mip="GMMIP" nstart="1" ntot="432" starty="1870.0" tier="2" uid="f16e20ca-dd9e-11e6-b89b-ac72891c3257" yps="144"/>
<item comment="Against a background of the ScenarioMIP high forcing, reduce cirrus cloud optical depth by a constant amount" description="increase cirrus ice crystal fall speed to reduce net forcing in SSP585 by 1 W m-2" egid="f16e3f42-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="3" label="G7cirrus" mcfg="AOGCM" mip="GeoMIP" nstart="1" ntot="243" starty="2020.0" tier="1" uid="f16e3de4-dd9e-11e6-b89b-ac72891c3257" yps="81"/>
<item comment="" description="Additional land use policy sensitivity simulation for high radiative forcing scenario, keep all forcings the same as SSP3-7 (deforestation scenario), but replace land use from SSP1-2.6 (afforestation) scenario; concentration-driven" egid="f16eec44-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="2" label="SSP3-7wSSP1-26landuse-02" mcfg="GCM" mip="LUMIP" nstart="1" ntot="190" starty="2015.0" tier="3" uid="f16eeeec-dd9e-11e6-b89b-ac72891c3257" yps="95"/>
<item comment="" description="As in RFMIP-ERF-PI-Cntrl but with present-day land use" egid="f16f21a0-dd9e-11e6-b89b-ac72891c3257" endy="30.0" ensz="1" label="RFMIP-ERF-LU" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="30" starty="1.0" tier="1" uid="f16f2fe2-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="Time-varying forcing by GHGs. SST and sea ice fixed at preindustrial control. Interactive vegetation" egid="f16f3406-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="3" label="RFMIP-ERF-HistGHG" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="753" starty="1850.0" tier="2" uid="f16f3ce4-dd9e-11e6-b89b-ac72891c3257" yps="251"/>
<item comment="" description="Future scenario with medium radiative forcing by the end of century. Following approximately RCP6.0 global forcing pathway but with new forcing based on SSP. Concentration-driven." egid="f16f65f2-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="SSP160" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="86" starty="2015.0" tier="2" uid="f16f6476-dd9e-11e6-b89b-ac72891c3257" yps="86"/>
<item comment="" description="CMIP6 historical" egid="f16fc70e-dd9e-11e6-b89b-ac72891c3257" endy=" " ensz="1" label="historical" mcfg="" mip="CMIP" nstart="1" ntot="165" starty=" " tier="1" uid="f16fc5c4-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="Idealized equatorial eruption corresponding to an initial emission of 56.2 Tg of SO2. The eruption magnitude corresponds to recent estimates for the 1815 Tambora eruption (Sigl et al., 2015), the largest historical tropical eruption, which was linked to the so-called &quot;year without a summer&quot; in 1816. Experiment initialized from PiControl" description="idealized equatorial volcanic eruption emitting 56.2 Tg SO2" egid="f16f8b72-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="9" label="volc-long-eq" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="9" ntot="180" starty="Preindustrial conditions" tier="1" uid="f16f8a00-dd9e-11e6-b89b-ac72891c3257" yps="20"/>
<item comment="" description="Same as above, except solar constant is reduced by 4%" egid="f16d5672-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="abruptSm4" mcfg="Coupled AOGCM" mip="CFMIP" nstart="1" ntot="150" starty="" tier="2" uid="f16d66b2-dd9e-11e6-b89b-ac72891c3257" yps="150"/>
<item comment="Decadal hindcasts begun each year from 1960 to present, or every other year at minimum, but with no information from the future: nstart abbreviated: 30-60: years per sim abbreviated: 300 to 600: total number of years abbreviated: 1500-6000" description="hindcast initialized from observations without future observed forcing after initialization" egid="f16dbbe4-dd9e-11e6-b89b-ac72891c3257" endy="present (to 2019)" ensz="10" label="dcppA-hindcast-niff" mcfg="AOGCM/ESM" mip="DCPP" nstart="30" ntot="1500" starty="1960.0" tier="4" uid="f16dc42c-dd9e-11e6-b89b-ac72891c3257" yps="300"/>
<item comment="" description="idealized impact of AMV+" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="25" label="DCPP-C12" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="250" starty="control" tier="1" uid="f16dd1e2-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs" description="idealized negative extratropical AMV anomaly pattern" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="25" label="dcppC-amv-extrop-minus" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="250" starty="control" tier="2" uid="f16de164-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="Time slice at 2100 (ScenarioMIP Tier 1 high forcing scenario + cirrus thinning according to G7cirrus)" egid="f16e4352-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="G7cirrusSlice2" mcfg="AGCM" mip="GeoMIP" nstart="1" ntot="10" starty="2100.0" tier="2" uid="f16e5446-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="" description="extension from year 140 of 1pctCO2 with 4xCO2. Simulation branches from 1pctCO2 run at year 140 and is run with CO2 fixed at 4x pre-industrial concentration" egid="f16e77fa-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="1pctCO2-4xext" mcfg="AOGCM" mip="ISMIP6" nstart="1" ntot="210" starty="" tier="1" uid="f16e8272-dd9e-11e6-b89b-ac72891c3257" yps="210"/>
<item comment="" description="As in RFMIP-ERF-PI-Control but with present-day aerosols" egid="f16f21a0-dd9e-11e6-b89b-ac72891c3257" endy="30.0" ensz="1" label="RFMIP-ERF-Aer" mcfg="Atmos only, fixed SST/ice" mip="RFMIP" nstart="1" ntot="30" starty="1.0" tier="1" uid="f16f2d1c-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="Prescribed anthropogenic aerosol optical properties. Natural forcings." egid="f16f411c-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="4" label="RFMIP-SpAer-aer" mcfg="AOGCM/ESM" mip="RFMIP" nstart="1" ntot="660" starty="1850.0" tier="2" uid="f16f4536-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="Identical to the DECK abrupt4xCO2, but at 2xCO2" egid="f16d5672-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="abrupt2xCO2" mcfg="Coupled AOGCM" mip="CFMIP" nstart="1" ntot="150" starty="" tier="2" uid="f16d6946-dd9e-11e6-b89b-ac72891c3257" yps="150"/>
<item comment="" description="idealized Pacific control" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="10" label="DCPP-C14" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="100" starty="control" tier="1" uid="f16dd728-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Effects of volcanoes on decadal prediction and predictability of forced and internal variability components: years per sim abbreviated: 5 to 10: total number of years abbreviated: 50-100" description="" egid="f16dfb22-dd9e-11e6-b89b-ac72891c3257" endy="1982.0" ensz="10" label="dcppC-hindcast-noElChichon" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="50" starty="1982.0" tier="2" uid="f16dfde8-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="" description="Surface sensible heat released at the elevation above 500m over the TIP is not allowed to heat the atmosphere.Same model as DECK." egid="f16e28d6-dd9e-11e6-b89b-ac72891c3257" endy="2013.0" ensz="1" label="DTIP-DSH" mcfg="AGCM" mip="GMMIP" nstart="1" ntot="35" starty="1979.0" tier="3" uid="f16e2b7e-dd9e-11e6-b89b-ac72891c3257" yps="35"/>
<item comment="" description="As CMIP5/CFMIP-2.  AMIP experiment where SSTs are held at control values and the CO2 seen by the radiation scheme is quadrupled." egid="f16d404c-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="amip4xCO2" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="36" starty="1979.0" tier="1" uid="f16d4312-dd9e-11e6-b89b-ac72891c3257" yps="36"/>
<item comment="Ongoing decadal forecasts" description="year 1-5 forecast initialized from observations" egid="f16dcb34-dd9e-11e6-b89b-ac72891c3257" endy="ongoing each year" ensz="10" label="dcppB-forecast" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="50" starty="present" tier="1" uid="f16dc9d6-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="Effects of volcanoes on decadal prediction and predictability of forced and internal variability components: years per sim abbreviated: 5 to 10: total number of years abbreviated: 50-100" description="" egid="f16dfb22-dd9e-11e6-b89b-ac72891c3257" endy="1963.0" ensz="10" label="dcppC-hindcast-noAgung" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="50" starty="1963.0" tier="2" uid="f16e0090-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="" description="Time slice at 2100 (G6sulfur)" egid="f16e4352-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="G6sulfurSlice2" mcfg="AGCM" mip="GeoMIP" nstart="1" ntot="10" starty="2100.0" tier="2" uid="f16e4c26-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Last interglacial simulation of ice sheet evolution driven by PMIP lig127k" description="offline ice sheet forced by ISMIP6-specified AGCM last interglacial output" egid="f16e9ea6-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="ism-lig127k-std" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="100" starty="" tier="3" uid="f16e9d5c-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="" description="Prescribed anthropogenic aerosol optical properties. All forcings." egid="f16f411c-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="4" label="RFMIP-SpAer-all" mcfg="AOGCM/ESM" mip="RFMIP" nstart="1" ntot="660" starty="1850.0" tier="1" uid="f16f3fbe-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="Forced global atmosphere-land simulations using daily 1/4 degree SST and sea-ice forcings, and aerosol concentrations (not emissions) to constrain model spread" egid="f16e62ce-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="Forced-Atmos-Land" mcfg="HIGH and LOW (e.g. 25km and 60-100km resolution)" mip="HighResMIP" nstart="1" ntot="64" starty="1951.0" tier="1" uid="f16e618e-dd9e-11e6-b89b-ac72891c3257" yps="64"/>
<item comment="" description="Request for specialized diagnostics: Full snapshots of spectrally-resolved aerosol optical properties for single days at PI and PD, along with model-specific direct aerosol IRF." egid="f16f1d40-dd9e-11e6-b89b-ac72891c3257" endy="0.0" ensz="0" label="RFMIP-IRF-Aer" mcfg="Diagnostic" mip="RFMIP" nstart="1" ntot="0" starty="0.0" tier="1" uid="f16f1bd8-dd9e-11e6-b89b-ac72891c3257" yps="0"/>
<item comment="" description="Prescribed time-varying anthropogenic aerosol optical propertiesand all other forcings. Sea surface temperatures and sea ice fixed at pre-industrial values as per RFMIP-ERF-PI-Control." egid="f16f50bc-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="4" label="RFMIP-SpAer-ERF-histall" mcfg="Atmos-only" mip="RFMIP" nstart="1" ntot="660" starty="1850.0" tier="2" uid="f16f4f54-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="As CMIP5/CFMIP-2 amip4K experiment, but with cloud-radiative effects switched off in the LW radiation code." egid="f16d5672-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="offlwamip4K" mcfg="Atmosphere-only" mip="CFMIP" nstart="1" ntot="36" starty="1979.0" tier="2" uid="f16d5924-dd9e-11e6-b89b-ac72891c3257" yps="36"/>
<item comment="" description="As futureSSTice, but CO2 is quadrupled, and the increase in CO2 is seen by both the radiation scheme and vegetation." egid="f16d72d8-dd9e-11e6-b89b-ac72891c3257" endy="As above" ensz="1" label="futureSST-4xCO2-all" mcfg="As above" mip="CFMIP" nstart="1" ntot="30" starty="As above" tier="2" uid="f16d85c0-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="Time slice at 2020 (ScenarioMIP Tier 1 high forcing scenario + cirrus thinning according to G7cirrus)" egid="f16e4352-dd9e-11e6-b89b-ac72891c3257" endy="2020.0" ensz="1" label="G7cirrusSlice1" mcfg="AGCM" mip="GeoMIP" nstart="1" ntot="10" starty="2020.0" tier="2" uid="f16e5194-dd9e-11e6-b89b-ac72891c3257" yps="10"/>
<item comment="Idealized 1%/yr CO2 increase to 4xC02 over 140yrs and kept constant at 4xCO2 for an additional 200 to 400 yrs simulation with ice sheets forced &quot;offline&quot; with DECK 1pctCO2 using forcing from its own AOGCM" description="offline ice sheet model forced by ISM's own AOGCM 1pctCO2to4x output" egid="f16e77fa-dd9e-11e6-b89b-ac72891c3257" endy="As long as possible (350 or 500)" ensz="1" label="ism-1pctCO2to4x-self" mcfg="ISM only" mip="ISMIP6" nstart="1" ntot="350" starty="From piControlforcedism" tier="1" uid="f16e7c14-dd9e-11e6-b89b-ac72891c3257" yps="350"/>
<item comment="" description="Land only simulations with different forcing data" egid="f16eab80-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="Land-Hist-cruNcep" mcfg="LND" mip="LS3MIP" nstart="1" ntot="114" starty="1901.0" tier="2" uid="f16eae14-dd9e-11e6-b89b-ac72891c3257" yps="114"/>
<item comment="" description="Forcing only with time-varying prescribed anthropogenic aerosol optical properties. Sea surface temperatures and sea ice fixed at pre-industrial values as per  RFMIP-ERF-PI-Control." egid="f16f50bc-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="4" label="RFMIP-SpAer-ERF-histaer" mcfg="Atmos-only" mip="RFMIP" nstart="1" ntot="660" starty="1850.0" tier="2" uid="f16f53aa-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="As volc-pinatubo-full, but as decadal prediction runs. Joint experiment with DCPP, forcing input and implementation of the forcing fully comply with the VolMIP protocol" description="Pinatubo experiment for decadal climate prediction" egid="f16facec-dd9e-11e6-b89b-ac72891c3257" endy="TBD" ensz="10" label="volc-pinatubo-ini" mcfg="AOGCM/ ESM" mip="VolMIP" nstart="10" ntot="50" starty="2015.0" tier="3" uid="f16fab98-dd9e-11e6-b89b-ac72891c3257" yps="5"/>
<item comment="" description="DECK: AMIP" egid="f16fbb42-dd9e-11e6-b89b-ac72891c3257" endy=" " ensz="1" label="amip" mcfg="" mip="CMIP" nstart="1" ntot="40" starty=" " tier="1" uid="f16fc344-dd9e-11e6-b89b-ac72891c3257" yps="40"/>
<item comment="" description="Concentration-driven future RCP5-8.5 scenario simulation,  biogeochemically-coupled" egid="f16d3098-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="esmssp5-85bgc" mcfg="" mip="C4MIP" nstart="1" ntot="85" starty="2015.0" tier="2" uid="f16d3372-dd9e-11e6-b89b-ac72891c3257" yps="85"/>
<item comment="" description="Conceptually similar to abrupt 4xCO2 DECK experiment, except that the solar constant (not CO2) is abruptly increased by 4%." egid="f16d5672-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="abruptSp4" mcfg="Coupled AOGCM" mip="CFMIP" nstart="1" ntot="150" starty="" tier="2" uid="f16d63d8-dd9e-11e6-b89b-ac72891c3257" yps="150"/>
<item comment="Mechanisms and predictability of the hiatus and of similar long timescale variations of both signs" description="pacemaker pacific experiment" egid="f16dcf30-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="10" label="dcppC-pac-pacemaker" mcfg="AOGCM/ESM" mip="DCPP" nstart="1" ntot="650" starty="1950 (from 1910 if possible)" tier="3" uid="f16defec-dd9e-11e6-b89b-ac72891c3257" yps="65"/>
<item comment="" description="Beginning from a preindustrial control run, simultaneously quadruple the CO2 concentration and reduce the solar constant such that the TOA radiative flux remains within +/m0.1 W/m2." egid="f16e3222-dd9e-11e6-b89b-ac72891c3257" endy="1949.0" ensz="3" label="G1ext" mcfg="AOGCM" mip="GeoMIP" nstart="1" ntot="300" starty="1850.0" tier="1" uid="f16e30e2-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="" description="Using equatorial SO2 injection, return the radiative forcing from a background of the ScenarioMIP high forcing to the ScenarioMIP middle forcing." egid="f16e3790-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="3" label="G6sulfate" mcfg="AOGCM" mip="GeoMIP" nstart="1" ntot="243" starty="2020.0" tier="1" uid="f16e3632-dd9e-11e6-b89b-ac72891c3257" yps="81"/>
<item comment="" description="Prescribed land conditions 1980-2014 climate" egid="f16ebb02-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="LFMIP-pdLC" mcfg="LND-ATM-OC" mip="LS3MIP" nstart="1" ntot="121" starty="1980.0" tier="1" uid="f16eb9c2-dd9e-11e6-b89b-ac72891c3257" yps="121"/>
<item comment="" description="Prescribed land conditions 30yr running mean; SSTs prescribed" egid="f16ebb02-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="5" label="LFMIP-rmLCSST" mcfg="LND-ATM" mip="LS3MIP" nstart="1" ntot="605" starty="1980.0" tier="2" uid="f16ecab6-dd9e-11e6-b89b-ac72891c3257" yps="121"/>
<item comment="" description="Same as esmhistbgc (C4MIP) but with land cover held at 1850, no human activity; emission-driven" egid="f16ee866-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="esmhistbgc-noLULCC" mcfg="ESM" mip="LUMIP" nstart="1" ntot="165" starty="1850.0" tier="3" uid="f16ee726-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
<item comment="" description="Extension of SSP5_85 to 2300. Assumes emissions decline linearly from 2100 to SSP1_26 levels by 2200, which is expected to produce substantial overshoot in radiative forcing." egid="f16f65f2-dd9e-11e6-b89b-ac72891c3257" endy="2300.0" ensz="1" label="SSP585extover" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="199" starty="2101.0" tier="2" uid="f16f6e62-dd9e-11e6-b89b-ac72891c3257" yps="199"/>
<item comment="" description="Biogeochemically-coupled specified concentration simulation in which CO2 increases at a rate of 1% per year until quadrupling" egid="f16c432c-dd9e-11e6-b89b-ac72891c3257" endy="1989.0" ensz="1" label="esm1pcbgc" mcfg="" mip="C4MIP" nstart="1" ntot="140" starty="1850.0" tier="1" uid="f16bfe76-dd9e-11e6-b89b-ac72891c3257" yps="140"/>
<item comment="Same as piSST, but with a spatially and temporally uniform SST anomaly applied on top of the monthly-varying piSST SSTs. The magnitude of the uniform increase is taken from each model's global, climatological annual mean SST change between abrupt4xCO2 minus piControl (using the mean of years 111-140 of abrupt4xCO2, and the parallel 30-year section of piControl)" description="as piSST with uniform SST increase with magnitude based on abrupt4xCO2 response" egid="f16d72d8-dd9e-11e6-b89b-ac72891c3257" endy="As above" ensz="1" label="piSST-pxK" mcfg="As above" mip="CFMIP" nstart="1" ntot="30" starty="As above" tier="2" uid="f16d76a2-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="As piSST, but with monthly-varying SSTs and sea-ice taken from years 111-140 of each model's own abrupt4xCO2 experiment instead of from piControl." egid="f16d72d8-dd9e-11e6-b89b-ac72891c3257" endy="As above" ensz="1" label="futureSSTice" mcfg="As above" mip="CFMIP" nstart="1" ntot="30" starty="As above" tier="2" uid="f16d832c-dd9e-11e6-b89b-ac72891c3257" yps="30"/>
<item comment="" description="Land only simulations with different forcing data" egid="f16eab80-dd9e-11e6-b89b-ac72891c3257" endy="2014.0" ensz="1" label="Land-Hist-wfdei" mcfg="LND" mip="LS3MIP" nstart="1" ntot="114" starty="1901.0" tier="2" uid="f16eb364-dd9e-11e6-b89b-ac72891c3257" yps="114"/>
<item comment="main forcings : ice-sheet; trace gases, orbital parameters dust (forcing, or feedback if dust cycle represented in model)" description="last glacial maximum" egid="f16f03aa-dd9e-11e6-b89b-ac72891c3257" endy="as long as possible to have &gt;= 100 stabilised years (I.e 500 to 1000 years for the simulation)" ensz="1" label="lgm" mcfg="ESM" mip="PMIP" nstart="1" ntot="100" starty="from PI or pre-existing LGM" tier="1" uid="f16f0242-dd9e-11e6-b89b-ac72891c3257" yps="100"/>
<item comment="" description="21st century overshoot scenario relative to SSP1_26. Specific design to be finalized with IAM groups within next several months." egid="f16f65f2-dd9e-11e6-b89b-ac72891c3257" endy="2100.0" ensz="1" label="SSP126over" mcfg="AOGCM/ESM" mip="ScenarioMIP" nstart="1" ntot="86" starty="2015.0" tier="2" uid="f16f73f8-dd9e-11e6-b89b-ac72891c3257" yps="86"/>
<item comment="" description="" egid="f16fc70e-dd9e-11e6-b89b-ac72891c3257" endy="" ensz="1" label="esm-hist" mcfg="" mip="CMIP" nstart="1" ntot="165" starty="" tier="1" uid="f16fc9ac-dd9e-11e6-b89b-ac72891c3257" yps="165"/>
</experiment>
<requestVar id="rqv" label="requestVar" title="1.4 Request variable (carrying priority and link to group)" uid="SECTION:requestVar" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item label="ch3coch3" mip="AerChemMIP" priority="1" title="ch3coch3 ((isd.005))" uid="8b77891ff42f9ed466538e162a6eb6f1f05a9a02" vgid="ef12fa96-5629-11e6-9079-ac72891c3257" vid="19be4d92-81b1-11e6-92de-ac72891c3257"/>
<item label="emioa" mip="AerChemMIP" priority="1" title="emioa ((isd.005))" uid="7ccdd168ef46eb80457f9fc08277881b96cc8971" vgid="ef12fa96-5629-11e6-9079-ac72891c3257" vid="19bee41e-81b1-11e6-92de-ac72891c3257"/>
<item label="chepasoa" mip="AerChemMIP" priority="1" title="chepasoa ((isd.005))" uid="54eea033c2f5b0e53c70ea9221eab568bed4a993" vgid="ef12fa96-5629-11e6-9079-ac72891c3257" vid="19bf7d0c-81b1-11e6-92de-ac72891c3257"/>
<item label="reffclwc" mip="CFMIP" priority="2" title="reffclwc ((isd.005))" uid="ad4fecbba9d7597092fc0f6692d23f9a88482162" vgid="5bb8bdae-a277-11e6-bfbb-ac72891c3257" vid="bab4dac4-e5dd-11e5-8482-ac72891c3257"/>
<item label="vt100" mip="AerChemMIP" priority="1" title="vt100 ((isd.005))" uid="d1b0c3dc1bd5dd3e26d1e5c5b12c7969e29eda19" vgid="e1a1a554-a27a-11e6-bfbb-ac72891c3257" vid="fda680ce-96ec-11e6-b81e-c9e268aff03a"/>
<item label="mlotst" mip="CFMIP" priority="3" title="mlotst ((isd.005))" uid="23102b4e3f0aa41a2bff331b7c21462519057e97" vgid="c27e21d8-a276-11e6-bfbb-ac72891c3257" vid="baa57688-e5dd-11e5-8482-ac72891c3257"/>
<item label="mmrso4" mip="CFMIP" priority="1" title="mmrso4 ((isd.005))" uid="9ee1b3f22dd3f1ab81e5427d3d6f4ae6d1f150ff" vgid="90104242-a26e-11e6-bfbb-ac72891c3257" vid="19bea9f4-81b1-11e6-92de-ac72891c3257"/>
<item label="fVegSoil" mip="C4MIP" priority="1" title="fVegSoil ((isd.005))" uid="1103a8481b73668dff415bbf62a8f7064ead2673" vgid="efc097e6-5629-11e6-9079-ac72891c3257" vid="baadac22-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="DCPP" priority="2" title="so ((isd.005))" uid="694927a9b9916d22db61d063564e5b7f770a84f8" vgid="efc0859e-5629-11e6-9079-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsf" mip="DCPP" priority="1" title="vsf ((isd.005))" uid="e847a27803153b76a5d178dd52256671a20881e0" vgid="efc0859e-5629-11e6-9079-ac72891c3257" vid="baa65a76-e5dd-11e5-8482-ac72891c3257"/>
<item label="siconc" mip="DCPP" priority="3" title="siconc ((isd.005))" uid="bc90099f2400798829cc782fbe79d39c615f1770" vgid="efc0a1be-5629-11e6-9079-ac72891c3257" vid="d243b4a4-4a9f-11e6-b84e-ac72891c3257"/>
<item label="prc" mip="PMIP" priority="1" title="prc ((isd.005))" uid="efaca15e8c394ec8d45e09632f7be73817bd935d" vgid="efc08328-5629-11e6-9079-ac72891c3257" vid="80080558-f906-11e6-a176-5404a60d96b5"/>
<item label="n2o" mip="PMIP" priority="1" title="n2o ((isd.005))" uid="3b63f7e058e45d5ea211c74f2bb766ebd534f934" vgid="efc08328-5629-11e6-9079-ac72891c3257" vid="bab2124e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfrunoffds2d" mip="PMIP" priority="2" title="hfrunoffds2d ((isd.005))" uid="1737973162fc6df9bb00ca266327ce9930e6ed71" vgid="efc0cb58-5629-11e6-9079-ac72891c3257" vid="baa6842e-e5dd-11e5-8482-ac72891c3257"/>
<item label="o3Clim" mip="HighResMIP" priority="1" title="o3Clim ((isd.005))" uid="26f209ce708454c18c173a5201c12caf278caa8d" vgid="efc0a90c-5629-11e6-9079-ac72891c3257" vid="59fc01c6-c77d-11e6-8a33-5404a60d96b5"/>
<item label="co2massClim" mip="HighResMIP" priority="1" title="co2massClim ((isd.005))" uid="080d168acb871e87a3ab14a189bc16b1c708f159" vgid="efc0a90c-5629-11e6-9079-ac72891c3257" vid="a92e1244-817c-11e6-a4e2-5404a60d96b5"/>
<item label="cfc12global" mip="HighResMIP" priority="3" title="cfc12global ((isd.005))" uid="6f781831cb9bd08663d422cc6b0cca015a5f2baf" vgid="efc0a90c-5629-11e6-9079-ac72891c3257" vid="baa99736-e5dd-11e5-8482-ac72891c3257"/>
<item label="cSoilFast" mip="HighResMIP" priority="2" title="cSoilFast ((isd.005))" uid="0d0aca074bb421affde5ab819c96e04be14b9472" vgid="efc0af4c-5629-11e6-9079-ac72891c3257" vid="baa8eb2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tntmp" mip="HighResMIP" priority="1" title="tntmp ((isd.005))" uid="e528d357f6c610b96a29ed931f146d93aeced9d6" vgid="efc164b4-5629-11e6-9079-ac72891c3257" vid="baba5d78-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfno2" mip="AerChemMIP" priority="1" title="sfno2 ((isd.005))" uid="7b7406202f0f76b638a058447dc697151f43ad02" vgid="ef12fbea-5629-11e6-9079-ac72891c3257" vid="19c0775c-81b1-11e6-92de-ac72891c3257"/>
<item label="rsd" mip="CFMIP" priority="1" title="rsd ((isd.005))" uid="5ac9756a16d87f82594de48b75627582d8a3757c" vgid="5cc4375a-a277-11e6-bfbb-ac72891c3257" vid="bab5d424-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsucs" mip="CFMIP" priority="1" title="rsucs ((isd.005))" uid="4028184f402bab90a7bf92a213af5e3fb36daaae" vgid="5cc4375a-a277-11e6-bfbb-ac72891c3257" vid="bab64ee0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsucs4co2" mip="CFMIP" priority="1" title="rsucs4co2 ((isd.005))" uid="7ac1af144407bb96cab265f796027cc98e85ac9c" vgid="5cc4375a-a277-11e6-bfbb-ac72891c3257" vid="bab64a6c-e5dd-11e5-8482-ac72891c3257"/>
<item label="reffgrpls" mip="CFMIP" priority="2" title="reffgrpls ((isd.005))" uid="823002472beee4b6ed2893de746aeb43afd3c81b" vgid="5bb8bdae-a277-11e6-bfbb-ac72891c3257" vid="bab4e69a-e5dd-11e5-8482-ac72891c3257"/>
<item label="nh50" mip="AerChemMIP" priority="1" title="nh50 ((isd.005))" uid="fab3a44d85fa2a70d815b8cf59045db46c6f251d" vgid="97d52748-8344-11e6-959e-ac72891c3257" vid="3a0778aa-9c3a-11e6-8d5d-ac72891c3257"/>
<item label="hfss" mip="AerChemMIP" priority="1" title="hfss ((isd.005))" uid="43a58f391a53dc320a373f6124b70a55747b901c" vgid="98d5254e-8344-11e6-959e-ac72891c3257" vid="baaf86a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="orog" mip="CFMIP" priority="1" title="orog ((isd.005))" uid="e383f3e518b4e5e3ba6659b6b439a8c319223d35" vgid="5c72dd92-a277-11e6-bfbb-ac72891c3257" vid="bab2f9d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="CFMIP" priority="1" title="ua ((isd.005))" uid="238cf6a1c21a1b23f525a793ca27529f49a7940f" vgid="efc0f650-5629-11e6-9079-ac72891c3257" vid="babb4b34-e5dd-11e5-8482-ac72891c3257"/>
<item label="ch4" mip="CFMIP" priority="1" title="ch4 ((isd.005))" uid="f27b17e6d4605a8e89079ed7133b2b4fe1764dca" vgid="efc0f650-5629-11e6-9079-ac72891c3257" vid="baa9d642-e5dd-11e5-8482-ac72891c3257"/>
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<item label="zostoga" mip="DAMIP" priority="1" title="Omon-subset-01: zostoga" uid="928ed096-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa51058-e5dd-11e5-8482-ac72891c3257"/>
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<item label="tosga" mip="DAMIP" priority="1" title="Omon-subset-01: tosga" uid="928f087c-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa53ace-e5dd-11e5-8482-ac72891c3257"/>
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<item label="wap" mip="DynVar" priority="1" title="Amon-subset-01: wap" uid="9294f91c-267c-11e7-8933-ac72891c3257" vgid="603bdb1e-5979-11e6-ac77-ac72891c3257" vid="babd0906-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="DynVar" priority="1" title="day-subset-02: psl" uid="92955cb8-267c-11e7-8933-ac72891c3257" vgid="603bec26-5979-11e6-ac77-ac72891c3257" vid="bab491f4-e5dd-11e5-8482-ac72891c3257"/>
<item label="od550lt1aer" mip="GeoMIP" priority="1" title="aermonthly-subset-01: od550lt1aer" uid="9298a152-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19be6656-81b1-11e6-92de-ac72891c3257"/>
<item label="wetdust" mip="GeoMIP" priority="1" title="aermonthly-subset-01: wetdust" uid="9298ad00-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19be7024-81b1-11e6-92de-ac72891c3257"/>
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<item label="hfls" mip="LUMIP" priority="1" title="LEday-subset: hfls" uid="929fdd78-267c-11e7-8933-ac72891c3257" vgid="38c009cc-61f6-11e6-835f-ac72891c3257" vid="baaf0a9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="LUMIP" priority="1" title="LEday-subset: tasmax" uid="929fe200-267c-11e7-8933-ac72891c3257" vgid="38c009cc-61f6-11e6-835f-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="thkcello" mip="DAMIP" priority="1" title="Omon-subset-01: thkcello" uid="928ea62a-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa518c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="tob" mip="DAMIP" priority="1" title="Omon-subset-01: tob" uid="928ed730-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa53218-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfcorr" mip="DAMIP" priority="0" title="Omon-subset-01: hfcorr" uid="928eef36-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa6beda-e5dd-11e5-8482-ac72891c3257"/>
<item label="msftbarot" mip="DAMIP" priority="1" title="Omon-subset-01: msftbarot" uid="928ef94a-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa57250-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="DAMIP" priority="1" title="Omon-subset-01: uo" uid="928f0b10-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvho" mip="GeoMIP" priority="3" title="Oclim-subset-01: difvho" uid="9297f694-267c-11e7-8933-ac72891c3257" vgid="38bebefa-61f6-11e6-835f-ac72891c3257" vid="baabe3d8-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvmo" mip="GeoMIP" priority="3" title="Oclim-subset-01: difvmo" uid="9297fc20-267c-11e7-8933-ac72891c3257" vgid="38bebefa-61f6-11e6-835f-ac72891c3257" vid="baabeb12-e5dd-11e5-8482-ac72891c3257"/>
<item label="emiss" mip="GeoMIP" priority="1" title="aermonthly-subset-01: emiss" uid="929891ee-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19bf3086-81b1-11e6-92de-ac72891c3257"/>
<item label="tasmax" mip="GeoMIP" priority="1" title="day-subset-01: tasmax" uid="929900c0-267c-11e7-8933-ac72891c3257" vgid="603be802-5979-11e6-ac77-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="GeoMIP" priority="1" title="day-subset-01: vas" uid="929903ea-267c-11e7-8933-ac72891c3257" vgid="603be802-5979-11e6-ac77-ac72891c3257" vid="babbd25c-e5dd-11e5-8482-ac72891c3257"/>
<item label="msftyrhompa" mip="DAMIP" priority="1" title="Omon-subset-01: msftyrhompa" uid="928eacba-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa5bbe8-e5dd-11e5-8482-ac72891c3257"/>
<item label="msftmzmpa" mip="DAMIP" priority="1" title="Omon-subset-01: msftmzmpa" uid="928eb3f4-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa5af36-e5dd-11e5-8482-ac72891c3257"/>
<item label="bigthetaoga" mip="DAMIP" priority="1" title="Omon-subset-01: bigthetaoga" uid="928ec132-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa52994-e5dd-11e5-8482-ac72891c3257"/>
<item label="soga" mip="DAMIP" priority="1" title="Omon-subset-01: soga" uid="928ecc2c-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa55086-e5dd-11e5-8482-ac72891c3257"/>
<item label="masso" mip="DAMIP" priority="1" title="Omon-subset-01: masso" uid="928ed960-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa4f730-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfdsi" mip="DAMIP" priority="1" title="Omon-subset-01: sfdsi" uid="928ee004-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa662fa-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfriver" mip="DAMIP" priority="1" title="Omon-subset-01: sfriver" uid="928ef71a-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa66746-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsitherm" mip="DAMIP" priority="1" title="Omon-subset-01: fsitherm" uid="928efd96-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa63136-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfo" mip="DAMIP" priority="1" title="Omon-subset-01: wfo" uid="928effc6-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa63578-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfsifrazil" mip="DAMIP" priority="1" title="Omon-subset-01: hfsifrazil" uid="928f041c-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa690b8-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="DAMIP" priority="1" title="Omon-subset-01: so" uid="928f0d40-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="DynVar" priority="1" title="Amon-subset-02: pr" uid="9294cd7a-267c-11e7-8933-ac72891c3257" vgid="603bdf74-5979-11e6-ac77-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="DynVar" priority="1" title="Amon-subset-01: va" uid="9294ecc4-267c-11e7-8933-ac72891c3257" vgid="603bdb1e-5979-11e6-ac77-ac72891c3257" vid="babbb25e-e5dd-11e5-8482-ac72891c3257"/>
<item label="zg" mip="DynVar" priority="1" title="Amon-subset-01: zg" uid="9294ef80-267c-11e7-8933-ac72891c3257" vgid="603bdb1e-5979-11e6-ac77-ac72891c3257" vid="babd9ace-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="DynVar" priority="1" title="day-subset-02: tas" uid="92955f92-267c-11e7-8933-ac72891c3257" vgid="603bec26-5979-11e6-ac77-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="DynVar" priority="1" title="day-subset-02: uas" uid="929561e0-267c-11e7-8933-ac72891c3257" vgid="603bec26-5979-11e6-ac77-ac72891c3257" vid="babb6cea-e5dd-11e5-8482-ac72891c3257"/>
<item label="od550aer" mip="GeoMIP" priority="1" title="aermonthly-subset-01: od550aer" uid="92988d34-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19c01942-81b1-11e6-92de-ac72891c3257"/>
<item label="abs550aer" mip="GeoMIP" priority="1" title="aermonthly-subset-01: abs550aer" uid="92988fa0-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19bebf2a-81b1-11e6-92de-ac72891c3257"/>
<item label="emiso2" mip="GeoMIP" priority="1" title="aermonthly-subset-01: emiso2" uid="9298941e-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19c023d8-81b1-11e6-92de-ac72891c3257"/>
<item label="dryso4" mip="GeoMIP" priority="1" title="aermonthly-subset-01: dryso4" uid="92989ac2-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19bf48fa-81b1-11e6-92de-ac72891c3257"/>
<item label="dryso2" mip="GeoMIP" priority="1" title="aermonthly-subset-01: dryso2" uid="9298a378-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19bf521e-81b1-11e6-92de-ac72891c3257"/>
<item label="dryss" mip="GeoMIP" priority="1" title="aermonthly-subset-01: dryss" uid="9298a65c-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19c00b32-81b1-11e6-92de-ac72891c3257"/>
<item label="mmrss" mip="GeoMIP" priority="1" title="aermonthly-subset-02: mmrss" uid="9298c2cc-267c-11e7-8933-ac72891c3257" vgid="38bf05ea-61f6-11e6-835f-ac72891c3257" vid="19bed1f4-81b1-11e6-92de-ac72891c3257"/>
<item label="mmrdust" mip="GeoMIP" priority="1" title="aermonthly-subset-02: mmrdust" uid="9298c9a2-267c-11e7-8933-ac72891c3257" vgid="38bf05ea-61f6-11e6-835f-ac72891c3257" vid="19bed91a-81b1-11e6-92de-ac72891c3257"/>
<item label="reffclwc" mip="GeoMIP" priority="2" title="emMon-subset-01: reffclwc" uid="9298dfa0-267c-11e7-8933-ac72891c3257" vgid="38c003f0-61f6-11e6-835f-ac72891c3257" vid="8b89e3a6-4a5b-11e6-9cd2-ac72891c3257"/>
<item label="pr" mip="GeoMIP" priority="1" title="cf3hr-subset: pr" uid="92994170-267c-11e7-8933-ac72891c3257" vgid="603bd560-5979-11e6-ac77-ac72891c3257" vid="bab3c904-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="GeoMIP" priority="1" title="cf3hr-subset: prc" uid="92994404-267c-11e7-8933-ac72891c3257" vgid="603bd560-5979-11e6-ac77-ac72891c3257" vid="bab40c20-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="LUMIP" priority="1" title="LEday-subset: tasmin" uid="929fdfbc-267c-11e7-8933-ac72891c3257" vgid="38c009cc-61f6-11e6-835f-ac72891c3257" vid="bab95fae-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfbasinpmdiff" mip="DAMIP" priority="1" title="Omon-subset-01: hfbasinpmdiff" uid="928eaf6c-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa5d0ec-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="DAMIP" priority="1" title="Omon-subset-01: tos" uid="928ec9f2-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfbasinpsmadv" mip="DAMIP" priority="1" title="Omon-subset-01: hfbasinpsmadv" uid="928ece5c-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa5d524-e5dd-11e5-8482-ac72891c3257"/>
<item label="bigthetao" mip="DAMIP" priority="1" title="Omon-subset-01: bigthetao" uid="928edb9a-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa5255c-e5dd-11e5-8482-ac72891c3257"/>
<item label="zhalfo" mip="DAMIP" priority="108" title="Omon-subset-01: zhalfo" uid="928eddd4-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="5a4c1f6c-c77d-11e6-8a33-5404a60d96b5"/>
<item label="pso" mip="DAMIP" priority="1" title="Omon-subset-01: pso" uid="928ee234-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa4ff96-e5dd-11e5-8482-ac72891c3257"/>
<item label="masscello" mip="DAMIP" priority="1" title="Omon-subset-01: masscello" uid="928ee68a-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa5147c-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfcorr" mip="DAMIP" priority="0" title="Omon-subset-01: wfcorr" uid="928f1196-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa63dd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="DynVar" priority="1" title="day-subset-02: vas" uid="92956492-267c-11e7-8933-ac72891c3257" vgid="603bec26-5979-11e6-ac77-ac72891c3257" vid="babbd25c-e5dd-11e5-8482-ac72891c3257"/>
<item label="wetso4" mip="GeoMIP" priority="1" title="aermonthly-subset-01: wetso4" uid="92989f18-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19be330c-81b1-11e6-92de-ac72891c3257"/>
<item label="drydust" mip="GeoMIP" priority="1" title="aermonthly-subset-01: drydust" uid="9298aad0-267c-11e7-8933-ac72891c3257" vgid="e24dbd26-5fd1-11e6-914d-5404a60d96b5" vid="19c064c4-81b1-11e6-92de-ac72891c3257"/>
<item label="hfss" mip="LUMIP" priority="1" title="LEday-subset: hfss" uid="929fdb02-267c-11e7-8933-ac72891c3257" vgid="38c009cc-61f6-11e6-835f-ac72891c3257" vid="baaf91cc-e5dd-11e5-8482-ac72891c3257"/>
<item label="msftyzsmpa" mip="DAMIP" priority="1" title="Omon-subset-01: msftyzsmpa" uid="928ec592-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa5c44e-e5dd-11e5-8482-ac72891c3257"/>
<item label="zos" mip="DAMIP" priority="1" title="Omon-subset-01: zos" uid="928ed2c6-267c-11e7-8933-ac72891c3257" vgid="6eb8fbae-605e-11e6-b84c-ac72891c3257" vid="baa507f2-e5dd-11e5-8482-ac72891c3257"/>
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<item label="vas" mip="LS3MIP" priority="1" title="vas ((isd.006))" uid="bde7a24ed87336a846696aae165e2bb48e60ba83" vgid="6078e6bc-a69a-11e6-9a13-ac72891c3257" vid="7b1a2c5c-a220-11e6-a33f-ac72891c3257"/>
<item label="prrc" mip="LS3MIP" priority="1" title="prrc ((isd.006))" uid="9be79da6376aa83494054ba1cf7f9f1bec5d3577" vgid="6078e6bc-a69a-11e6-9a13-ac72891c3257" vid="7b1a4246-a220-11e6-a33f-ac72891c3257"/>
<item label="netAtmosLandCO2Flux" mip="PMIP" priority="1" title="netAtmosLandCO2Flux ((isd.006))" uid="a989729c5bd72ddf32b261ec41a5e62626f489cd" vgid="efc086d4-5629-11e6-9079-ac72891c3257" vid="8b7eeef6-4a5b-11e6-9cd2-ac72891c3257"/>
<item label="nLand" mip="PMIP" priority="1" title="nLand ((isd.006))" uid="c5609f5b5cb3034657ef6f84c0c9e68f2d1bffe6" vgid="efc086d4-5629-11e6-9079-ac72891c3257" vid="6f6b1b5c-9acb-11e6-b7ee-ac72891c3257"/>
<item label="aeroptbnd" mip="RFMIP" priority="1" title="aeroptbnd ((isd.006))" uid="0c6588f14f81b586b385f81dac954feb42e98774" vgid="efc0d7ba-5629-11e6-9079-ac72891c3257" vid="7b301f8a-a220-11e6-a33f-ac72891c3257"/>
<item label="dtesn" mip="LS3MIP" priority="1" title="dtesn ((isd.006))" uid="7ec2cf4e322a0e3a01b32963e8834dc5be46b54b" vgid="efc0a088-5629-11e6-9079-ac72891c3257" vid="d227aeee-4a9f-11e6-b84e-ac72891c3257"/>
<item label="tasminCrop" mip="VIACSAB" priority="1" title="tasminCrop ((isd.006))" uid="5a671f622ba41dc7c746158b0575aa895d19ab13" vgid="d8d2d970-b64d-11e6-98cb-ac72891c3257" vid="2eb1b0aa-b64e-11e6-b9ee-ac72891c3257"/>
<item label="et" mip="LS3MIP" priority="1" title="et ((isd.006))" uid="c9e35aa435d34d092f7bea7ea46a3bf824118dc3" vgid="efc09566-5629-11e6-9079-ac72891c3257" vid="d22813e8-4a9f-11e6-b84e-ac72891c3257"/>
<item label="snowmxrat27" mip="HighResMIP" priority="3" title="snowmxrat27 ((isd.006))" uid="540e94cd5e1445d1e3c74934bef82584a2da420c" vgid="efc0d1a2-5629-11e6-9079-ac72891c3257" vid="f2cb0dee-26b8-11e7-8344-ac72891c3257"/>
<item label="zoomicro" mip="C4MIP" priority="1" title="zoomicro ((isd.006))" uid="a6f3797396f36bd2050fe5a68023b3ff0b701037" vgid="efc0880a-5629-11e6-9079-ac72891c3257" vid="e7086890-aa7f-11e6-9a4a-5404a60d96b5"/>
<item label="tnpeo" mip="FAFMIP" priority="2" title="tnpeo ((isd.006))" uid="6a7fb7527e3f893b5761104a52cea3c38e701ef5" vgid="efc07176-5629-11e6-9079-ac72891c3257" vid="baa4b4e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="opottempdiff" mip="FAFMIP" priority="1" title="opottempdiff ((isd.006))" uid="5615d13ace406c8da06af1efcf49fff5f76ac84f" vgid="efc092fa-5629-11e6-9079-ac72891c3257" vid="baa4461e-e5dd-11e5-8482-ac72891c3257"/>
<item label="parasolRefl" mip="HighResMIP" priority="1" title="parasolRefl ((isd.006))" uid="24d72164d36c0c6f38cac9239e870c86f46054f3" vgid="365499c2-1f70-11e7-acca-5404a60d96b5" vid="8b8a56ec-4a5b-11e6-9cd2-ac72891c3257"/>
<item label="acabfIs" mip="ISMIP6" priority="2" title="acabfIs ((isd.006))" uid="2688feae7b1f694f1fce94f7900c6e192411405c" vgid="efc0c7ac-5629-11e6-9079-ac72891c3257" vid="8120cf70-bf17-11e6-b0d8-ac72891c3257"/>
<item label="prsn" mip="ISMIP6" priority="1" title="prsn ((isd.006))" uid="9b9ab464ba8d7f049c41e15178e1cd7b981b1213" vgid="efc09b88-5629-11e6-9079-ac72891c3257" vid="d5b2982e-c78d-11e6-9b25-5404a60d96b5"/>
<item label="snc" mip="ISMIP6" priority="1" title="snc ((isd.006))" uid="38a8dee30f139641e935004b42447edea7cff864" vgid="efc0fc0e-5629-11e6-9079-ac72891c3257" vid="d5b45c2c-c78d-11e6-9b25-5404a60d96b5"/>
<item label="tntrl" mip="PMIP" priority="1" title="tntrl ((isd.006))" uid="d587c0c09c4658042eb01c6a6ba9a259e5f793ce" vgid="efc0a560-5629-11e6-9079-ac72891c3257" vid="01d409fc-c792-11e6-aa58-5404a60d96b5"/>
<item label="rlds" mip="LS3MIP" priority="1" title="rlds ((isd.006))" uid="578d20508c7242556e1e3dde846b2194af7c2ccd" vgid="efc0a088-5629-11e6-9079-ac72891c3257" vid="bab538d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua200" mip="PMIP" priority="1" title="ua200 ((isd.006))" uid="b3f5eb880b2fa2b143290ff28774c2fdb25d24ca" vgid="efc0f2b8-5629-11e6-9079-ac72891c3257" vid="d237a092-4a9f-11e6-b84e-ac72891c3257"/>
<item label="siu" mip="SIMIP" priority="1" title="siu ((isd.006))" uid="a1056a8bbc357f656edf613dda31f6458e2906bb" vgid="efc0a2f4-5629-11e6-9079-ac72891c3257" vid="b811a784-7c00-11e6-bcdf-ac72891c3257"/>
<item label="rhLitter" mip="C4MIP" priority="2" title="rhLitter ((isd.006))" uid="c7f8988c921dec2649b8d7995f91137dbaf55185" vgid="efc0e43a-5629-11e6-9079-ac72891c3257" vid="8b81baaa-4a5b-11e6-9cd2-ac72891c3257"/>
<item label="cfadLidarsr532" mip="CFMIP" priority="1" title="cfadLidarsr532 ((isd.006))" uid="4b6c874342ebeaf3622582b9f1cc5dcb399c1aec" vgid="efc0d062-5629-11e6-9079-ac72891c3257" vid="8b8aaf66-4a5b-11e6-9cd2-ac72891c3257"/>
<item label="wetlandFrac" mip="C4MIP" priority="2" title="wetlandFrac ((isd.006))" uid="03b89e6ef6bdd10c76e4ed9026170fcea4d64bad" vgid="efc0da26-5629-11e6-9079-ac72891c3257" vid="6f6acb20-9acb-11e6-b7ee-ac72891c3257"/>
<item label="fgco2nat" mip="C4MIP" priority="1" title="fgco2nat ((isd.006))" uid="f03085778eeed8329aeae282b7dd2799be63b1fd" vgid="efc0880a-5629-11e6-9079-ac72891c3257" vid="e708dc08-aa7f-11e6-9a4a-5404a60d96b5"/>
<item label="huss" mip="CORDEX" priority="1" title="huss ((isd.006))" uid="46739f8983bba9dc43979b1724c5eb53eaba09b3" vgid="0bb0caf0-fe9c-11e6-b43f-5404a60d96b5" vid="bab0238a-e5dd-11e5-8482-ac72891c3257"/>
<item label="litempbotfl" mip="ISMIP6" priority="2" title="litempbotfl ((isd.006))" uid="6633b1ac5a6bd3ce4fded90d9738e7ce5d57e507" vgid="efc0df62-5629-11e6-9079-ac72891c3257" vid="d5b3076e-c78d-11e6-9b25-5404a60d96b5"/>
<item label="grassFrac" mip="LS3MIP" priority="1" title="grassFrac ((isd.006))" uid="95df5195492abbe29cc1006288dcb747bace49d8" vgid="efc0b1b8-5629-11e6-9079-ac72891c3257" vid="baae910a-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e000aa0-33eb-11e7-80d4-5404a60d96b5" vgid="6d975e0a-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e000cbc-33eb-11e7-80d4-5404a60d96b5" vgid="6d975e0a-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e000e92-33eb-11e7-80d4-5404a60d96b5" vgid="6d975e0a-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e001054-33eb-11e7-80d4-5404a60d96b5" vgid="6d975e0a-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="umo" mip="VIACSAB" priority="1" title="Omon: umo" uid="8e0012de-33eb-11e7-80d4-5404a60d96b5" vgid="6d97662a-5979-11e6-8fd9-ac72891c3257" vid="baa5942e-e5dd-11e5-8482-ac72891c3257"/>
<item label="vmo" mip="VIACSAB" priority="1" title="Omon: vmo" uid="8e0014a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d97662a-5979-11e6-8fd9-ac72891c3257" vid="baa598c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="zos" mip="VIACSAB" priority="1" title="Omon: zos" uid="8e00168a-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa507f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="thkcello" mip="VIACSAB" priority="1" title="Omon: thkcello" uid="8e00189c-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa518c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e001a72-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="soga" mip="VIACSAB" priority="1" title="Omon: soga" uid="8e001c20-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa55086-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e001de2-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotst" mip="VIACSAB" priority="1" title="Omon: mlotst" uid="8e001fc2-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa57688-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e0021d4-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e00238c-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="umo" mip="VIACSAB" priority="1" title="Omon: umo" uid="8e00253a-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa5942e-e5dd-11e5-8482-ac72891c3257"/>
<item label="vmo" mip="VIACSAB" priority="1" title="Omon: vmo" uid="8e0026ca-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa598c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfx" mip="VIACSAB" priority="1" title="Omon: hfx" uid="8e0028fa-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa5e2e4-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfy" mip="VIACSAB" priority="1" title="Omon: hfy" uid="8e002abc-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa5e758-e5dd-11e5-8482-ac72891c3257"/>
<item label="evs" mip="VIACSAB" priority="1" title="Omon: evs" uid="8e002cb0-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa6204c-e5dd-11e5-8482-ac72891c3257"/>
<item label="friver" mip="VIACSAB" priority="1" title="Omon: friver" uid="8e002e5e-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa6247a-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfo" mip="VIACSAB" priority="1" title="Omon: wfo" uid="8e003016-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa63578-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfonocorr" mip="VIACSAB" priority="1" title="Omon: wfonocorr" uid="8e0031ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa639b0-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfcorr" mip="VIACSAB" priority="1" title="Omon: wfcorr" uid="8e003372-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa63dd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfpr" mip="VIACSAB" priority="1" title="Omon: vsfpr" uid="8e00353e-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa649d2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfevap" mip="VIACSAB" priority="1" title="Omon: vsfevap" uid="8e003714-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa64df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfriver" mip="VIACSAB" priority="1" title="Omon: vsfriver" uid="8e0038c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa65224-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsf" mip="VIACSAB" priority="1" title="Omon: vsf" uid="8e003aa2-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa65a76-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfcorr" mip="VIACSAB" priority="1" title="Omon: vsfcorr" uid="8e003c64-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa65eae-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfriver" mip="VIACSAB" priority="1" title="Omon: sfriver" uid="8e003e12-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa66746-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfrainds" mip="VIACSAB" priority="1" title="Omon: hfrainds" uid="8e003fc0-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa67768-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfevapds" mip="VIACSAB" priority="1" title="Omon: hfevapds" uid="8e004178-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa67b8c-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsntds" mip="VIACSAB" priority="1" title="Omon: rsntds" uid="8e004394-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa6b66a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdo" mip="VIACSAB" priority="1" title="Omon: rsdo" uid="8e00454c-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa6ba98-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfcorr" mip="VIACSAB" priority="1" title="Omon: hfcorr" uid="8e00470e-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa6beda-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfds" mip="VIACSAB" priority="1" title="Omon: hfds" uid="8e0048a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="baa6c33a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="day: tasmin" uid="8e004a7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="bab95fae-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="day: tasmax" uid="8e004c40-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="day: tas" uid="8e004e02-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="day: pr" uid="8e004fba-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="bab3d692-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="day: psl" uid="8e00517c-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="bab491f4-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="day: mrro" uid="8e005398-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="bab17cb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="day: uas" uid="8e005532-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="babb6cea-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="day: vas" uid="8e0056ea-33eb-11e7-80d4-5404a60d96b5" vgid="6d976c4c-5979-11e6-8fd9-ac72891c3257" vid="babbd25c-e5dd-11e5-8482-ac72891c3257"/>
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<item label="difvmto" mip="VIACSAB" priority="1" title="Oclim: difvmto" uid="8e008f98-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="baabed60-e5dd-11e5-8482-ac72891c3257"/>
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<item label="pon" mip="VIACSAB" priority="1" title="Oyr: pon" uid="8e00cbde-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e4fca-e5dd-11e5-8482-ac72891c3257"/>
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<item label="bfe" mip="VIACSAB" priority="1" title="Oyr: bfe" uid="8e00cf8a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e583a-e5dd-11e5-8482-ac72891c3257"/>
<item label="bsi" mip="VIACSAB" priority="1" title="Oyr: bsi" uid="8e00d14c-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e5c72-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyn" mip="VIACSAB" priority="1" title="Oyr: phyn" uid="8e00d304-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e60aa-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyp" mip="VIACSAB" priority="1" title="Oyr: phyp" uid="8e00d4bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e64ec-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyfe" mip="VIACSAB" priority="1" title="Oyr: phyfe" uid="8e00d692-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e691a-e5dd-11e5-8482-ac72891c3257"/>
<item label="physi" mip="VIACSAB" priority="1" title="Oyr: physi" uid="8e00d854-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e6d5c-e5dd-11e5-8482-ac72891c3257"/>
<item label="dms" mip="VIACSAB" priority="1" title="Oyr: dms" uid="8e00da02-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e7180-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e00dbc4-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="pnitrate" mip="VIACSAB" priority="1" title="Oyr: pnitrate" uid="8e00dd68-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e8fb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbfe" mip="VIACSAB" priority="1" title="Oyr: pbfe" uid="8e00df02-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e9412-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbsi" mip="VIACSAB" priority="1" title="Oyr: pbsi" uid="8e00e0ba-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e984a-e5dd-11e5-8482-ac72891c3257"/>
<item label="pcalc" mip="VIACSAB" priority="1" title="Oyr: pcalc" uid="8e00e268-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9e9c78-e5dd-11e5-8482-ac72891c3257"/>
<item label="parag" mip="VIACSAB" priority="1" title="Oyr: parag" uid="8e00e416-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9ea0b0-e5dd-11e5-8482-ac72891c3257"/>
<item label="expc" mip="VIACSAB" priority="1" title="Oyr: expc" uid="8e00e5ba-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="expn" mip="VIACSAB" priority="1" title="Oyr: expn" uid="8e00e768-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9ea916-e5dd-11e5-8482-ac72891c3257"/>
<item label="expp" mip="VIACSAB" priority="1" title="Oyr: expp" uid="8e00e916-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9ead44-e5dd-11e5-8482-ac72891c3257"/>
<item label="expsi" mip="VIACSAB" priority="1" title="Oyr: expsi" uid="8e00eb00-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9eb5a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="expcalc" mip="VIACSAB" priority="1" title="Oyr: expcalc" uid="8e00ed4e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9eb9ce-e5dd-11e5-8482-ac72891c3257"/>
<item label="exparag" mip="VIACSAB" priority="1" title="Oyr: exparag" uid="8e00ef7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="ba9ebdfc-e5dd-11e5-8482-ac72891c3257"/>
<item label="pdi" mip="VIACSAB" priority="1" title="Oyr: pdi" uid="8e00f136-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="c925ef58-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="tas" mip="VIACSAB" priority="1" title="Amon: tas" uid="8e00f3f2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab9237c-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e00f5b4-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="Amon: psl" uid="8e00f762-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab48ce0-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="Amon: ps" uid="8e00f91a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab47b56-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e00fad2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e00fc80-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="Amon: sfcWind" uid="8e00fe2e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab6f494-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="Amon: hurs" uid="8e00ffe6-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="baaff41e-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="Amon: huss" uid="8e010194-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab01dfe-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="Amon: pr" uid="8e010342-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Amon: prsn" uid="8e0105c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab42b88-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="Amon: prc" uid="8e0107f2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab3f8a2-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e0109aa-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauu" mip="VIACSAB" priority="1" title="Amon: tauu" uid="8e010b58-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab96cc4-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauv" mip="VIACSAB" priority="1" title="Amon: tauv" uid="8e010d74-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab9888a-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="Amon: hfls" uid="8e010f40-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="baaefe2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="Amon: hfss" uid="8e0110f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="baaf86a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="Amon: rlds" uid="8e011314-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="Amon: rlus" uid="8e0114fe-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab578d0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e0116ca-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="Amon: rsus" uid="8e0118a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab6537c-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdscs" mip="VIACSAB" priority="1" title="Amon: rsdscs" uid="8e011ac6-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab607c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsuscs" mip="VIACSAB" priority="1" title="Amon: rsuscs" uid="8e011c7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab670b4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rldscs" mip="VIACSAB" priority="1" title="Amon: rldscs" uid="8e011e40-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab5540e-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="Lmon: mrro" uid="8e012098-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="bab17a6e-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblsoi" mip="VIACSAB" priority="1" title="Lmon: evspsblsoi" uid="8e012264-33eb-11e7-80d4-5404a60d96b5" vgid="6d9771ec-5979-11e6-8fd9-ac72891c3257" vid="baad5d9e-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e012818-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e0129da-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e012b7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="Amon: hurs" uid="8e012d22-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="baaff41e-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="Amon: huss" uid="8e012ed0-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="bab01dfe-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="Amon: pr" uid="8e013060-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e01320e-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="Amon: hfls" uid="8e0133a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="baaefe2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="Amon: hfss" uid="8e013560-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="baaf86a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="Amon: rlds" uid="8e013704-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="Amon: rlus" uid="8e01389e-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="bab578d0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e013a42-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="Amon: rsus" uid="8e013bd2-33eb-11e7-80d4-5404a60d96b5" vgid="6d977d4a-5979-11e6-8fd9-ac72891c3257" vid="bab6537c-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e013e98-33eb-11e7-80d4-5404a60d96b5" vgid="6d9788da-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e01406e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9788da-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e014294-33eb-11e7-80d4-5404a60d96b5" vgid="6d9788da-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="day: tasmin" uid="8e01447e-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab95fae-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="day: tasmax" uid="8e01462c-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="day: tas" uid="8e0147c6-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="day: pr" uid="8e014974-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab3d692-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="day: hurs" uid="8e014b18-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="5a070350-c77d-11e6-8a33-5404a60d96b5"/>
<item label="hursmin" mip="VIACSAB" priority="1" title="day: hursmin" uid="8e014d0c-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="5a0711f6-c77d-11e6-8a33-5404a60d96b5"/>
<item label="hursmax" mip="VIACSAB" priority="1" title="day: hursmax" uid="8e014ed8-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="5a071ff2-c77d-11e6-8a33-5404a60d96b5"/>
<item label="clt" mip="VIACSAB" priority="1" title="day: clt" uid="8e01507c-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="baaace4e-e5dd-11e5-8482-ac72891c3257"/>
<item label="snw" mip="VIACSAB" priority="1" title="day: snw" uid="8e01522a-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab820b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="day: prc" uid="8e0153e2-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab3fde8-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="day: prsn" uid="8e015590-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab43b50-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="day: mrro" uid="8e01572a-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab17cb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="day: uas" uid="8e0158ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="babb6cea-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="day: vas" uid="8e015a7c-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="babbd25c-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="day: ta" uid="8e015c20-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab902e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="hur" mip="VIACSAB" priority="1" title="day: hur" uid="8e015dce-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="baafec80-e5dd-11e5-8482-ac72891c3257"/>
<item label="hus" mip="VIACSAB" priority="1" title="day: hus" uid="8e015f7c-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="bab0135e-e5dd-11e5-8482-ac72891c3257"/>
<item label="wap" mip="VIACSAB" priority="1" title="day: wap" uid="8e01612a-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="babd0e56-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="day: va" uid="8e0162ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="babbbbe6-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="day: ua" uid="8e016468-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="babb5084-e5dd-11e5-8482-ac72891c3257"/>
<item label="zg" mip="VIACSAB" priority="1" title="day: zg" uid="8e016620-33eb-11e7-80d4-5404a60d96b5" vgid="6d978e7a-5979-11e6-8fd9-ac72891c3257" vid="babda032-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="Amon: tas" uid="8e0167ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab9237c-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="Amon: pr" uid="8e016a8a-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e016c60-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="Amon: hfls" uid="8e016e0e-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="baaefe2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e016fbc-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="Amon: rsus" uid="8e01717e-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab6537c-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrso" mip="VIACSAB" priority="1" title="Lmon: mrso" uid="8e017318-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab1a782-e5dd-11e5-8482-ac72891c3257"/>
<item label="tsl" mip="VIACSAB" priority="1" title="Lmon: tsl" uid="8e0174d0-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="babb0732-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblsoi" mip="VIACSAB" priority="1" title="Lmon: evspsblsoi" uid="8e017692-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="baad5d9e-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="6hrLev: ta" uid="8e0178a4-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab8f686-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="3hr: rsds" uid="8e017a52-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab5df78-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdsdiff" mip="VIACSAB" priority="1" title="3hr: rsdsdiff" uid="8e017c14-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab61768-e5dd-11e5-8482-ac72891c3257"/>
<item label="bldep" mip="VIACSAB" priority="1" title="6hrPlev: bldep" uid="8e017dd6-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="917b897e-267c-11e7-8933-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="3hr: prc" uid="8e017f8e-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab40c20-e5dd-11e5-8482-ac72891c3257"/>
<item label="tsl" mip="VIACSAB" priority="1" title="6hrPlevPt: tsl" uid="8e01813c-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="9138eb1e-267c-11e7-8933-ac72891c3257"/>
<item label="rv850" mip="VIACSAB" priority="1" title="6hrPlev: rv850" uid="8e0182f4-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="8b920d10-4a5b-11e6-9cd2-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="6hrPlev: hurs" uid="8e01848e-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="917b8532-267c-11e7-8933-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="3hr: pr" uid="8e018628-33eb-11e7-80d4-5404a60d96b5" vgid="6d979410-5979-11e6-8fd9-ac72891c3257" vid="bab3c904-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e018858-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e018a06-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e018ba0-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e018d44-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="expc" mip="VIACSAB" priority="1" title="Oyr: expc" uid="8e018f10-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="graz" mip="VIACSAB" priority="1" title="Oyr: graz" uid="8e0190b4-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e01924e-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Omon: phyc" uid="8e0193fc-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="ba9f5398-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Omon: phypico" uid="8e0195a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="ba9f792c-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Omon: zooc" uid="8e01974e-33eb-11e7-80d4-5404a60d96b5" vgid="6d979992-5979-11e6-8fd9-ac72891c3257" vid="ba9f57bc-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e01996a-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiat" mip="VIACSAB" priority="1" title="Oyr: phydiat" uid="8e019b18-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e019cb2-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e019e60-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e019ffa-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e01a18a-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="ph" mip="VIACSAB" priority="1" title="Oyr: ph" uid="8e01a34c-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9e101e-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Oyr: o2" uid="8e01a504-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9e1460-e5dd-11e5-8482-ac72891c3257"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e01a694-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e01a82e-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e01a9c8-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="expn" mip="VIACSAB" priority="1" title="Oyr: expn" uid="8e01ab6c-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9ea916-e5dd-11e5-8482-ac72891c3257"/>
<item label="expp" mip="VIACSAB" priority="1" title="Oyr: expp" uid="8e01adce-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="ba9ead44-e5dd-11e5-8482-ac72891c3257"/>
<item label="pdi" mip="VIACSAB" priority="1" title="Oyr: pdi" uid="8e01afea-33eb-11e7-80d4-5404a60d96b5" vgid="6d979f32-5979-11e6-8fd9-ac72891c3257" vid="c925ef58-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e01b2a6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e01b44a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bacc" mip="VIACSAB" priority="1" title="Oyr: bacc" uid="8e01b5ee-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9dcab4-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e01b7a6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiat" mip="VIACSAB" priority="1" title="Oyr: phydiat" uid="8e01b954-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e01bb16-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e01bcba-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e01be54-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e01c002-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e01c1b0-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e01c34a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="o2" mip="VIACSAB" priority="1" title="Oyr: o2" uid="8e01c520-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9e1460-e5dd-11e5-8482-ac72891c3257"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e01c6d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e01c886-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiaz" mip="VIACSAB" priority="1" title="Oyr: chldiaz" uid="8e01ca20-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9e3ae4-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlcalc" mip="VIACSAB" priority="1" title="Oyr: chlcalc" uid="8e01cbc4-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9e3f08-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlpico" mip="VIACSAB" priority="1" title="Oyr: chlpico" uid="8e01cd72-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9e4336-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlmisc" mip="VIACSAB" priority="1" title="Oyr: chlmisc" uid="8e01cf16-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9e4b7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e01d0ba-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="pdi" mip="VIACSAB" priority="1" title="Oyr: pdi" uid="8e01d25e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="c925ef58-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="graz" mip="VIACSAB" priority="1" title="Oyr: graz" uid="8e01d416-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e01d5c4-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e01d768-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e01d916-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="Amon: sfcWind" uid="8e01daa6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97a8f6-5979-11e6-8fd9-ac72891c3257" vid="bab6f494-e5dd-11e5-8482-ac72891c3257"/>
<item label="gpp" mip="VIACSAB" priority="1" title="Lmon: gpp" uid="8e01dc86-33eb-11e7-80d4-5404a60d96b5" vgid="6d97af04-5979-11e6-8fd9-ac72891c3257" vid="baae7800-e5dd-11e5-8482-ac72891c3257"/>
<item label="ra" mip="VIACSAB" priority="1" title="Lmon: ra" uid="8e01de48-33eb-11e7-80d4-5404a60d96b5" vgid="6d97af04-5979-11e6-8fd9-ac72891c3257" vid="bab4c3ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="npp" mip="VIACSAB" priority="1" title="Lmon: npp" uid="8e01dff6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97af04-5979-11e6-8fd9-ac72891c3257" vid="bab26690-e5dd-11e5-8482-ac72891c3257"/>
<item label="rh" mip="VIACSAB" priority="1" title="Lmon: rh" uid="8e01e1ae-33eb-11e7-80d4-5404a60d96b5" vgid="6d97af04-5979-11e6-8fd9-ac72891c3257" vid="bab4f95a-e5dd-11e5-8482-ac72891c3257"/>
<item label="fFire" mip="VIACSAB" priority="1" title="Lmon: fFire" uid="8e01e3ca-33eb-11e7-80d4-5404a60d96b5" vgid="6d97af04-5979-11e6-8fd9-ac72891c3257" vid="baad7f22-e5dd-11e5-8482-ac72891c3257"/>
<item label="cSoilFast" mip="VIACSAB" priority="1" title="Lmon: cSoilFast" uid="8e01e578-33eb-11e7-80d4-5404a60d96b5" vgid="6d97af04-5979-11e6-8fd9-ac72891c3257" vid="baa8eb2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="cSoilMedium" mip="VIACSAB" priority="1" title="Lmon: cSoilMedium" uid="8e01e74e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97af04-5979-11e6-8fd9-ac72891c3257" vid="baa8f326-e5dd-11e5-8482-ac72891c3257"/>
<item label="cSoilSlow" mip="VIACSAB" priority="1" title="Lmon: cSoilSlow" uid="8e01e906-33eb-11e7-80d4-5404a60d96b5" vgid="6d97af04-5979-11e6-8fd9-ac72891c3257" vid="baa8faf6-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e01eb54-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e01ed52-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e01ef00-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e01f0ae-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e01f266-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e01f40a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="mfo" mip="VIACSAB" priority="1" title="Omon: mfo" uid="8e01f5ae-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="baa60bf2-e5dd-11e5-8482-ac72891c3257"/>
<item label="friver" mip="VIACSAB" priority="1" title="Omon: friver" uid="8e01f770-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="baa6247a-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfriver" mip="VIACSAB" priority="1" title="Omon: sfriver" uid="8e01f996-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="baa66746-e5dd-11e5-8482-ac72891c3257"/>
<item label="zfullo" mip="VIACSAB" priority="1" title="Omon: zfullo" uid="8e01fb8a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97b9f4-5979-11e6-8fd9-ac72891c3257" vid="5a4c10e4-c77d-11e6-8a33-5404a60d96b5"/>
<item label="psl" mip="VIACSAB" priority="1" title="Amon: psl" uid="8e01fdce-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="bab48ce0-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e01ff7c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e02013e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Amon: prsn" uid="8e0202f6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="bab42b88-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e0204c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="Amon: hfls" uid="8e02067a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="baaefe2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="Amon: hfss" uid="8e02081e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="baaf86a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="Amon: rlds" uid="8e0209b8-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="Amon: rlus" uid="8e020b66-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="bab578d0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e020d00-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="Amon: rsus" uid="8e020eae-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="bab6537c-e5dd-11e5-8482-ac72891c3257"/>
<item label="tsl" mip="VIACSAB" priority="1" title="Lmon: tsl" uid="8e02103e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="babb0732-e5dd-11e5-8482-ac72891c3257"/>
<item label="snc" mip="VIACSAB" priority="1" title="LImon: snc" uid="8e0211ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="bab7c2d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="snd" mip="VIACSAB" priority="1" title="LImon: snd" uid="8e0213ae-33eb-11e7-80d4-5404a60d96b5" vgid="6d97bf76-5979-11e6-8fd9-ac72891c3257" vid="bab7e05c-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e02161a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97c52a-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="6hrLev: ta" uid="8e021822-33eb-11e7-80d4-5404a60d96b5" vgid="6d97caca-5979-11e6-8fd9-ac72891c3257" vid="bab8f686-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="6hrLev: ua" uid="8e0219da-33eb-11e7-80d4-5404a60d96b5" vgid="6d97caca-5979-11e6-8fd9-ac72891c3257" vid="babb47a6-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="6hrLev: va" uid="8e021be2-33eb-11e7-80d4-5404a60d96b5" vgid="6d97caca-5979-11e6-8fd9-ac72891c3257" vid="babbaebc-e5dd-11e5-8482-ac72891c3257"/>
<item label="hus" mip="VIACSAB" priority="1" title="6hrLev: hus" uid="8e021d9a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97caca-5979-11e6-8fd9-ac72891c3257" vid="bab009cc-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="6hrLev: ps" uid="8e021f48-33eb-11e7-80d4-5404a60d96b5" vgid="6d97caca-5979-11e6-8fd9-ac72891c3257" vid="bab46b70-e5dd-11e5-8482-ac72891c3257"/>
<item label="bacc" mip="VIACSAB" priority="1" title="Oyr: bacc" uid="8e02213c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9dcab4-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e0226b4-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiat" mip="VIACSAB" priority="1" title="Oyr: phydiat" uid="8e0228c6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e022a92-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e022c4a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e022e0c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e022fce-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e023186-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e023352-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e023550-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e02371c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiaz" mip="VIACSAB" priority="1" title="Oyr: chldiaz" uid="8e0238de-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="ba9e3ae4-e5dd-11e5-8482-ac72891c3257"/>
<item label="pdi" mip="VIACSAB" priority="1" title="Oyr: pdi" uid="8e023a96-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d056-5979-11e6-8fd9-ac72891c3257" vid="c925ef58-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="epfe100" mip="VIACSAB" priority="1" title="Omon: epfe100" uid="8e023cbc-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="5a35e288-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epsi100" mip="VIACSAB" priority="1" title="Omon: epsi100" uid="8e023e92-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="5a35f1ba-c77d-11e6-8a33-5404a60d96b5"/>
<item label="spco2" mip="VIACSAB" priority="1" title="Omon: spco2" uid="8e024054-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa0c7a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="zsatcalc" mip="VIACSAB" priority="1" title="Omon: zsatcalc" uid="8e024220-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa11b92-e5dd-11e5-8482-ac72891c3257"/>
<item label="zsatarag" mip="VIACSAB" priority="1" title="Omon: zsatarag" uid="8e0243d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa11fb6-e5dd-11e5-8482-ac72891c3257"/>
<item label="wmo" mip="VIACSAB" priority="1" title="Omon: wmo" uid="8e0245d6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa58f74-e5dd-11e5-8482-ac72891c3257"/>
<item label="umo" mip="VIACSAB" priority="1" title="Omon: umo" uid="8e0247a2-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa5942e-e5dd-11e5-8482-ac72891c3257"/>
<item label="vmo" mip="VIACSAB" priority="1" title="Omon: vmo" uid="8e024964-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa598c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Omon: prsn" uid="8e024bbc-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa61c28-e5dd-11e5-8482-ac72891c3257"/>
<item label="evs" mip="VIACSAB" priority="1" title="Omon: evs" uid="8e024d92-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa6204c-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsitherm" mip="VIACSAB" priority="1" title="Omon: fsitherm" uid="8e024f4a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa63136-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfo" mip="VIACSAB" priority="1" title="Omon: wfo" uid="8e025134-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa63578-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfdsi" mip="VIACSAB" priority="1" title="Omon: sfdsi" uid="8e02530a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97d7ae-5979-11e6-8fd9-ac72891c3257" vid="baa662fa-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e025562-33eb-11e7-80d4-5404a60d96b5" vgid="6d97dd76-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e025724-33eb-11e7-80d4-5404a60d96b5" vgid="6d97dd76-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="ph" mip="VIACSAB" priority="1" title="Oyr: ph" uid="8e02597c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97dd76-5979-11e6-8fd9-ac72891c3257" vid="ba9e101e-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Oyr: o2" uid="8e025b5c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97dd76-5979-11e6-8fd9-ac72891c3257" vid="ba9e1460-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e025d1e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97dd76-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="day: hfls" uid="8e025f1c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e3ca-5979-11e6-8fd9-ac72891c3257" vid="baaf0a9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="day: ta" uid="8e0260de-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e3ca-5979-11e6-8fd9-ac72891c3257" vid="bab902e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="hur" mip="VIACSAB" priority="1" title="day: hur" uid="8e026296-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e3ca-5979-11e6-8fd9-ac72891c3257" vid="baafec80-e5dd-11e5-8482-ac72891c3257"/>
<item label="hus" mip="VIACSAB" priority="1" title="day: hus" uid="8e026458-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e3ca-5979-11e6-8fd9-ac72891c3257" vid="bab0135e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="3hr: hfls" uid="8e026610-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e3ca-5979-11e6-8fd9-ac72891c3257" vid="baaefbcc-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="3hr: prc" uid="8e0267dc-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e3ca-5979-11e6-8fd9-ac72891c3257" vid="bab40c20-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e0269bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e026b74-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="intdic" mip="VIACSAB" priority="1" title="Omon: intdic" uid="8e026d2c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="c91e4b7c-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="intpn2" mip="VIACSAB" priority="1" title="Omon: intpn2" uid="8e026ee4-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa0fe00-e5dd-11e5-8482-ac72891c3257"/>
<item label="zsatcalc" mip="VIACSAB" priority="1" title="Omon: zsatcalc" uid="8e0270a6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa11b92-e5dd-11e5-8482-ac72891c3257"/>
<item label="zsatarag" mip="VIACSAB" priority="1" title="Omon: zsatarag" uid="8e02725e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa11fb6-e5dd-11e5-8482-ac72891c3257"/>
<item label="masso" mip="VIACSAB" priority="1" title="Omon: masso" uid="8e027420-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa4f730-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbo" mip="VIACSAB" priority="1" title="Omon: pbo" uid="8e0275ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa4fb54-e5dd-11e5-8482-ac72891c3257"/>
<item label="pso" mip="VIACSAB" priority="1" title="Omon: pso" uid="8e0277a4-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa4ff96-e5dd-11e5-8482-ac72891c3257"/>
<item label="volo" mip="VIACSAB" priority="1" title="Omon: volo" uid="8e027970-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa503ce-e5dd-11e5-8482-ac72891c3257"/>
<item label="zostoga" mip="VIACSAB" priority="1" title="Omon: zostoga" uid="8e027b5a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa51058-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e027d26-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetaoga" mip="VIACSAB" priority="1" title="Omon: thetaoga" uid="8e027f06-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa52138-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e0280be-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="wmo" mip="VIACSAB" priority="1" title="Omon: wmo" uid="8e028276-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa58f74-e5dd-11e5-8482-ac72891c3257"/>
<item label="sltovgyre" mip="VIACSAB" priority="1" title="Omon: sltovgyre" uid="8e028474-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa5f7de-e5dd-11e5-8482-ac72891c3257"/>
<item label="sltovovrt" mip="VIACSAB" priority="1" title="Omon: sltovovrt" uid="8e02862c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa5fc0c-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfsit" mip="VIACSAB" priority="1" title="Omon: vsfsit" uid="8e028834-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa65648-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfdsi" mip="VIACSAB" priority="1" title="Omon: sfdsi" uid="8e0289ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa662fa-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauuo" mip="VIACSAB" priority="1" title="Omon: tauuo" uid="8e028bea-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa6cf38-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauvo" mip="VIACSAB" priority="1" title="Omon: tauvo" uid="8e028dac-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa6d366-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauucorr" mip="VIACSAB" priority="1" title="Omon: tauucorr" uid="8e028f78-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa6d78a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauvcorr" mip="VIACSAB" priority="1" title="Omon: tauvcorr" uid="8e02919e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baa6dbb8-e5dd-11e5-8482-ac72891c3257"/>
<item label="zfullo" mip="VIACSAB" priority="1" title="Omon: zfullo" uid="8e02936a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="5a4c10e4-c77d-11e6-8a33-5404a60d96b5"/>
<item label="zhalfo" mip="VIACSAB" priority="1" title="Omon: zhalfo" uid="8e029536-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="5a4c1f6c-c77d-11e6-8a33-5404a60d96b5"/>
<item label="huss" mip="VIACSAB" priority="1" title="day: huss" uid="8e0296f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab0238a-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="day: sfcWind" uid="8e0298b0-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab6fe58-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="day: mrsos" uid="8e029a7c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab1ca14-e5dd-11e5-8482-ac72891c3257"/>
<item label="hursmin" mip="VIACSAB" priority="1" title="day: hursmin" uid="8e029c3e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="5a0711f6-c77d-11e6-8a33-5404a60d96b5"/>
<item label="hursmax" mip="VIACSAB" priority="1" title="day: hursmax" uid="8e029e1e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="5a071ff2-c77d-11e6-8a33-5404a60d96b5"/>
<item label="clt" mip="VIACSAB" priority="1" title="day: clt" uid="8e029fe0-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baaace4e-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="day: prc" uid="8e02a1ac-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab3fde8-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="day: prsn" uid="8e02a36e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab43b50-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="day: ta" uid="8e02a54e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab902e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="hur" mip="VIACSAB" priority="1" title="day: hur" uid="8e02a706-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="baafec80-e5dd-11e5-8482-ac72891c3257"/>
<item label="hus" mip="VIACSAB" priority="1" title="day: hus" uid="8e02a8b4-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab0135e-e5dd-11e5-8482-ac72891c3257"/>
<item label="wap" mip="VIACSAB" priority="1" title="day: wap" uid="8e02aa6c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="babd0e56-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="day: va" uid="8e02ac24-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="babbbbe6-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="day: ua" uid="8e02adf0-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="babb5084-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="3hr: rlds" uid="8e02afa8-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab52b5a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="3hr: rlus" uid="8e02b160-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab59202-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="3hr: rsds" uid="8e02b318-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab5df78-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="3hr: rsus" uid="8e02b4f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab65138-e5dd-11e5-8482-ac72891c3257"/>
<item label="rldscs" mip="VIACSAB" priority="1" title="3hr: rldscs" uid="8e02b6b0-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab55f12-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsuscs" mip="VIACSAB" priority="1" title="3hr: rsuscs" uid="8e02b872-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab66e70-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdsdiff" mip="VIACSAB" priority="1" title="3hr: rsdsdiff" uid="8e02ba3e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97e938-5979-11e6-8fd9-ac72891c3257" vid="bab61768-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e02bc3c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e02bdf4-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e02bfac-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e02c164-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e02c330-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e02c4de-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e02c696-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="evs" mip="VIACSAB" priority="1" title="Omon: evs" uid="8e02c916-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa6204c-e5dd-11e5-8482-ac72891c3257"/>
<item label="friver" mip="VIACSAB" priority="1" title="Omon: friver" uid="8e02cbe6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa6247a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsntds" mip="VIACSAB" priority="1" title="Omon: rsntds" uid="8e02cf38-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa6b66a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdo" mip="VIACSAB" priority="1" title="Omon: rsdo" uid="8e02d1fe-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa6ba98-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfds" mip="VIACSAB" priority="1" title="Omon: hfds" uid="8e02d49c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97eec4-5979-11e6-8fd9-ac72891c3257" vid="baa6c33a-e5dd-11e5-8482-ac72891c3257"/>
<item label="talk" mip="VIACSAB" priority="1" title="Oyr: talk" uid="8e02d6c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e0786-e5dd-11e5-8482-ac72891c3257"/>
<item label="ph" mip="VIACSAB" priority="1" title="Oyr: ph" uid="8e02d884-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e101e-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Oyr: o2" uid="8e02da3c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e1460-e5dd-11e5-8482-ac72891c3257"/>
<item label="no3" mip="VIACSAB" priority="1" title="Oyr: no3" uid="8e02dbfe-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e1d16-e5dd-11e5-8482-ac72891c3257"/>
<item label="nh4" mip="VIACSAB" priority="1" title="Oyr: nh4" uid="8e02ddc0-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e2158-e5dd-11e5-8482-ac72891c3257"/>
<item label="po4" mip="VIACSAB" priority="1" title="Oyr: po4" uid="8e02df8c-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e25a4-e5dd-11e5-8482-ac72891c3257"/>
<item label="dfe" mip="VIACSAB" priority="1" title="Oyr: dfe" uid="8e02e144-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e29e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="si" mip="VIACSAB" priority="1" title="Oyr: si" uid="8e02e306-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e2e28-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiaz" mip="VIACSAB" priority="1" title="Oyr: chldiaz" uid="8e02e4be-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e3ae4-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlmisc" mip="VIACSAB" priority="1" title="Oyr: chlmisc" uid="8e02e6a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9e4b7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="expn" mip="VIACSAB" priority="1" title="Oyr: expn" uid="8e02e9d2-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9ea916-e5dd-11e5-8482-ac72891c3257"/>
<item label="expp" mip="VIACSAB" priority="1" title="Oyr: expp" uid="8e02ec98-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9ead44-e5dd-11e5-8482-ac72891c3257"/>
<item label="fescav" mip="VIACSAB" priority="1" title="Oyr: fescav" uid="8e02ef5e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9f05e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="graz" mip="VIACSAB" priority="1" title="Oyr: graz" uid="8e02f256-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e02f5f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e02f8dc-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="Amon: sfcWind" uid="8e02fb98-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="bab6f494-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="Amon: ua" uid="8e02fe9a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="babb4b34-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="Amon: va" uid="8e0300ac-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f46e-5979-11e6-8fd9-ac72891c3257" vid="babbb25e-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissic" mip="VIACSAB" priority="1" title="Oyr: dissic" uid="8e03034a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="ba9da994-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissoc" mip="VIACSAB" priority="1" title="Oyr: dissoc" uid="8e030516-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="ba9dbc04-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiat" mip="VIACSAB" priority="1" title="Oyr: phydiat" uid="8e0306ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e03089a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e030b1a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e030cf0-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e030eee-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e0312ea-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e0315f6-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e031934-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="pnitrate" mip="VIACSAB" priority="1" title="Oyr: pnitrate" uid="8e031c0e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97f9f0-5979-11e6-8fd9-ac72891c3257" vid="ba9e8fb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="zfullo" mip="VIACSAB" priority="1" title="Oclim: zfullo" uid="8e03201e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="3c564abe-b89b-11e6-be04-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e0322f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e0325d2-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bacc" mip="VIACSAB" priority="1" title="Oyr: bacc" uid="8e032898-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="ba9dcab4-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e032b90-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e032e6a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlcalc" mip="VIACSAB" priority="1" title="Oyr: chlcalc" uid="8e03314e-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="ba9e3f08-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e03336a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="expc" mip="VIACSAB" priority="1" title="Oyr: expc" uid="8e03354a-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="pdi" mip="VIACSAB" priority="1" title="Oyr: pdi" uid="8e033716-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="c925ef58-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e0338e2-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e033ac2-33eb-11e7-80d4-5404a60d96b5" vgid="6d97ff5e-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e033cca-33eb-11e7-80d4-5404a60d96b5" vgid="6d9804cc-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e033ebe-33eb-11e7-80d4-5404a60d96b5" vgid="6d9804cc-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="intdic" mip="VIACSAB" priority="1" title="Omon: intdic" uid="8e034080-33eb-11e7-80d4-5404a60d96b5" vgid="6d9804cc-5979-11e6-8fd9-ac72891c3257" vid="c91e4b7c-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e034242-33eb-11e7-80d4-5404a60d96b5" vgid="6d9804cc-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e034436-33eb-11e7-80d4-5404a60d96b5" vgid="6d9804cc-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e03460c-33eb-11e7-80d4-5404a60d96b5" vgid="6d9804cc-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="zfullo" mip="VIACSAB" priority="1" title="Omon: zfullo" uid="8e0347ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d9804cc-5979-11e6-8fd9-ac72891c3257" vid="5a4c10e4-c77d-11e6-8a33-5404a60d96b5"/>
<item label="o2" mip="VIACSAB" priority="1" title="Omon: o2" uid="8e034a1c-33eb-11e7-80d4-5404a60d96b5" vgid="6d980a44-5979-11e6-8fd9-ac72891c3257" vid="ba9f9e7a-e5dd-11e5-8482-ac72891c3257"/>
<item label="ph" mip="VIACSAB" priority="1" title="Omon: ph" uid="8e034be8-33eb-11e7-80d4-5404a60d96b5" vgid="6d980a44-5979-11e6-8fd9-ac72891c3257" vid="ba9f9a4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="day: mrsos" uid="8e034de6-33eb-11e7-80d4-5404a60d96b5" vgid="6d980fa8-5979-11e6-8fd9-ac72891c3257" vid="bab1ca14-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="day: clt" uid="8e034fa8-33eb-11e7-80d4-5404a60d96b5" vgid="6d980fa8-5979-11e6-8fd9-ac72891c3257" vid="baaace4e-e5dd-11e5-8482-ac72891c3257"/>
<item label="snw" mip="VIACSAB" priority="1" title="day: snw" uid="8e03516a-33eb-11e7-80d4-5404a60d96b5" vgid="6d980fa8-5979-11e6-8fd9-ac72891c3257" vid="bab820b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="day: prc" uid="8e035322-33eb-11e7-80d4-5404a60d96b5" vgid="6d980fa8-5979-11e6-8fd9-ac72891c3257" vid="bab3fde8-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="day: prsn" uid="8e035516-33eb-11e7-80d4-5404a60d96b5" vgid="6d980fa8-5979-11e6-8fd9-ac72891c3257" vid="bab43b50-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="day: mrro" uid="8e0356e2-33eb-11e7-80d4-5404a60d96b5" vgid="6d980fa8-5979-11e6-8fd9-ac72891c3257" vid="bab17cb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWindmax" mip="VIACSAB" priority="1" title="day: sfcWindmax" uid="8e03598a-33eb-11e7-80d4-5404a60d96b5" vgid="6d980fa8-5979-11e6-8fd9-ac72891c3257" vid="bab709de-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="day: rlds" uid="8e035b60-33eb-11e7-80d4-5404a60d96b5" vgid="6d980fa8-5979-11e6-8fd9-ac72891c3257" vid="bab538d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="umo" mip="VIACSAB" priority="1" title="Omon: umo" uid="8e035d68-33eb-11e7-80d4-5404a60d96b5" vgid="6d98150c-5979-11e6-8fd9-ac72891c3257" vid="baa5942e-e5dd-11e5-8482-ac72891c3257"/>
<item label="vmo" mip="VIACSAB" priority="1" title="Omon: vmo" uid="8e035f2a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98150c-5979-11e6-8fd9-ac72891c3257" vid="baa598c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="3hr: hfls" uid="8e0361b4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98150c-5979-11e6-8fd9-ac72891c3257" vid="baaefbcc-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="3hr: hfss" uid="8e03636c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98150c-5979-11e6-8fd9-ac72891c3257" vid="baaf8452-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="3hr: rlds" uid="8e03652e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98150c-5979-11e6-8fd9-ac72891c3257" vid="bab52b5a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="3hr: rlus" uid="8e0366e6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98150c-5979-11e6-8fd9-ac72891c3257" vid="bab59202-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="3hr: rsds" uid="8e0368a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98150c-5979-11e6-8fd9-ac72891c3257" vid="bab5df78-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="3hr: rsus" uid="8e036a6a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98150c-5979-11e6-8fd9-ac72891c3257" vid="bab65138-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="3hr: prsn" uid="8e036c18-33eb-11e7-80d4-5404a60d96b5" vgid="6d98150c-5979-11e6-8fd9-ac72891c3257" vid="bab42912-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbfe" mip="VIACSAB" priority="1" title="Omon: intpbfe" uid="8e036fb0-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa08984-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbsi" mip="VIACSAB" priority="1" title="Omon: intpbsi" uid="8e03717c-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa08f6a-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e037334-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epfe100" mip="VIACSAB" priority="1" title="Omon: epfe100" uid="8e0374ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="5a35e288-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epsi100" mip="VIACSAB" priority="1" title="Omon: epsi100" uid="8e0376ae-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="5a35f1ba-c77d-11e6-8a33-5404a60d96b5"/>
<item label="intdic" mip="VIACSAB" priority="1" title="Omon: intdic" uid="8e037866-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="c91e4b7c-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="fgco2" mip="VIACSAB" priority="1" title="Omon: fgco2" uid="8e037a28-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa0d420-e5dd-11e5-8482-ac72891c3257"/>
<item label="fgo2" mip="VIACSAB" priority="1" title="Omon: fgo2" uid="8e037c08-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa0e4ba-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpn2" mip="VIACSAB" priority="1" title="Omon: intpn2" uid="8e037e1a-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa0fe00-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsn" mip="VIACSAB" priority="1" title="Omon: fsn" uid="8e037fdc-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa10292-e5dd-11e5-8482-ac72891c3257"/>
<item label="frn" mip="VIACSAB" priority="1" title="Omon: frn" uid="8e03819e-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa106c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsfe" mip="VIACSAB" priority="1" title="Omon: fsfe" uid="8e0383ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa10aee-e5dd-11e5-8482-ac72891c3257"/>
<item label="frfe" mip="VIACSAB" priority="1" title="Omon: frfe" uid="8e0385fe-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa10f12-e5dd-11e5-8482-ac72891c3257"/>
<item label="zos" mip="VIACSAB" priority="1" title="Omon: zos" uid="8e0387e8-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa507f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="zossq" mip="VIACSAB" priority="1" title="Omon: zossq" uid="8e0389aa-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa50c2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="thkcello" mip="VIACSAB" priority="1" title="Omon: thkcello" uid="8e038ba8-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa518c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="msftbarot" mip="VIACSAB" priority="1" title="Omon: msftbarot" uid="8e038dce-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa57250-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotst" mip="VIACSAB" priority="1" title="Omon: mlotst" uid="8e038fea-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa57688-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e0391ca-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e039364-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="wmo" mip="VIACSAB" priority="1" title="Omon: wmo" uid="8e03956c-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa58f74-e5dd-11e5-8482-ac72891c3257"/>
<item label="umo" mip="VIACSAB" priority="1" title="Omon: umo" uid="8e039710-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa5942e-e5dd-11e5-8482-ac72891c3257"/>
<item label="vmo" mip="VIACSAB" priority="1" title="Omon: vmo" uid="8e0398aa-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa598c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfx" mip="VIACSAB" priority="1" title="Omon: hfx" uid="8e039ad0-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa5e2e4-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfy" mip="VIACSAB" priority="1" title="Omon: hfy" uid="8e039c6a-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa5e758-e5dd-11e5-8482-ac72891c3257"/>
<item label="sltovgyre" mip="VIACSAB" priority="1" title="Omon: sltovgyre" uid="8e039e2c-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa5f7de-e5dd-11e5-8482-ac72891c3257"/>
<item label="sltovovrt" mip="VIACSAB" priority="1" title="Omon: sltovovrt" uid="8e039fda-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa5fc0c-e5dd-11e5-8482-ac72891c3257"/>
<item label="mfo" mip="VIACSAB" priority="1" title="Omon: mfo" uid="8e03a174-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa60bf2-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Omon: prsn" uid="8e03a30e-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa61c28-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsitherm" mip="VIACSAB" priority="1" title="Omon: fsitherm" uid="8e03a534-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa63136-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfo" mip="VIACSAB" priority="1" title="Omon: wfo" uid="8e03a6d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa63578-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfonocorr" mip="VIACSAB" priority="1" title="Omon: wfonocorr" uid="8e03a886-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa639b0-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfcorr" mip="VIACSAB" priority="1" title="Omon: wfcorr" uid="8e03aa20-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa63dd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfriver" mip="VIACSAB" priority="1" title="Omon: sfriver" uid="8e03abc4-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa66746-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfcorr" mip="VIACSAB" priority="1" title="Omon: hfcorr" uid="8e03ad5e-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa6beda-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauuo" mip="VIACSAB" priority="1" title="Omon: tauuo" uid="8e03af02-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa6cf38-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauvo" mip="VIACSAB" priority="1" title="Omon: tauvo" uid="8e03b09c-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa6d366-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauucorr" mip="VIACSAB" priority="1" title="Omon: tauucorr" uid="8e03b24a-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa6d78a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauvcorr" mip="VIACSAB" priority="1" title="Omon: tauvcorr" uid="8e03b3ee-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baa6dbb8-e5dd-11e5-8482-ac72891c3257"/>
<item label="zfullo" mip="VIACSAB" priority="1" title="Omon: zfullo" uid="8e03b57e-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="5a4c10e4-c77d-11e6-8a33-5404a60d96b5"/>
<item label="zhalfo" mip="VIACSAB" priority="1" title="Omon: zhalfo" uid="8e03b718-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="5a4c1f6c-c77d-11e6-8a33-5404a60d96b5"/>
<item label="huss" mip="VIACSAB" priority="1" title="day: huss" uid="8e03b8b2-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab0238a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="day: tas" uid="8e03ba56-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="day: pr" uid="8e03bbf0-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab3d692-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="day: psl" uid="8e03bd8a-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab491f4-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="day: sfcWind" uid="8e03bf2e-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab6fe58-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="day: hurs" uid="8e03c118-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="5a070350-c77d-11e6-8a33-5404a60d96b5"/>
<item label="clt" mip="VIACSAB" priority="1" title="day: clt" uid="8e03c2b2-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baaace4e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tslsi" mip="VIACSAB" priority="1" title="day: tslsi" uid="8e03c44c-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="babb0eb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="day: prc" uid="8e03c5f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab3fde8-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="day: prsn" uid="8e03c78a-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab43b50-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="day: mrro" uid="8e03c974-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab17cb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="day: uas" uid="8e03cb18-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="babb6cea-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="day: vas" uid="8e03ccbc-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="babbd25c-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWindmax" mip="VIACSAB" priority="1" title="day: sfcWindmax" uid="8e03ce4c-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab709de-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="day: hfls" uid="8e03cfe6-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baaf0a9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="day: hfss" uid="8e03d18a-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="baaf91cc-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="day: rlds" uid="8e03d338-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab538d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="day: rlus" uid="8e03d4d2-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab57f92-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="day: rsds" uid="8e03d66c-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab5ecd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="day: rsus" uid="8e03d806-33eb-11e7-80d4-5404a60d96b5" vgid="6d981ff2-5979-11e6-8fd9-ac72891c3257" vid="bab65ad4-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e03da68-33eb-11e7-80d4-5404a60d96b5" vgid="6d982542-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="soga" mip="VIACSAB" priority="1" title="Omon: soga" uid="8e03dc0c-33eb-11e7-80d4-5404a60d96b5" vgid="6d982542-5979-11e6-8fd9-ac72891c3257" vid="baa55086-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e03dda6-33eb-11e7-80d4-5404a60d96b5" vgid="6d982542-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="Amon: tas" uid="8e03e01c-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab9237c-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e03e1d4-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="Amon: tasmin" uid="8e03e38c-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab955ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="Amon: tasmax" uid="8e03e526-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab942a8-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="Amon: psl" uid="8e03e6c0-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab48ce0-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e03e85a-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e03e9fe-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="Amon: sfcWind" uid="8e03ebc0-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab6f494-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="Amon: hurs" uid="8e03ed5a-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baaff41e-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="Amon: huss" uid="8e03ef08-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab01dfe-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="Amon: pr" uid="8e03f0a2-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="Amon: prc" uid="8e03f23c-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab3f8a2-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e03f3d6-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="Amon: hfls" uid="8e03f57a-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baaefe2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="Amon: hfss" uid="8e03f714-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baaf86a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdt" mip="VIACSAB" priority="1" title="Amon: rsdt" uid="8e03f8ae-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab6219a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsut" mip="VIACSAB" priority="1" title="Amon: rsut" uid="8e03fa52-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab68ebe-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlut" mip="VIACSAB" priority="1" title="Amon: rlut" uid="8e03fbec-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab5aad0-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="Amon: clt" uid="8e03fdd6-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baaad7e0-e5dd-11e5-8482-ac72891c3257"/>
<item label="fco2antt" mip="VIACSAB" priority="1" title="Amon: fco2antt" uid="8e03ff7a-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baaddada-e5dd-11e5-8482-ac72891c3257"/>
<item label="fco2fos" mip="VIACSAB" priority="1" title="Amon: fco2fos" uid="8e040128-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baade44e-e5dd-11e5-8482-ac72891c3257"/>
<item label="fco2nat" mip="VIACSAB" priority="1" title="Amon: fco2nat" uid="8e0402b8-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baaded68-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="Amon: ta" uid="8e040466-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab8fa0a-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="Amon: ua" uid="8e04060a-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="babb4b34-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="Amon: va" uid="8e0407ae-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="babbb25e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hus" mip="VIACSAB" priority="1" title="Amon: hus" uid="8e040948-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab00b98-e5dd-11e5-8482-ac72891c3257"/>
<item label="hur" mip="VIACSAB" priority="1" title="Amon: hur" uid="8e040ad8-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baafe578-e5dd-11e5-8482-ac72891c3257"/>
<item label="zg" mip="VIACSAB" priority="1" title="Amon: zg" uid="8e040c7c-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="babd9ace-e5dd-11e5-8482-ac72891c3257"/>
<item label="pfull" mip="VIACSAB" priority="1" title="Amon: pfull" uid="8e040e20-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab32c1a-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrso" mip="VIACSAB" priority="1" title="Lmon: mrso" uid="8e041028-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab1a782-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrros" mip="VIACSAB" priority="1" title="Lmon: mrros" uid="8e0411cc-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab19ff8-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="Lmon: mrro" uid="8e041370-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab17a6e-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblsoi" mip="VIACSAB" priority="1" title="Lmon: evspsblsoi" uid="8e04150a-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baad5d9e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tran" mip="VIACSAB" priority="1" title="Lmon: tran" uid="8e04169a-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baba9752-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrlsl" mip="VIACSAB" priority="1" title="Lmon: mrlsl" uid="8e041834-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab17032-e5dd-11e5-8482-ac72891c3257"/>
<item label="lai" mip="VIACSAB" priority="1" title="Lmon: lai" uid="8e0419ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab0919e-e5dd-11e5-8482-ac72891c3257"/>
<item label="landCoverFrac" mip="VIACSAB" priority="1" title="Lmon: landCoverFrac" uid="8e041b68-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab09a7c-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFracPrimDec" mip="VIACSAB" priority="1" title="Lmon: treeFracPrimDec" uid="8e041d20-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bababb4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFracPrimEver" mip="VIACSAB" priority="1" title="Lmon: treeFracPrimEver" uid="8e041ece-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="babac2c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="c3PftFrac" mip="VIACSAB" priority="1" title="Lmon: c3PftFrac" uid="8e0420c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baa897e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="c4PftFrac" mip="VIACSAB" priority="1" title="Lmon: c4PftFrac" uid="8e042266-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="baa89f8e-e5dd-11e5-8482-ac72891c3257"/>
<item label="snc" mip="VIACSAB" priority="1" title="LImon: snc" uid="8e042428-33eb-11e7-80d4-5404a60d96b5" vgid="6d982ad8-5979-11e6-8fd9-ac72891c3257" vid="bab7c2d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvho" mip="VIACSAB" priority="1" title="Oclim: difvho" uid="8e04287e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baabe3d8-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvso" mip="VIACSAB" priority="1" title="Oclim: difvso" uid="8e042a2c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baabefb8-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissic" mip="VIACSAB" priority="1" title="Oyr: dissic" uid="8e042bc6-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9da994-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissoc" mip="VIACSAB" priority="1" title="Oyr: dissoc" uid="8e042d74-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9dbc04-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e042f0e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="calc" mip="VIACSAB" priority="1" title="Oyr: calc" uid="8e0430b2-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9dd428-e5dd-11e5-8482-ac72891c3257"/>
<item label="arag" mip="VIACSAB" priority="1" title="Oyr: arag" uid="8e04324c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9dd91e-e5dd-11e5-8482-ac72891c3257"/>
<item label="talk" mip="VIACSAB" priority="1" title="Oyr: talk" uid="8e043468-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e0786-e5dd-11e5-8482-ac72891c3257"/>
<item label="ph" mip="VIACSAB" priority="1" title="Oyr: ph" uid="8e04360c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e101e-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Oyr: o2" uid="8e0437ba-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e1460-e5dd-11e5-8482-ac72891c3257"/>
<item label="no3" mip="VIACSAB" priority="1" title="Oyr: no3" uid="8e04397c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e1d16-e5dd-11e5-8482-ac72891c3257"/>
<item label="po4" mip="VIACSAB" priority="1" title="Oyr: po4" uid="8e043b16-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e25a4-e5dd-11e5-8482-ac72891c3257"/>
<item label="dfe" mip="VIACSAB" priority="1" title="Oyr: dfe" uid="8e043cb0-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e29e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e043e4a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="pon" mip="VIACSAB" priority="1" title="Oyr: pon" uid="8e043fee-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e4fca-e5dd-11e5-8482-ac72891c3257"/>
<item label="pop" mip="VIACSAB" priority="1" title="Oyr: pop" uid="8e044192-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e540c-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e04432c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="pnitrate" mip="VIACSAB" priority="1" title="Oyr: pnitrate" uid="8e0444c6-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e8fb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbfe" mip="VIACSAB" priority="1" title="Oyr: pbfe" uid="8e044660-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e9412-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbsi" mip="VIACSAB" priority="1" title="Oyr: pbsi" uid="8e0447fa-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e984a-e5dd-11e5-8482-ac72891c3257"/>
<item label="pcalc" mip="VIACSAB" priority="1" title="Oyr: pcalc" uid="8e04498a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9e9c78-e5dd-11e5-8482-ac72891c3257"/>
<item label="parag" mip="VIACSAB" priority="1" title="Oyr: parag" uid="8e044b24-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9ea0b0-e5dd-11e5-8482-ac72891c3257"/>
<item label="dcalc" mip="VIACSAB" priority="1" title="Oyr: dcalc" uid="8e044cc8-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9ec658-e5dd-11e5-8482-ac72891c3257"/>
<item label="darag" mip="VIACSAB" priority="1" title="Oyr: darag" uid="8e044e76-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9ecaa4-e5dd-11e5-8482-ac72891c3257"/>
<item label="pdi" mip="VIACSAB" priority="1" title="Oyr: pdi" uid="8e045024-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="c925ef58-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="bddtdic" mip="VIACSAB" priority="1" title="Oyr: bddtdic" uid="8e0451e6-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9ee7c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdin" mip="VIACSAB" priority="1" title="Oyr: bddtdin" uid="8e045380-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9eebf6-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdip" mip="VIACSAB" priority="1" title="Oyr: bddtdip" uid="8e04551a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="ba9ef024-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="Amon: ps" uid="8e045704-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab47b56-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="Amon: rlds" uid="8e04589e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="Amon: rlus" uid="8e045a38-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab578d0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e045bd2-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="Amon: rsus" uid="8e045d62-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab6537c-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdscs" mip="VIACSAB" priority="1" title="Amon: rsdscs" uid="8e045efc-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab607c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsuscs" mip="VIACSAB" priority="1" title="Amon: rsuscs" uid="8e0460a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab670b4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rldscs" mip="VIACSAB" priority="1" title="Amon: rldscs" uid="8e046262-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab5540e-e5dd-11e5-8482-ac72891c3257"/>
<item label="cl" mip="VIACSAB" priority="1" title="Amon: cl" uid="8e046406-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baaa4302-e5dd-11e5-8482-ac72891c3257"/>
<item label="wap" mip="VIACSAB" priority="1" title="Amon: wap" uid="8e0465a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="babd0906-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="Lmon: mrsos" uid="8e0467b2-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab1c85c-e5dd-11e5-8482-ac72891c3257"/>
<item label="prveg" mip="VIACSAB" priority="1" title="Lmon: prveg" uid="8e046956-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab45658-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblveg" mip="VIACSAB" priority="1" title="Lmon: evspsblveg" uid="8e046af0-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baad6596-e5dd-11e5-8482-ac72891c3257"/>
<item label="tsl" mip="VIACSAB" priority="1" title="Lmon: tsl" uid="8e046c8a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="babb0732-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFrac" mip="VIACSAB" priority="1" title="Lmon: treeFrac" uid="8e046e1a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="babab3ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="grassFrac" mip="VIACSAB" priority="1" title="Lmon: grassFrac" uid="8e046fb4-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baae910a-e5dd-11e5-8482-ac72891c3257"/>
<item label="shrubFrac" mip="VIACSAB" priority="1" title="Lmon: shrubFrac" uid="8e04714e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab76b9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="cropFrac" mip="VIACSAB" priority="1" title="Lmon: cropFrac" uid="8e0472e8-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baab87f8-e5dd-11e5-8482-ac72891c3257"/>
<item label="pastureFrac" mip="VIACSAB" priority="1" title="Lmon: pastureFrac" uid="8e047482-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab30988-e5dd-11e5-8482-ac72891c3257"/>
<item label="baresoilFrac" mip="VIACSAB" priority="1" title="Lmon: baresoilFrac" uid="8e047626-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baa84fd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="gpp" mip="VIACSAB" priority="1" title="Lmon: gpp" uid="8e0477ca-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baae7800-e5dd-11e5-8482-ac72891c3257"/>
<item label="ra" mip="VIACSAB" priority="1" title="Lmon: ra" uid="8e047982-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab4c3ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="npp" mip="VIACSAB" priority="1" title="Lmon: npp" uid="8e047b26-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab26690-e5dd-11e5-8482-ac72891c3257"/>
<item label="rh" mip="VIACSAB" priority="1" title="Lmon: rh" uid="8e047cd4-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab4f95a-e5dd-11e5-8482-ac72891c3257"/>
<item label="nbp" mip="VIACSAB" priority="1" title="Lmon: nbp" uid="8e047e96-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab23634-e5dd-11e5-8482-ac72891c3257"/>
<item label="fVegSoil" mip="VIACSAB" priority="1" title="Lmon: fVegSoil" uid="8e048030-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baadac22-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFracSecDec" mip="VIACSAB" priority="1" title="Lmon: treeFracSecDec" uid="8e0481ca-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="babaca24-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFracSecEver" mip="VIACSAB" priority="1" title="Lmon: treeFracSecEver" uid="8e048364-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="babad172-e5dd-11e5-8482-ac72891c3257"/>
<item label="snw" mip="VIACSAB" priority="1" title="LImon: snw" uid="8e048508-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab81e50-e5dd-11e5-8482-ac72891c3257"/>
<item label="snd" mip="VIACSAB" priority="1" title="LImon: snd" uid="8e0486b6-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab7e05c-e5dd-11e5-8482-ac72891c3257"/>
<item label="snm" mip="VIACSAB" priority="1" title="LImon: snm" uid="8e048850-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab802f8-e5dd-11e5-8482-ac72891c3257"/>
<item label="tpf" mip="VIACSAB" priority="1" title="LImon: tpf" uid="8e0489ea-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="baba8cbc-e5dd-11e5-8482-ac72891c3257"/>
<item label="pflw" mip="VIACSAB" priority="1" title="LImon: pflw" uid="8e048ba2-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="bab323d2-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="6hrPlev: psl" uid="8e04903e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983064-5979-11e6-8fd9-ac72891c3257" vid="910446fc-267c-11e7-8933-ac72891c3257"/>
<item label="difvtrbo" mip="VIACSAB" priority="1" title="Oclim: difvtrbo" uid="8e0492aa-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baabf242-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvtrto" mip="VIACSAB" priority="1" title="Oclim: difvtrto" uid="8e049462-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baabf4ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e049606-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e0497a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bacc" mip="VIACSAB" priority="1" title="Oyr: bacc" uid="8e04993a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9dcab4-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiat" mip="VIACSAB" priority="1" title="Oyr: phydiat" uid="8e049ad4-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e049cc8-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e049e62-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e049ffc-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e04a196-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e04a330-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e04a4ca-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="nh4" mip="VIACSAB" priority="1" title="Oyr: nh4" uid="8e04a696-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9e2158-e5dd-11e5-8482-ac72891c3257"/>
<item label="si" mip="VIACSAB" priority="1" title="Oyr: si" uid="8e04a83a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9e2e28-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e04a9d4-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="bfe" mip="VIACSAB" priority="1" title="Oyr: bfe" uid="8e04ab6e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9e583a-e5dd-11e5-8482-ac72891c3257"/>
<item label="bsi" mip="VIACSAB" priority="1" title="Oyr: bsi" uid="8e04ad12-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9e5c72-e5dd-11e5-8482-ac72891c3257"/>
<item label="dms" mip="VIACSAB" priority="1" title="Oyr: dms" uid="8e04aeac-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9e7180-e5dd-11e5-8482-ac72891c3257"/>
<item label="expc" mip="VIACSAB" priority="1" title="Oyr: expc" uid="8e04b046-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="expn" mip="VIACSAB" priority="1" title="Oyr: expn" uid="8e04b1d6-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9ea916-e5dd-11e5-8482-ac72891c3257"/>
<item label="expp" mip="VIACSAB" priority="1" title="Oyr: expp" uid="8e04b37a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9ead44-e5dd-11e5-8482-ac72891c3257"/>
<item label="expsi" mip="VIACSAB" priority="1" title="Oyr: expsi" uid="8e04b532-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9eb5a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="expcalc" mip="VIACSAB" priority="1" title="Oyr: expcalc" uid="8e04b6d6-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9eb9ce-e5dd-11e5-8482-ac72891c3257"/>
<item label="exparag" mip="VIACSAB" priority="1" title="Oyr: exparag" uid="8e04b87a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9ebdfc-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdife" mip="VIACSAB" priority="1" title="Oyr: bddtdife" uid="8e04ba1e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9ef448-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdisi" mip="VIACSAB" priority="1" title="Oyr: bddtdisi" uid="8e04bbe0-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9efa42-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtalk" mip="VIACSAB" priority="1" title="Oyr: bddtalk" uid="8e04bd84-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9f017c-e5dd-11e5-8482-ac72891c3257"/>
<item label="graz" mip="VIACSAB" priority="1" title="Oyr: graz" uid="8e04bf28-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Amon: prsn" uid="8e04c0c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab42b88-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauu" mip="VIACSAB" priority="1" title="Amon: tauu" uid="8e04c27a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab96cc4-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauv" mip="VIACSAB" priority="1" title="Amon: tauv" uid="8e04c41e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab9888a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlutcs" mip="VIACSAB" priority="1" title="Amon: rlutcs" uid="8e04c5c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab5bcdc-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsutcs" mip="VIACSAB" priority="1" title="Amon: rsutcs" uid="8e04c770-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab69c06-e5dd-11e5-8482-ac72891c3257"/>
<item label="prw" mip="VIACSAB" priority="1" title="Amon: prw" uid="8e04c91e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab45df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="ci" mip="VIACSAB" priority="1" title="Amon: ci" uid="8e04cab8-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baaa3984-e5dd-11e5-8482-ac72891c3257"/>
<item label="sci" mip="VIACSAB" priority="1" title="Amon: sci" uid="8e04cc52-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab6d180-e5dd-11e5-8482-ac72891c3257"/>
<item label="clw" mip="VIACSAB" priority="1" title="Amon: clw" uid="8e04cdec-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baab0382-e5dd-11e5-8482-ac72891c3257"/>
<item label="cli" mip="VIACSAB" priority="1" title="Amon: cli" uid="8e04cfea-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baaa8326-e5dd-11e5-8482-ac72891c3257"/>
<item label="cfc11global" mip="VIACSAB" priority="1" title="Amon: cfc11global" uid="8e04d486-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baa9918c-e5dd-11e5-8482-ac72891c3257"/>
<item label="cfc12global" mip="VIACSAB" priority="1" title="Amon: cfc12global" uid="8e04d738-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baa99736-e5dd-11e5-8482-ac72891c3257"/>
<item label="hcfc22global" mip="VIACSAB" priority="1" title="Amon: hcfc22global" uid="8e04d9e0-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baaeaf1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="cfc113global" mip="VIACSAB" priority="1" title="Amon: cfc113global" uid="8e04dc92-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baa98b1a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phalf" mip="VIACSAB" priority="1" title="Amon: phalf" uid="8e04df6c-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab33d04-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrfso" mip="VIACSAB" priority="1" title="Lmon: mrfso" uid="8e04e20a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab1688a-e5dd-11e5-8482-ac72891c3257"/>
<item label="residualFrac" mip="VIACSAB" priority="1" title="Lmon: residualFrac" uid="8e04e4a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab4f1e4-e5dd-11e5-8482-ac72891c3257"/>
<item label="burntArea" mip="VIACSAB" priority="1" title="Lmon: burntArea" uid="8e04e71e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baa88256-e5dd-11e5-8482-ac72891c3257"/>
<item label="cVeg" mip="VIACSAB" priority="1" title="Lmon: cVeg" uid="8e04e958-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baa90258-e5dd-11e5-8482-ac72891c3257"/>
<item label="fFire" mip="VIACSAB" priority="1" title="Lmon: fFire" uid="8e04eb06-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baad7f22-e5dd-11e5-8482-ac72891c3257"/>
<item label="fGrazing" mip="VIACSAB" priority="1" title="Lmon: fGrazing" uid="8e04ecbe-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baad86fc-e5dd-11e5-8482-ac72891c3257"/>
<item label="fHarvest" mip="VIACSAB" priority="1" title="Lmon: fHarvest" uid="8e04ee58-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baad8e7c-e5dd-11e5-8482-ac72891c3257"/>
<item label="fVegLitter" mip="VIACSAB" priority="1" title="Lmon: fVegLitter" uid="8e04f010-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baada4ca-e5dd-11e5-8482-ac72891c3257"/>
<item label="fLitterSoil" mip="VIACSAB" priority="1" title="Lmon: fLitterSoil" uid="8e04f1b4-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baad95d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="cLeaf" mip="VIACSAB" priority="1" title="Lmon: cLeaf" uid="8e04f34e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baa8aed4-e5dd-11e5-8482-ac72891c3257"/>
<item label="cRoot" mip="VIACSAB" priority="1" title="Lmon: cRoot" uid="8e04f51a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baa8dc06-e5dd-11e5-8482-ac72891c3257"/>
<item label="cCwd" mip="VIACSAB" priority="1" title="Lmon: cCwd" uid="8e04f6dc-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="baa8a740-e5dd-11e5-8482-ac72891c3257"/>
<item label="rGrowth" mip="VIACSAB" priority="1" title="Lmon: rGrowth" uid="8e04f88a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab4b4a4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rMaint" mip="VIACSAB" priority="1" title="Lmon: rMaint" uid="8e04fa24-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab4bc2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="nppLeaf" mip="VIACSAB" priority="1" title="Lmon: nppLeaf" uid="8e04fbc8-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab26e24-e5dd-11e5-8482-ac72891c3257"/>
<item label="nppWood" mip="VIACSAB" priority="1" title="Lmon: nppWood" uid="8e04fd58-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab27d2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="nppRoot" mip="VIACSAB" priority="1" title="Lmon: nppRoot" uid="8e04fef2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab275d6-e5dd-11e5-8482-ac72891c3257"/>
<item label="tsn" mip="VIACSAB" priority="1" title="LImon: tsn" uid="8e05008c-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="8bbac66a-4a5b-11e6-9cd2-ac72891c3257"/>
<item label="sbl" mip="VIACSAB" priority="1" title="LImon: sbl" uid="8e050226-33eb-11e7-80d4-5404a60d96b5" vgid="6d9835d2-5979-11e6-8fd9-ac72891c3257" vid="bab6bba0-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvho" mip="VIACSAB" priority="1" title="Oclim: difvho" uid="8e0507bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="baabe3d8-e5dd-11e5-8482-ac72891c3257"/>
<item label="tnpeo" mip="VIACSAB" priority="1" title="Oclim: tnpeo" uid="8e05097e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="bab9e8c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvmo" mip="VIACSAB" priority="1" title="Oclim: difvmo" uid="8e050b22-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="baabeb12-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvmbo" mip="VIACSAB" priority="1" title="Oclim: difvmbo" uid="8e050cbc-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="baabe63a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zfullo" mip="VIACSAB" priority="1" title="Oclim: zfullo" uid="8e050e74-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="3c564abe-b89b-11e6-be04-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e05100e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e051202-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bacc" mip="VIACSAB" priority="1" title="Oyr: bacc" uid="8e05139c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9dcab4-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e051536-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiat" mip="VIACSAB" priority="1" title="Oyr: phydiat" uid="8e0516ee-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e051892-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e051a4a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e051be4-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e051d7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e051f0e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e0520a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="ph" mip="VIACSAB" priority="1" title="Oyr: ph" uid="8e05226a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e101e-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Oyr: o2" uid="8e05240e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e1460-e5dd-11e5-8482-ac72891c3257"/>
<item label="no3" mip="VIACSAB" priority="1" title="Oyr: no3" uid="8e05259e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e1d16-e5dd-11e5-8482-ac72891c3257"/>
<item label="nh4" mip="VIACSAB" priority="1" title="Oyr: nh4" uid="8e05272e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e2158-e5dd-11e5-8482-ac72891c3257"/>
<item label="po4" mip="VIACSAB" priority="1" title="Oyr: po4" uid="8e0528c8-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e25a4-e5dd-11e5-8482-ac72891c3257"/>
<item label="dfe" mip="VIACSAB" priority="1" title="Oyr: dfe" uid="8e052a6c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e29e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="si" mip="VIACSAB" priority="1" title="Oyr: si" uid="8e052c10-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e2e28-e5dd-11e5-8482-ac72891c3257"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e052daa-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e052f3a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiaz" mip="VIACSAB" priority="1" title="Oyr: chldiaz" uid="8e0530d4-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e3ae4-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlcalc" mip="VIACSAB" priority="1" title="Oyr: chlcalc" uid="8e05326e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e3f08-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlpico" mip="VIACSAB" priority="1" title="Oyr: chlpico" uid="8e053408-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e4336-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlmisc" mip="VIACSAB" priority="1" title="Oyr: chlmisc" uid="8e0535a2-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e4b7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyn" mip="VIACSAB" priority="1" title="Oyr: phyn" uid="8e05373c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e60aa-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyp" mip="VIACSAB" priority="1" title="Oyr: phyp" uid="8e0538d6-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e64ec-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyfe" mip="VIACSAB" priority="1" title="Oyr: phyfe" uid="8e053a7a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e691a-e5dd-11e5-8482-ac72891c3257"/>
<item label="physi" mip="VIACSAB" priority="1" title="Oyr: physi" uid="8e053c14-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e6d5c-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e053dae-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="pnitrate" mip="VIACSAB" priority="1" title="Oyr: pnitrate" uid="8e053f3e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9e8fb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="expc" mip="VIACSAB" priority="1" title="Oyr: expc" uid="8e0540d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="expn" mip="VIACSAB" priority="1" title="Oyr: expn" uid="8e054290-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9ea916-e5dd-11e5-8482-ac72891c3257"/>
<item label="expp" mip="VIACSAB" priority="1" title="Oyr: expp" uid="8e05447a-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9ead44-e5dd-11e5-8482-ac72891c3257"/>
<item label="pdi" mip="VIACSAB" priority="1" title="Oyr: pdi" uid="8e05461e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="c925ef58-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="graz" mip="VIACSAB" priority="1" title="Oyr: graz" uid="8e0547f4-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e0549c0-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e054b64-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e054d1c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="Amon: sfcWind" uid="8e054eb6-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="bab6f494-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e055154-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e0552f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e05549c-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e055636-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Omon: o2" uid="8e0558a2-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9f9e7a-e5dd-11e5-8482-ac72891c3257"/>
<item label="ph" mip="VIACSAB" priority="1" title="Omon: ph" uid="8e055ac8-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9f9a4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e055c76-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Omon: phyc" uid="8e055e2e-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9f5398-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Omon: phypico" uid="8e055fd2-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9f792c-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Omon: zooc" uid="8e056194-33eb-11e7-80d4-5404a60d96b5" vgid="6d983b2c-5979-11e6-8fd9-ac72891c3257" vid="ba9f57bc-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvho" mip="VIACSAB" priority="1" title="Oclim: difvho" uid="8e056388-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="baabe3d8-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvso" mip="VIACSAB" priority="1" title="Oclim: difvso" uid="8e056522-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="baabefb8-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvtrbo" mip="VIACSAB" priority="1" title="Oclim: difvtrbo" uid="8e0566bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="baabf242-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvtrto" mip="VIACSAB" priority="1" title="Oclim: difvtrto" uid="8e056856-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="baabf4ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvmbo" mip="VIACSAB" priority="1" title="Oclim: difvmbo" uid="8e0569e6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="baabe63a-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvmto" mip="VIACSAB" priority="1" title="Oclim: difvmto" uid="8e056b80-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="baabed60-e5dd-11e5-8482-ac72891c3257"/>
<item label="calc" mip="VIACSAB" priority="1" title="Oyr: calc" uid="8e056d24-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9dd428-e5dd-11e5-8482-ac72891c3257"/>
<item label="co3" mip="VIACSAB" priority="1" title="Oyr: co3" uid="8e056ebe-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9e75ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="co3satcalc" mip="VIACSAB" priority="1" title="Oyr: co3satcalc" uid="8e057062-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9e79d2-e5dd-11e5-8482-ac72891c3257"/>
<item label="co3satarag" mip="VIACSAB" priority="1" title="Oyr: co3satarag" uid="8e057206-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9e7df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="pnitrate" mip="VIACSAB" priority="1" title="Oyr: pnitrate" uid="8e0573b4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9e8fb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbfe" mip="VIACSAB" priority="1" title="Oyr: pbfe" uid="8e05754e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9e9412-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbsi" mip="VIACSAB" priority="1" title="Oyr: pbsi" uid="8e0576de-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9e984a-e5dd-11e5-8482-ac72891c3257"/>
<item label="pcalc" mip="VIACSAB" priority="1" title="Oyr: pcalc" uid="8e057878-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9e9c78-e5dd-11e5-8482-ac72891c3257"/>
<item label="parag" mip="VIACSAB" priority="1" title="Oyr: parag" uid="8e057a76-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ea0b0-e5dd-11e5-8482-ac72891c3257"/>
<item label="expc" mip="VIACSAB" priority="1" title="Oyr: expc" uid="8e057c10-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="expn" mip="VIACSAB" priority="1" title="Oyr: expn" uid="8e057daa-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ea916-e5dd-11e5-8482-ac72891c3257"/>
<item label="expp" mip="VIACSAB" priority="1" title="Oyr: expp" uid="8e057f4e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ead44-e5dd-11e5-8482-ac72891c3257"/>
<item label="expsi" mip="VIACSAB" priority="1" title="Oyr: expsi" uid="8e058110-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9eb5a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="expcalc" mip="VIACSAB" priority="1" title="Oyr: expcalc" uid="8e0582aa-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9eb9ce-e5dd-11e5-8482-ac72891c3257"/>
<item label="exparag" mip="VIACSAB" priority="1" title="Oyr: exparag" uid="8e05843a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ebdfc-e5dd-11e5-8482-ac72891c3257"/>
<item label="dcalc" mip="VIACSAB" priority="1" title="Oyr: dcalc" uid="8e0585d4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ec658-e5dd-11e5-8482-ac72891c3257"/>
<item label="darag" mip="VIACSAB" priority="1" title="Oyr: darag" uid="8e05876e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ecaa4-e5dd-11e5-8482-ac72891c3257"/>
<item label="pdi" mip="VIACSAB" priority="1" title="Oyr: pdi" uid="8e058908-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="c925ef58-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="bddtdic" mip="VIACSAB" priority="1" title="Oyr: bddtdic" uid="8e058ac0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ee7c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdin" mip="VIACSAB" priority="1" title="Oyr: bddtdin" uid="8e058c64-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9eebf6-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdip" mip="VIACSAB" priority="1" title="Oyr: bddtdip" uid="8e058dfe-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ef024-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdife" mip="VIACSAB" priority="1" title="Oyr: bddtdife" uid="8e058f8e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9ef448-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdisi" mip="VIACSAB" priority="1" title="Oyr: bddtdisi" uid="8e059128-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9efa42-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtalk" mip="VIACSAB" priority="1" title="Oyr: bddtalk" uid="8e0592c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9f017c-e5dd-11e5-8482-ac72891c3257"/>
<item label="fescav" mip="VIACSAB" priority="1" title="Oyr: fescav" uid="8e05945c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9f05e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="graz" mip="VIACSAB" priority="1" title="Oyr: graz" uid="8e059600-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="Amon: rlds" uid="8e0597b8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="Amon: rlus" uid="8e059952-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="bab578d0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e059ae2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="Amon: rsus" uid="8e059c7c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="bab6537c-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdscs" mip="VIACSAB" priority="1" title="Amon: rsdscs" uid="8e059e0c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="bab607c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsuscs" mip="VIACSAB" priority="1" title="Amon: rsuscs" uid="8e059f9c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="bab670b4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rldscs" mip="VIACSAB" priority="1" title="Amon: rldscs" uid="8e05a136-33eb-11e7-80d4-5404a60d96b5" vgid="6d98409a-5979-11e6-8fd9-ac72891c3257" vid="bab5540e-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e05a4b0-33eb-11e7-80d4-5404a60d96b5" vgid="6d984c98-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvmo" mip="VIACSAB" priority="1" title="Oclim: difvmo" uid="8e05a6f4-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="baabeb12-e5dd-11e5-8482-ac72891c3257"/>
<item label="zfullo" mip="VIACSAB" priority="1" title="Oclim: zfullo" uid="8e05a8b6-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="3c564abe-b89b-11e6-be04-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e05aa50-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e05abea-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e05add4-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="ph" mip="VIACSAB" priority="1" title="Oyr: ph" uid="8e05af6e-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e101e-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Oyr: o2" uid="8e05b108-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e1460-e5dd-11e5-8482-ac72891c3257"/>
<item label="no3" mip="VIACSAB" priority="1" title="Oyr: no3" uid="8e05b2a2-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e1d16-e5dd-11e5-8482-ac72891c3257"/>
<item label="nh4" mip="VIACSAB" priority="1" title="Oyr: nh4" uid="8e05b432-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e2158-e5dd-11e5-8482-ac72891c3257"/>
<item label="po4" mip="VIACSAB" priority="1" title="Oyr: po4" uid="8e05b5e0-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e25a4-e5dd-11e5-8482-ac72891c3257"/>
<item label="dfe" mip="VIACSAB" priority="1" title="Oyr: dfe" uid="8e05b77a-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e29e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="si" mip="VIACSAB" priority="1" title="Oyr: si" uid="8e05b91e-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e2e28-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlcalc" mip="VIACSAB" priority="1" title="Oyr: chlcalc" uid="8e05baae-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e3f08-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyn" mip="VIACSAB" priority="1" title="Oyr: phyn" uid="8e05bc48-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e60aa-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyp" mip="VIACSAB" priority="1" title="Oyr: phyp" uid="8e05bdd8-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e64ec-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyfe" mip="VIACSAB" priority="1" title="Oyr: phyfe" uid="8e05bf68-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e691a-e5dd-11e5-8482-ac72891c3257"/>
<item label="physi" mip="VIACSAB" priority="1" title="Oyr: physi" uid="8e05c0f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e6d5c-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e05c288-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e05c422-33eb-11e7-80d4-5404a60d96b5" vgid="6d985238-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissic" mip="VIACSAB" priority="1" title="Oyr: dissic" uid="8e05c742-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9da994-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissoc" mip="VIACSAB" priority="1" title="Oyr: dissoc" uid="8e05c8f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9dbc04-e5dd-11e5-8482-ac72891c3257"/>
<item label="bacc" mip="VIACSAB" priority="1" title="Oyr: bacc" uid="8e05ca94-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9dcab4-e5dd-11e5-8482-ac72891c3257"/>
<item label="arag" mip="VIACSAB" priority="1" title="Oyr: arag" uid="8e05cc2e-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9dd91e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiat" mip="VIACSAB" priority="1" title="Oyr: phydiat" uid="8e05cdc8-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e05cf58-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e05d0f2-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e05d28c-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e05d41c-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e05d5b6-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e05d746-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="talk" mip="VIACSAB" priority="1" title="Oyr: talk" uid="8e05d908-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e0786-e5dd-11e5-8482-ac72891c3257"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e05dab6-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e05dc50-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiaz" mip="VIACSAB" priority="1" title="Oyr: chldiaz" uid="8e05dde0-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e3ae4-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlmisc" mip="VIACSAB" priority="1" title="Oyr: chlmisc" uid="8e05df7a-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e4b7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="pon" mip="VIACSAB" priority="1" title="Oyr: pon" uid="8e05e10a-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e4fca-e5dd-11e5-8482-ac72891c3257"/>
<item label="pop" mip="VIACSAB" priority="1" title="Oyr: pop" uid="8e05e2f4-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e540c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bfe" mip="VIACSAB" priority="1" title="Oyr: bfe" uid="8e05e48e-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e583a-e5dd-11e5-8482-ac72891c3257"/>
<item label="bsi" mip="VIACSAB" priority="1" title="Oyr: bsi" uid="8e05e628-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e5c72-e5dd-11e5-8482-ac72891c3257"/>
<item label="dms" mip="VIACSAB" priority="1" title="Oyr: dms" uid="8e05e7c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="ba9e7180-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="Amon: pr" uid="8e05e98e-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e05eb5a-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="Lmon: mrro" uid="8e05ed4e-33eb-11e7-80d4-5404a60d96b5" vgid="6d985792-5979-11e6-8fd9-ac72891c3257" vid="bab17a6e-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e05eff6-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e05f1c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e05f35c-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e05f53c-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e05f6d6-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e05f866-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e05fa00-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="evs" mip="VIACSAB" priority="1" title="Omon: evs" uid="8e05fbcc-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6204c-e5dd-11e5-8482-ac72891c3257"/>
<item label="friver" mip="VIACSAB" priority="1" title="Omon: friver" uid="8e05fd66-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6247a-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfo" mip="VIACSAB" priority="1" title="Omon: wfo" uid="8e05ff00-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa63578-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfonocorr" mip="VIACSAB" priority="1" title="Omon: wfonocorr" uid="8e060108-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa639b0-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfcorr" mip="VIACSAB" priority="1" title="Omon: wfcorr" uid="8e0602c0-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa63dd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsntds" mip="VIACSAB" priority="1" title="Omon: rsntds" uid="8e06052c-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6b66a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdo" mip="VIACSAB" priority="1" title="Omon: rsdo" uid="8e0606c6-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6ba98-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfcorr" mip="VIACSAB" priority="1" title="Omon: hfcorr" uid="8e060860-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6beda-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfds" mip="VIACSAB" priority="1" title="Omon: hfds" uid="8e0609fa-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6c33a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauuo" mip="VIACSAB" priority="1" title="Omon: tauuo" uid="8e060b8a-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6cf38-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauvo" mip="VIACSAB" priority="1" title="Omon: tauvo" uid="8e060d24-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6d366-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauucorr" mip="VIACSAB" priority="1" title="Omon: tauucorr" uid="8e060ed2-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6d78a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauvcorr" mip="VIACSAB" priority="1" title="Omon: tauvcorr" uid="8e06106c-33eb-11e7-80d4-5404a60d96b5" vgid="6d985ce2-5979-11e6-8fd9-ac72891c3257" vid="baa6dbb8-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e061224-33eb-11e7-80d4-5404a60d96b5" vgid="6d986264-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e061454-33eb-11e7-80d4-5404a60d96b5" vgid="6d986264-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e0615ee-33eb-11e7-80d4-5404a60d96b5" vgid="6d986264-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e061788-33eb-11e7-80d4-5404a60d96b5" vgid="6d986264-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e0619a4-33eb-11e7-80d4-5404a60d96b5" vgid="6d9867e6-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e061b48-33eb-11e7-80d4-5404a60d96b5" vgid="6d9867e6-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e061ce2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9867e6-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="agessc" mip="VIACSAB" priority="1" title="Omon: agessc" uid="8e061eea-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="baa56de6-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfgeou" mip="VIACSAB" priority="1" title="Omon: hfgeou" uid="8e062084-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="baa67344-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfrainds" mip="VIACSAB" priority="1" title="Omon: hfrainds" uid="8e06221e-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="baa67768-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfevapds" mip="VIACSAB" priority="1" title="Omon: hfevapds" uid="8e0623c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="baa67b8c-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="3hr: pr" uid="8e062656-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab3c904-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="3hr: tas" uid="8e0627fa-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab91b20-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="3hr: hfls" uid="8e06298a-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="baaefbcc-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="3hr: hfss" uid="8e062b24-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="baaf8452-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="3hr: rlds" uid="8e062cbe-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab52b5a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="3hr: rlus" uid="8e062e4e-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab59202-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="3hr: rsds" uid="8e062fe8-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab5df78-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="3hr: rsus" uid="8e063182-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab65138-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="3hr: uas" uid="8e063326-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="babb5db8-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="3hr: vas" uid="8e0634de-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="babbdec8-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="3hr: huss" uid="8e063678-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab034a6-e5dd-11e5-8482-ac72891c3257"/>
<item label="tso" mip="VIACSAB" priority="1" title="3hr: tso" uid="8e063826-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="babb20b4-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="3hr: prc" uid="8e0639d4-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab40c20-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="3hr: prsn" uid="8e063b6e-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab42912-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="3hr: mrro" uid="8e063d08-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab177b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="3hr: ps" uid="8e063e98-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="bab47354-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="3hr: clt" uid="8e064046-33eb-11e7-80d4-5404a60d96b5" vgid="6d986d72-5979-11e6-8fd9-ac72891c3257" vid="baaad560-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e06421c-33eb-11e7-80d4-5404a60d96b5" vgid="6d9872f4-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="6hrLev: ta" uid="8e064492-33eb-11e7-80d4-5404a60d96b5" vgid="6d98786c-5979-11e6-8fd9-ac72891c3257" vid="bab8f686-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="6hrLev: ua" uid="8e064636-33eb-11e7-80d4-5404a60d96b5" vgid="6d98786c-5979-11e6-8fd9-ac72891c3257" vid="babb47a6-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="6hrLev: va" uid="8e0647d0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98786c-5979-11e6-8fd9-ac72891c3257" vid="babbaebc-e5dd-11e5-8482-ac72891c3257"/>
<item label="hus" mip="VIACSAB" priority="1" title="6hrLev: hus" uid="8e064974-33eb-11e7-80d4-5404a60d96b5" vgid="6d98786c-5979-11e6-8fd9-ac72891c3257" vid="bab009cc-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="6hrLev: ps" uid="8e064b0e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98786c-5979-11e6-8fd9-ac72891c3257" vid="bab46b70-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e064cd0-33eb-11e7-80d4-5404a60d96b5" vgid="6d987dbc-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e064f1e-33eb-11e7-80d4-5404a60d96b5" vgid="6d987dbc-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e0650c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d987dbc-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e065252-33eb-11e7-80d4-5404a60d96b5" vgid="6d987dbc-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e0653ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d987dbc-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvho" mip="VIACSAB" priority="1" title="Oclim: difvho" uid="8e0655c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d988348-5979-11e6-8fd9-ac72891c3257" vid="baabe3d8-e5dd-11e5-8482-ac72891c3257"/>
<item label="tnpeo" mip="VIACSAB" priority="1" title="Oclim: tnpeo" uid="8e06575c-33eb-11e7-80d4-5404a60d96b5" vgid="6d988348-5979-11e6-8fd9-ac72891c3257" vid="bab9e8c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e065932-33eb-11e7-80d4-5404a60d96b5" vgid="6d9888a2-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e065ad6-33eb-11e7-80d4-5404a60d96b5" vgid="6d9888a2-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="Amon: ua" uid="8e065cac-33eb-11e7-80d4-5404a60d96b5" vgid="6d988e24-5979-11e6-8fd9-ac72891c3257" vid="babb4b34-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="Amon: va" uid="8e065e46-33eb-11e7-80d4-5404a60d96b5" vgid="6d988e24-5979-11e6-8fd9-ac72891c3257" vid="babbb25e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfx" mip="VIACSAB" priority="1" title="Omon: hfx" uid="8e06601c-33eb-11e7-80d4-5404a60d96b5" vgid="6d9893a6-5979-11e6-8fd9-ac72891c3257" vid="baa5e2e4-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfy" mip="VIACSAB" priority="1" title="Omon: hfy" uid="8e0661b6-33eb-11e7-80d4-5404a60d96b5" vgid="6d9893a6-5979-11e6-8fd9-ac72891c3257" vid="baa5e758-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e06636e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9898e2-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e066508-33eb-11e7-80d4-5404a60d96b5" vgid="6d9898e2-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetaoga" mip="VIACSAB" priority="1" title="Omon: thetaoga" uid="8e0666ac-33eb-11e7-80d4-5404a60d96b5" vgid="6d9898e2-5979-11e6-8fd9-ac72891c3257" vid="baa52138-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e066846-33eb-11e7-80d4-5404a60d96b5" vgid="6d9898e2-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotst" mip="VIACSAB" priority="1" title="Omon: mlotst" uid="8e0669e0-33eb-11e7-80d4-5404a60d96b5" vgid="6d9898e2-5979-11e6-8fd9-ac72891c3257" vid="baa57688-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotstsq" mip="VIACSAB" priority="1" title="Omon: mlotstsq" uid="8e066b7a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9898e2-5979-11e6-8fd9-ac72891c3257" vid="baa57ac0-e5dd-11e5-8482-ac72891c3257"/>
<item label="spco2" mip="VIACSAB" priority="1" title="Omon: spco2" uid="8e066e2c-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa0c7a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e066fd0-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e06716a-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="zsatcalc" mip="VIACSAB" priority="1" title="Omon: zsatcalc" uid="8e0672fa-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa11b92-e5dd-11e5-8482-ac72891c3257"/>
<item label="zsatarag" mip="VIACSAB" priority="1" title="Omon: zsatarag" uid="8e067494-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa11fb6-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotst" mip="VIACSAB" priority="1" title="Omon: mlotst" uid="8e06762e-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa57688-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Omon: prsn" uid="8e0677e6-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa61c28-e5dd-11e5-8482-ac72891c3257"/>
<item label="evs" mip="VIACSAB" priority="1" title="Omon: evs" uid="8e067980-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa6204c-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsitherm" mip="VIACSAB" priority="1" title="Omon: fsitherm" uid="8e067b1a-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa63136-e5dd-11e5-8482-ac72891c3257"/>
<item label="wfo" mip="VIACSAB" priority="1" title="Omon: wfo" uid="8e067cdc-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa63578-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfdsi" mip="VIACSAB" priority="1" title="Omon: sfdsi" uid="8e067e76-33eb-11e7-80d4-5404a60d96b5" vgid="6d989e46-5979-11e6-8fd9-ac72891c3257" vid="baa662fa-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvmo" mip="VIACSAB" priority="1" title="Oclim: difvmo" uid="8e06809c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="baabeb12-e5dd-11e5-8482-ac72891c3257"/>
<item label="zfullo" mip="VIACSAB" priority="1" title="Oclim: zfullo" uid="8e068286-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="3c564abe-b89b-11e6-be04-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e06842a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e0685ba-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="expc" mip="VIACSAB" priority="1" title="Oyr: expc" uid="8e068754-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="expn" mip="VIACSAB" priority="1" title="Oyr: expn" uid="8e0688ee-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="ba9ea916-e5dd-11e5-8482-ac72891c3257"/>
<item label="expp" mip="VIACSAB" priority="1" title="Oyr: expp" uid="8e068a7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="ba9ead44-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e068c40-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e068dda-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e068f74-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e0691fe-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a3c8-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvho" mip="VIACSAB" priority="1" title="Oclim: difvho" uid="8e06946a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="baabe3d8-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvso" mip="VIACSAB" priority="1" title="Oclim: difvso" uid="8e069604-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="baabefb8-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvtrto" mip="VIACSAB" priority="1" title="Oclim: difvtrto" uid="8e06979e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="baabf4ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvmto" mip="VIACSAB" priority="1" title="Oclim: difvmto" uid="8e06992e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="baabed60-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e069ae6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bacc" mip="VIACSAB" priority="1" title="Oyr: bacc" uid="8e069c80-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9dcab4-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e069e24-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e069fbe-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e06a176-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e06a310-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiaz" mip="VIACSAB" priority="1" title="Oyr: chldiaz" uid="8e06a4aa-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e3ae4-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlcalc" mip="VIACSAB" priority="1" title="Oyr: chlcalc" uid="8e06a63a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e3f08-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlpico" mip="VIACSAB" priority="1" title="Oyr: chlpico" uid="8e06a7d4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e4336-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlmisc" mip="VIACSAB" priority="1" title="Oyr: chlmisc" uid="8e06a964-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e4b7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="dms" mip="VIACSAB" priority="1" title="Oyr: dms" uid="8e06aaf4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e7180-e5dd-11e5-8482-ac72891c3257"/>
<item label="co3" mip="VIACSAB" priority="1" title="Oyr: co3" uid="8e06ac8e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e75ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="co3satcalc" mip="VIACSAB" priority="1" title="Oyr: co3satcalc" uid="8e06ae28-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e79d2-e5dd-11e5-8482-ac72891c3257"/>
<item label="co3satarag" mip="VIACSAB" priority="1" title="Oyr: co3satarag" uid="8e06afcc-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e7df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="pnitrate" mip="VIACSAB" priority="1" title="Oyr: pnitrate" uid="8e06b170-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e8fb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbfe" mip="VIACSAB" priority="1" title="Oyr: pbfe" uid="8e06b30a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e9412-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbsi" mip="VIACSAB" priority="1" title="Oyr: pbsi" uid="8e06b49a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e984a-e5dd-11e5-8482-ac72891c3257"/>
<item label="pcalc" mip="VIACSAB" priority="1" title="Oyr: pcalc" uid="8e06b698-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9e9c78-e5dd-11e5-8482-ac72891c3257"/>
<item label="parag" mip="VIACSAB" priority="1" title="Oyr: parag" uid="8e06b83c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9ea0b0-e5dd-11e5-8482-ac72891c3257"/>
<item label="graz" mip="VIACSAB" priority="1" title="Oyr: graz" uid="8e06b9cc-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="Amon: tas" uid="8e06bb66-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="bab9237c-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="Amon: hfls" uid="8e06bd00-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="baaefe2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="Amon: hfss" uid="8e06be90-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="baaf86a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="Amon: rlds" uid="8e06c020-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="Amon: rlus" uid="8e06c1c4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="bab578d0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e06c37c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="Amon: rsus" uid="8e06c516-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="bab6537c-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdscs" mip="VIACSAB" priority="1" title="Amon: rsdscs" uid="8e06c6c4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="bab607c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsuscs" mip="VIACSAB" priority="1" title="Amon: rsuscs" uid="8e06c85e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="bab670b4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rldscs" mip="VIACSAB" priority="1" title="Amon: rldscs" uid="8e06c9ee-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="bab5540e-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="Amon: clt" uid="8e06cb7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="baaad7e0-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="Amon: ta" uid="8e06cd18-33eb-11e7-80d4-5404a60d96b5" vgid="6d98a936-5979-11e6-8fd9-ac72891c3257" vid="bab8fa0a-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvtrbo" mip="VIACSAB" priority="1" title="Oclim: difvtrbo" uid="8e06d06a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="baabf242-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissic" mip="VIACSAB" priority="1" title="Oyr: dissic" uid="8e06d218-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9da994-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissoc" mip="VIACSAB" priority="1" title="Oyr: dissoc" uid="8e06d3c6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9dbc04-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e06d556-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="calc" mip="VIACSAB" priority="1" title="Oyr: calc" uid="8e06d6f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9dd428-e5dd-11e5-8482-ac72891c3257"/>
<item label="arag" mip="VIACSAB" priority="1" title="Oyr: arag" uid="8e06d880-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9dd91e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiat" mip="VIACSAB" priority="1" title="Oyr: phydiat" uid="8e06da10-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e06dbaa-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e06dd3a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e06ded4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e06e064-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Oyr: o2" uid="8e06e1fe-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e1460-e5dd-11e5-8482-ac72891c3257"/>
<item label="no3" mip="VIACSAB" priority="1" title="Oyr: no3" uid="8e06e3a2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e1d16-e5dd-11e5-8482-ac72891c3257"/>
<item label="nh4" mip="VIACSAB" priority="1" title="Oyr: nh4" uid="8e06e53c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e2158-e5dd-11e5-8482-ac72891c3257"/>
<item label="po4" mip="VIACSAB" priority="1" title="Oyr: po4" uid="8e06e6cc-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e25a4-e5dd-11e5-8482-ac72891c3257"/>
<item label="dfe" mip="VIACSAB" priority="1" title="Oyr: dfe" uid="8e06e866-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e29e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="si" mip="VIACSAB" priority="1" title="Oyr: si" uid="8e06ea46-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e2e28-e5dd-11e5-8482-ac72891c3257"/>
<item label="pon" mip="VIACSAB" priority="1" title="Oyr: pon" uid="8e06ebe0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e4fca-e5dd-11e5-8482-ac72891c3257"/>
<item label="pop" mip="VIACSAB" priority="1" title="Oyr: pop" uid="8e06ed98-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e540c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bfe" mip="VIACSAB" priority="1" title="Oyr: bfe" uid="8e06ef28-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e583a-e5dd-11e5-8482-ac72891c3257"/>
<item label="bsi" mip="VIACSAB" priority="1" title="Oyr: bsi" uid="8e06f0c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e5c72-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyn" mip="VIACSAB" priority="1" title="Oyr: phyn" uid="8e06f252-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e60aa-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyp" mip="VIACSAB" priority="1" title="Oyr: phyp" uid="8e06f3ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e64ec-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyfe" mip="VIACSAB" priority="1" title="Oyr: phyfe" uid="8e06f586-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e691a-e5dd-11e5-8482-ac72891c3257"/>
<item label="physi" mip="VIACSAB" priority="1" title="Oyr: physi" uid="8e06f720-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9e6d5c-e5dd-11e5-8482-ac72891c3257"/>
<item label="expsi" mip="VIACSAB" priority="1" title="Oyr: expsi" uid="8e06f8d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="ba9eb5a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="Amon: tasmin" uid="8e06fa7c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="bab955ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="Amon: tasmax" uid="8e06fc2a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ae90-5979-11e6-8fd9-ac72891c3257" vid="bab942a8-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="day: tasmin" uid="8e06fe0a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98b494-5979-11e6-8fd9-ac72891c3257" vid="bab95fae-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="day: tasmax" uid="8e06ffae-33eb-11e7-80d4-5404a60d96b5" vgid="6d98b494-5979-11e6-8fd9-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="day: tas" uid="8e070148-33eb-11e7-80d4-5404a60d96b5" vgid="6d98b494-5979-11e6-8fd9-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="day: pr" uid="8e0702d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98b494-5979-11e6-8fd9-ac72891c3257" vid="bab3d692-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="day: sfcWind" uid="8e070472-33eb-11e7-80d4-5404a60d96b5" vgid="6d98b494-5979-11e6-8fd9-ac72891c3257" vid="bab6fe58-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="day: hurs" uid="8e07060c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98b494-5979-11e6-8fd9-ac72891c3257" vid="5a070350-c77d-11e6-8a33-5404a60d96b5"/>
<item label="rsds" mip="VIACSAB" priority="1" title="day: rsds" uid="8e0707ba-33eb-11e7-80d4-5404a60d96b5" vgid="6d98b494-5979-11e6-8fd9-ac72891c3257" vid="bab5ecd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="epfe100" mip="VIACSAB" priority="1" title="Omon: epfe100" uid="8e070a1c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ba0c-5979-11e6-8fd9-ac72891c3257" vid="5a35e288-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epsi100" mip="VIACSAB" priority="1" title="Omon: epsi100" uid="8e070bd4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ba0c-5979-11e6-8fd9-ac72891c3257" vid="5a35f1ba-c77d-11e6-8a33-5404a60d96b5"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e070db4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ba0c-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e070f4e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ba0c-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e076e62-33eb-11e7-80d4-5404a60d96b5" vgid="6d98bf7a-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e077060-33eb-11e7-80d4-5404a60d96b5" vgid="6d98bf7a-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e077218-33eb-11e7-80d4-5404a60d96b5" vgid="6d98bf7a-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Omon: o2" uid="8e0773c6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98bf7a-5979-11e6-8fd9-ac72891c3257" vid="ba9f9e7a-e5dd-11e5-8482-ac72891c3257"/>
<item label="ph" mip="VIACSAB" priority="1" title="Omon: ph" uid="8e077560-33eb-11e7-80d4-5404a60d96b5" vgid="6d98bf7a-5979-11e6-8fd9-ac72891c3257" vid="ba9f9a4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Omon: phyc" uid="8e0776fa-33eb-11e7-80d4-5404a60d96b5" vgid="6d98bf7a-5979-11e6-8fd9-ac72891c3257" vid="ba9f5398-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Omon: phypico" uid="8e07789e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98bf7a-5979-11e6-8fd9-ac72891c3257" vid="ba9f792c-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Omon: zooc" uid="8e077a4c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98bf7a-5979-11e6-8fd9-ac72891c3257" vid="ba9f57bc-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvtrbo" mip="VIACSAB" priority="1" title="Oclim: difvtrbo" uid="8e077d26-33eb-11e7-80d4-5404a60d96b5" vgid="6d98c4fc-5979-11e6-8fd9-ac72891c3257" vid="baabf242-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvtrto" mip="VIACSAB" priority="1" title="Oclim: difvtrto" uid="8e077ede-33eb-11e7-80d4-5404a60d96b5" vgid="6d98c4fc-5979-11e6-8fd9-ac72891c3257" vid="baabf4ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e0780aa-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e0782f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="intdic" mip="VIACSAB" priority="1" title="Omon: intdic" uid="8e07849c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="c91e4b7c-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e078668-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e07880c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="zos" mip="VIACSAB" priority="1" title="Omon: zos" uid="8e0789a6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa507f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e078b4a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetaoga" mip="VIACSAB" priority="1" title="Omon: thetaoga" uid="8e078d16-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa52138-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e078eb0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e07904a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="soga" mip="VIACSAB" priority="1" title="Omon: soga" uid="8e0791e4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa55086-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e07937e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotst" mip="VIACSAB" priority="1" title="Omon: mlotst" uid="8e079518-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa57688-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotstsq" mip="VIACSAB" priority="1" title="Omon: mlotstsq" uid="8e0796b2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa57ac0-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e079874-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e079a0e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfx" mip="VIACSAB" priority="1" title="Omon: hfx" uid="8e079bb2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa5e2e4-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfy" mip="VIACSAB" priority="1" title="Omon: hfy" uid="8e079d56-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa5e758-e5dd-11e5-8482-ac72891c3257"/>
<item label="mfo" mip="VIACSAB" priority="1" title="Omon: mfo" uid="8e079ef0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa60bf2-e5dd-11e5-8482-ac72891c3257"/>
<item label="friver" mip="VIACSAB" priority="1" title="Omon: friver" uid="8e07a0bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa6247a-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfriver" mip="VIACSAB" priority="1" title="Omon: sfriver" uid="8e07a27e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="baa66746-e5dd-11e5-8482-ac72891c3257"/>
<item label="zfullo" mip="VIACSAB" priority="1" title="Omon: zfullo" uid="8e07a422-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ca6a-5979-11e6-8fd9-ac72891c3257" vid="5a4c10e4-c77d-11e6-8a33-5404a60d96b5"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e07a5e4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98cfd8-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e07a7a6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98cfd8-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e07a940-33eb-11e7-80d4-5404a60d96b5" vgid="6d98cfd8-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="day: tasmin" uid="8e07ab02-33eb-11e7-80d4-5404a60d96b5" vgid="6d98d546-5979-11e6-8fd9-ac72891c3257" vid="bab95fae-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="day: tasmax" uid="8e07acb0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98d546-5979-11e6-8fd9-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="day: tas" uid="8e07ae54-33eb-11e7-80d4-5404a60d96b5" vgid="6d98d546-5979-11e6-8fd9-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="day: pr" uid="8e07b016-33eb-11e7-80d4-5404a60d96b5" vgid="6d98d546-5979-11e6-8fd9-ac72891c3257" vid="bab3d692-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="day: rsds" uid="8e07b214-33eb-11e7-80d4-5404a60d96b5" vgid="6d98d546-5979-11e6-8fd9-ac72891c3257" vid="bab5ecd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e07b3ea-33eb-11e7-80d4-5404a60d96b5" vgid="6d98dac8-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e07b58e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98dac8-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="snc" mip="VIACSAB" priority="1" title="day: snc" uid="8e07b728-33eb-11e7-80d4-5404a60d96b5" vgid="6d98dac8-5979-11e6-8fd9-ac72891c3257" vid="bab7c75c-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="day: rlds" uid="8e07b8c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98dac8-5979-11e6-8fd9-ac72891c3257" vid="bab538d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="day: rlus" uid="8e07ba5c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98dac8-5979-11e6-8fd9-ac72891c3257" vid="bab57f92-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="day: rsds" uid="8e07bbf6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98dac8-5979-11e6-8fd9-ac72891c3257" vid="bab5ecd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="day: rsus" uid="8e07bd9a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98dac8-5979-11e6-8fd9-ac72891c3257" vid="bab65ad4-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="3hr: uas" uid="8e07bf3e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98dac8-5979-11e6-8fd9-ac72891c3257" vid="babb5db8-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="3hr: vas" uid="8e07c0d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98dac8-5979-11e6-8fd9-ac72891c3257" vid="babbdec8-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="day: psl" uid="8e07c2a4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e02c-5979-11e6-8fd9-ac72891c3257" vid="bab491f4-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="day: hurs" uid="8e07c43e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e02c-5979-11e6-8fd9-ac72891c3257" vid="5a070350-c77d-11e6-8a33-5404a60d96b5"/>
<item label="hursmin" mip="VIACSAB" priority="1" title="day: hursmin" uid="8e07c5d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e02c-5979-11e6-8fd9-ac72891c3257" vid="5a0711f6-c77d-11e6-8a33-5404a60d96b5"/>
<item label="hursmax" mip="VIACSAB" priority="1" title="day: hursmax" uid="8e07c77c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e02c-5979-11e6-8fd9-ac72891c3257" vid="5a071ff2-c77d-11e6-8a33-5404a60d96b5"/>
<item label="clt" mip="VIACSAB" priority="1" title="day: clt" uid="8e07c9ac-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e02c-5979-11e6-8fd9-ac72891c3257" vid="baaace4e-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="day: prc" uid="8e07cb5a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e02c-5979-11e6-8fd9-ac72891c3257" vid="bab3fde8-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="Amon: psl" uid="8e07cd1c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="bab48ce0-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="Amon: ps" uid="8e07ceb6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="bab47b56-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="Amon: prc" uid="8e07d05a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="bab3f8a2-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="Amon: hfss" uid="8e07d208-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="baaf86a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="Amon: rlds" uid="8e07d3a2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="Amon: rlus" uid="8e07d53c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="bab578d0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="Amon: rsus" uid="8e07d6d6-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="bab6537c-e5dd-11e5-8482-ac72891c3257"/>
<item label="ci" mip="VIACSAB" priority="1" title="Amon: ci" uid="8e07d866-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="baaa3984-e5dd-11e5-8482-ac72891c3257"/>
<item label="prveg" mip="VIACSAB" priority="1" title="Lmon: prveg" uid="8e07da00-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="bab45658-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblveg" mip="VIACSAB" priority="1" title="Lmon: evspsblveg" uid="8e07db9a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="baad6596-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblsoi" mip="VIACSAB" priority="1" title="Lmon: evspsblsoi" uid="8e07dd34-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="baad5d9e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tran" mip="VIACSAB" priority="1" title="Lmon: tran" uid="8e07dec4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="baba9752-e5dd-11e5-8482-ac72891c3257"/>
<item label="tsl" mip="VIACSAB" priority="1" title="Lmon: tsl" uid="8e07e05e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="babb0732-e5dd-11e5-8482-ac72891c3257"/>
<item label="snc" mip="VIACSAB" priority="1" title="LImon: snc" uid="8e07e202-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="bab7c2d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="lwsnl" mip="VIACSAB" priority="1" title="LImon: lwsnl" uid="8e07e3b0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98e5e0-5979-11e6-8fd9-ac72891c3257" vid="bab0f1a2-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e07e612-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e07e7c0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e07e964-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="Amon: sfcWind" uid="8e07eafe-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="bab6f494-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="Amon: hurs" uid="8e07ec98-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="baaff41e-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="Amon: huss" uid="8e07ee28-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="bab01dfe-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Amon: prsn" uid="8e07efc2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="bab42b88-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e07f152-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="Amon: hfls" uid="8e07f2ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="baaefe2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="Amon: clt" uid="8e07f4b8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="baaad7e0-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="Lmon: mrsos" uid="8e07f67a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="bab1c85c-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrfso" mip="VIACSAB" priority="1" title="Lmon: mrfso" uid="8e07f81e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="bab1688a-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrros" mip="VIACSAB" priority="1" title="Lmon: mrros" uid="8e07f9b8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="bab19ff8-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="Lmon: mrro" uid="8e07fb52-33eb-11e7-80d4-5404a60d96b5" vgid="6d98ecca-5979-11e6-8fd9-ac72891c3257" vid="bab17a6e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="Amon: tas" uid="8e07fd14-33eb-11e7-80d4-5404a60d96b5" vgid="6d98f328-5979-11e6-8fd9-ac72891c3257" vid="bab9237c-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="Amon: tasmin" uid="8e07feae-33eb-11e7-80d4-5404a60d96b5" vgid="6d98f328-5979-11e6-8fd9-ac72891c3257" vid="bab955ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="Amon: tasmax" uid="8e080048-33eb-11e7-80d4-5404a60d96b5" vgid="6d98f328-5979-11e6-8fd9-ac72891c3257" vid="bab942a8-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="Amon: pr" uid="8e0801d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98f328-5979-11e6-8fd9-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e080372-33eb-11e7-80d4-5404a60d96b5" vgid="6d98f328-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrso" mip="VIACSAB" priority="1" title="Lmon: mrso" uid="8e080606-33eb-11e7-80d4-5404a60d96b5" vgid="6d98f328-5979-11e6-8fd9-ac72891c3257" vid="bab1a782-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrlsl" mip="VIACSAB" priority="1" title="Lmon: mrlsl" uid="8e0807aa-33eb-11e7-80d4-5404a60d96b5" vgid="6d98f328-5979-11e6-8fd9-ac72891c3257" vid="bab17032-e5dd-11e5-8482-ac72891c3257"/>
<item label="cropFrac" mip="VIACSAB" priority="1" title="Lmon: cropFrac" uid="8e08093a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98f328-5979-11e6-8fd9-ac72891c3257" vid="baab87f8-e5dd-11e5-8482-ac72891c3257"/>
<item label="pastureFrac" mip="VIACSAB" priority="1" title="Lmon: pastureFrac" uid="8e080ad4-33eb-11e7-80d4-5404a60d96b5" vgid="6d98f328-5979-11e6-8fd9-ac72891c3257" vid="bab30988-e5dd-11e5-8482-ac72891c3257"/>
<item label="fco2antt" mip="VIACSAB" priority="1" title="Amon: fco2antt" uid="8e080cfa-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baaddada-e5dd-11e5-8482-ac72891c3257"/>
<item label="fco2fos" mip="VIACSAB" priority="1" title="Amon: fco2fos" uid="8e080e9e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baade44e-e5dd-11e5-8482-ac72891c3257"/>
<item label="fco2nat" mip="VIACSAB" priority="1" title="Amon: fco2nat" uid="8e081038-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baaded68-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFrac" mip="VIACSAB" priority="1" title="Lmon: treeFrac" uid="8e0811c8-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="babab3ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="grassFrac" mip="VIACSAB" priority="1" title="Lmon: grassFrac" uid="8e081362-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baae910a-e5dd-11e5-8482-ac72891c3257"/>
<item label="shrubFrac" mip="VIACSAB" priority="1" title="Lmon: shrubFrac" uid="8e0814fc-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="bab76b9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="baresoilFrac" mip="VIACSAB" priority="1" title="Lmon: baresoilFrac" uid="8e0816a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baa84fd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="residualFrac" mip="VIACSAB" priority="1" title="Lmon: residualFrac" uid="8e08184e-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="bab4f1e4-e5dd-11e5-8482-ac72891c3257"/>
<item label="burntArea" mip="VIACSAB" priority="1" title="Lmon: burntArea" uid="8e081a38-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baa88256-e5dd-11e5-8482-ac72891c3257"/>
<item label="cVeg" mip="VIACSAB" priority="1" title="Lmon: cVeg" uid="8e081bdc-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baa90258-e5dd-11e5-8482-ac72891c3257"/>
<item label="cLitter" mip="VIACSAB" priority="1" title="Lmon: cLitter" uid="8e081d76-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baa8b67c-e5dd-11e5-8482-ac72891c3257"/>
<item label="cProduct" mip="VIACSAB" priority="1" title="Lmon: cProduct" uid="8e081f38-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baa8d49a-e5dd-11e5-8482-ac72891c3257"/>
<item label="lai" mip="VIACSAB" priority="1" title="Lmon: lai" uid="8e0820d2-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="bab0919e-e5dd-11e5-8482-ac72891c3257"/>
<item label="fGrazing" mip="VIACSAB" priority="1" title="Lmon: fGrazing" uid="8e08226c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baad86fc-e5dd-11e5-8482-ac72891c3257"/>
<item label="fHarvest" mip="VIACSAB" priority="1" title="Lmon: fHarvest" uid="8e0823fc-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baad8e7c-e5dd-11e5-8482-ac72891c3257"/>
<item label="landCoverFrac" mip="VIACSAB" priority="1" title="Lmon: landCoverFrac" uid="8e0825be-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="bab09a7c-e5dd-11e5-8482-ac72891c3257"/>
<item label="c3PftFrac" mip="VIACSAB" priority="1" title="Lmon: c3PftFrac" uid="8e08276c-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baa897e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="c4PftFrac" mip="VIACSAB" priority="1" title="Lmon: c4PftFrac" uid="8e08291a-33eb-11e7-80d4-5404a60d96b5" vgid="6d98fe40-5979-11e6-8fd9-ac72891c3257" vid="baa89f8e-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e082adc-33eb-11e7-80d4-5404a60d96b5" vgid="6d9903cc-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e082d0c-33eb-11e7-80d4-5404a60d96b5" vgid="6d9903cc-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e082ea6-33eb-11e7-80d4-5404a60d96b5" vgid="6d9903cc-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="zos" mip="VIACSAB" priority="1" title="Omon: zos" uid="8e083040-33eb-11e7-80d4-5404a60d96b5" vgid="6d9903cc-5979-11e6-8fd9-ac72891c3257" vid="baa507f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e0831da-33eb-11e7-80d4-5404a60d96b5" vgid="6d9903cc-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e083374-33eb-11e7-80d4-5404a60d96b5" vgid="6d9903cc-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="soga" mip="VIACSAB" priority="1" title="Omon: soga" uid="8e08350e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9903cc-5979-11e6-8fd9-ac72891c3257" vid="baa55086-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e08369e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9903cc-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e08386a-33eb-11e7-80d4-5404a60d96b5" vgid="6d990930-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="VIACSAB" priority="1" title="Omon: tos" uid="8e083a18-33eb-11e7-80d4-5404a60d96b5" vgid="6d990930-5979-11e6-8fd9-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e083bb2-33eb-11e7-80d4-5404a60d96b5" vgid="6d990930-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e083d6a-33eb-11e7-80d4-5404a60d96b5" vgid="6d990930-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvso" mip="VIACSAB" priority="1" title="Oclim: difvso" uid="8e083f4a-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="baabefb8-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvmto" mip="VIACSAB" priority="1" title="Oclim: difvmto" uid="8e0840ee-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="baabed60-e5dd-11e5-8482-ac72891c3257"/>
<item label="co3" mip="VIACSAB" priority="1" title="Oyr: co3" uid="8e084292-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9e75ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="co3satcalc" mip="VIACSAB" priority="1" title="Oyr: co3satcalc" uid="8e08442c-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9e79d2-e5dd-11e5-8482-ac72891c3257"/>
<item label="co3satarag" mip="VIACSAB" priority="1" title="Oyr: co3satarag" uid="8e0845d0-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9e7df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbfe" mip="VIACSAB" priority="1" title="Oyr: pbfe" uid="8e08477e-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9e9412-e5dd-11e5-8482-ac72891c3257"/>
<item label="pbsi" mip="VIACSAB" priority="1" title="Oyr: pbsi" uid="8e084972-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9e984a-e5dd-11e5-8482-ac72891c3257"/>
<item label="pcalc" mip="VIACSAB" priority="1" title="Oyr: pcalc" uid="8e084b0c-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9e9c78-e5dd-11e5-8482-ac72891c3257"/>
<item label="parag" mip="VIACSAB" priority="1" title="Oyr: parag" uid="8e084ca6-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9ea0b0-e5dd-11e5-8482-ac72891c3257"/>
<item label="expcalc" mip="VIACSAB" priority="1" title="Oyr: expcalc" uid="8e084e90-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9eb9ce-e5dd-11e5-8482-ac72891c3257"/>
<item label="exparag" mip="VIACSAB" priority="1" title="Oyr: exparag" uid="8e085034-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9ebdfc-e5dd-11e5-8482-ac72891c3257"/>
<item label="dcalc" mip="VIACSAB" priority="1" title="Oyr: dcalc" uid="8e0851ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9ec658-e5dd-11e5-8482-ac72891c3257"/>
<item label="darag" mip="VIACSAB" priority="1" title="Oyr: darag" uid="8e085368-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9ecaa4-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdic" mip="VIACSAB" priority="1" title="Oyr: bddtdic" uid="8e085502-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9ee7c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdin" mip="VIACSAB" priority="1" title="Oyr: bddtdin" uid="8e08569c-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9eebf6-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdip" mip="VIACSAB" priority="1" title="Oyr: bddtdip" uid="8e085840-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9ef024-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdife" mip="VIACSAB" priority="1" title="Oyr: bddtdife" uid="8e0859ee-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9ef448-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtdisi" mip="VIACSAB" priority="1" title="Oyr: bddtdisi" uid="8e085b88-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9efa42-e5dd-11e5-8482-ac72891c3257"/>
<item label="bddtalk" mip="VIACSAB" priority="1" title="Oyr: bddtalk" uid="8e085d22-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9f017c-e5dd-11e5-8482-ac72891c3257"/>
<item label="fescav" mip="VIACSAB" priority="1" title="Oyr: fescav" uid="8e085eb2-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="ba9f05e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="Amon: tas" uid="8e08607e-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="bab9237c-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="Amon: hfls" uid="8e086218-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="baaefe2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="Amon: hfss" uid="8e0863a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="baaf86a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="Amon: rlds" uid="8e08659c-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="Amon: rlus" uid="8e086740-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="bab578d0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e0868da-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="Amon: rsus" uid="8e086a7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="bab6537c-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdscs" mip="VIACSAB" priority="1" title="Amon: rsdscs" uid="8e086c22-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="bab607c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsuscs" mip="VIACSAB" priority="1" title="Amon: rsuscs" uid="8e086dbc-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="bab670b4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rldscs" mip="VIACSAB" priority="1" title="Amon: rldscs" uid="8e086f56-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="bab5540e-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="Amon: clt" uid="8e0870f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="baaad7e0-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="Amon: ta" uid="8e08728a-33eb-11e7-80d4-5404a60d96b5" vgid="6d990ec6-5979-11e6-8fd9-ac72891c3257" vid="bab8fa0a-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvtrbo" mip="VIACSAB" priority="1" title="Oclim: difvtrbo" uid="8e08773a-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="baabf242-e5dd-11e5-8482-ac72891c3257"/>
<item label="difvtrto" mip="VIACSAB" priority="1" title="Oclim: difvtrto" uid="8e08791a-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="baabf4ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissic" mip="VIACSAB" priority="1" title="Oyr: dissic" uid="8e087b36-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9da994-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissoc" mip="VIACSAB" priority="1" title="Oyr: dissoc" uid="8e087cda-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9dbc04-e5dd-11e5-8482-ac72891c3257"/>
<item label="calc" mip="VIACSAB" priority="1" title="Oyr: calc" uid="8e087e74-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9dd428-e5dd-11e5-8482-ac72891c3257"/>
<item label="arag" mip="VIACSAB" priority="1" title="Oyr: arag" uid="8e08800e-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9dd91e-e5dd-11e5-8482-ac72891c3257"/>
<item label="talk" mip="VIACSAB" priority="1" title="Oyr: talk" uid="8e0881a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9e0786-e5dd-11e5-8482-ac72891c3257"/>
<item label="pon" mip="VIACSAB" priority="1" title="Oyr: pon" uid="8e0883a6-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9e4fca-e5dd-11e5-8482-ac72891c3257"/>
<item label="pop" mip="VIACSAB" priority="1" title="Oyr: pop" uid="8e08854a-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9e540c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bfe" mip="VIACSAB" priority="1" title="Oyr: bfe" uid="8e088702-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9e583a-e5dd-11e5-8482-ac72891c3257"/>
<item label="bsi" mip="VIACSAB" priority="1" title="Oyr: bsi" uid="8e0888a6-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9e5c72-e5dd-11e5-8482-ac72891c3257"/>
<item label="dms" mip="VIACSAB" priority="1" title="Oyr: dms" uid="8e088a68-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9e7180-e5dd-11e5-8482-ac72891c3257"/>
<item label="expsi" mip="VIACSAB" priority="1" title="Oyr: expsi" uid="8e088d74-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="ba9eb5a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="Amon: tasmin" uid="8e088f54-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="bab955ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="Amon: tasmax" uid="8e089116-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="bab942a8-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="Amon: pr" uid="8e0892d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e089490-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="Amon: ua" uid="8e089652-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="babb4b34-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="Amon: va" uid="8e08980a-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="babbb25e-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="Lmon: mrro" uid="8e089a08-33eb-11e7-80d4-5404a60d96b5" vgid="6d99142a-5979-11e6-8fd9-ac72891c3257" vid="bab17a6e-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e089d28-33eb-11e7-80d4-5404a60d96b5" vgid="6d991966-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="soga" mip="VIACSAB" priority="1" title="Omon: soga" uid="8e089ef4-33eb-11e7-80d4-5404a60d96b5" vgid="6d991966-5979-11e6-8fd9-ac72891c3257" vid="baa55086-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="VIACSAB" priority="1" title="Omon: sos" uid="8e08a0c0-33eb-11e7-80d4-5404a60d96b5" vgid="6d991966-5979-11e6-8fd9-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissic" mip="VIACSAB" priority="1" title="Oyr: dissic" uid="8e08a2a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9da994-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissoc" mip="VIACSAB" priority="1" title="Oyr: dissoc" uid="8e08a480-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9dbc04-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e08a642-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e08a804-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bacc" mip="VIACSAB" priority="1" title="Oyr: bacc" uid="8e08a9bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9dcab4-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e08ab7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e08ad36-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e08aeee-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e08b0ba-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e08b290-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e08b448-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e08b60a-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="talk" mip="VIACSAB" priority="1" title="Oyr: talk" uid="8e08b7e0-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e0786-e5dd-11e5-8482-ac72891c3257"/>
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<item label="nh4" mip="VIACSAB" priority="1" title="Oyr: nh4" uid="8e08bd12-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e2158-e5dd-11e5-8482-ac72891c3257"/>
<item label="po4" mip="VIACSAB" priority="1" title="Oyr: po4" uid="8e08bf2e-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e25a4-e5dd-11e5-8482-ac72891c3257"/>
<item label="dfe" mip="VIACSAB" priority="1" title="Oyr: dfe" uid="8e08c0f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e29e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="si" mip="VIACSAB" priority="1" title="Oyr: si" uid="8e08c2b2-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e2e28-e5dd-11e5-8482-ac72891c3257"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e08c47e-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e08c640-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiaz" mip="VIACSAB" priority="1" title="Oyr: chldiaz" uid="8e08c7f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e3ae4-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlcalc" mip="VIACSAB" priority="1" title="Oyr: chlcalc" uid="8e08c9b0-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e3f08-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlmisc" mip="VIACSAB" priority="1" title="Oyr: chlmisc" uid="8e08cb68-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e4b7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e08cd20-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="expc" mip="VIACSAB" priority="1" title="Oyr: expc" uid="8e08ced8-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e08d090-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e08d248-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e08d428-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="Amon: sfcWind" uid="8e08d5fe-33eb-11e7-80d4-5404a60d96b5" vgid="6d991ede-5979-11e6-8fd9-ac72891c3257" vid="bab6f494-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="day: huss" uid="8e08d838-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab0238a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="day: tasmin" uid="8e08d9fa-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab95fae-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="day: tasmax" uid="8e08dbb2-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="day: tas" uid="8e08dd6a-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="day: pr" uid="8e08df22-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab3d692-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="day: sfcWind" uid="8e08e0d0-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab6fe58-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="day: mrsos" uid="8e08e288-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab1ca14-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWindmax" mip="VIACSAB" priority="1" title="day: sfcWindmax" uid="8e08e440-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab709de-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="day: hfls" uid="8e08e60c-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="baaf0a9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="day: hfss" uid="8e08e7d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="baaf91cc-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="day: rlds" uid="8e08e990-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab538d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="day: rlus" uid="8e08eb48-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab57f92-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="day: rsds" uid="8e08ed00-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab5ecd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="day: rsus" uid="8e08eeae-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab65ad4-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="3hr: pr" uid="8e08f066-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab3c904-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="3hr: tas" uid="8e08f228-33eb-11e7-80d4-5404a60d96b5" vgid="6d99246a-5979-11e6-8fd9-ac72891c3257" vid="bab91b20-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbfe" mip="VIACSAB" priority="1" title="Omon: intpbfe" uid="8e08f412-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa08984-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbsi" mip="VIACSAB" priority="1" title="Omon: intpbsi" uid="8e08f62e-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa08f6a-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpcalcite" mip="VIACSAB" priority="1" title="Omon: intpcalcite" uid="8e08f7f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa0944c-e5dd-11e5-8482-ac72891c3257"/>
<item label="intparag" mip="VIACSAB" priority="1" title="Omon: intparag" uid="8e08f9bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa0999c-e5dd-11e5-8482-ac72891c3257"/>
<item label="epcalc100" mip="VIACSAB" priority="1" title="Omon: epcalc100" uid="8e08fb92-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="5a3602cc-c77d-11e6-8a33-5404a60d96b5"/>
<item label="eparag100" mip="VIACSAB" priority="1" title="Omon: eparag100" uid="8e08fd86-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="5a361136-c77d-11e6-8a33-5404a60d96b5"/>
<item label="fgdms" mip="VIACSAB" priority="1" title="Omon: fgdms" uid="8e08ff3e-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa0e906-e5dd-11e5-8482-ac72891c3257"/>
<item label="frn" mip="VIACSAB" priority="1" title="Omon: frn" uid="8e090128-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa106c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="frfe" mip="VIACSAB" priority="1" title="Omon: frfe" uid="8e09038a-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa10f12-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfpr" mip="VIACSAB" priority="1" title="Omon: vsfpr" uid="8e090574-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa649d2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfevap" mip="VIACSAB" priority="1" title="Omon: vsfevap" uid="8e09070e-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa64df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfriver" mip="VIACSAB" priority="1" title="Omon: vsfriver" uid="8e0908a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa65224-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsntds" mip="VIACSAB" priority="1" title="Omon: rsntds" uid="8e090ace-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa6b66a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauuo" mip="VIACSAB" priority="1" title="Omon: tauuo" uid="8e090c7c-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa6cf38-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauvo" mip="VIACSAB" priority="1" title="Omon: tauvo" uid="8e090e34-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baa6d366-e5dd-11e5-8482-ac72891c3257"/>
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<item label="clt" mip="VIACSAB" priority="1" title="3hr: clt" uid="8e09333c-33eb-11e7-80d4-5404a60d96b5" vgid="6d992a64-5979-11e6-8fd9-ac72891c3257" vid="baaad560-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e0935ee-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epfe100" mip="VIACSAB" priority="1" title="Omon: epfe100" uid="8e093792-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="5a35e288-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epsi100" mip="VIACSAB" priority="1" title="Omon: epsi100" uid="8e09392c-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="5a35f1ba-c77d-11e6-8a33-5404a60d96b5"/>
<item label="intdic" mip="VIACSAB" priority="1" title="Omon: intdic" uid="8e093ad0-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="c91e4b7c-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="msftbarot" mip="VIACSAB" priority="1" title="Omon: msftbarot" uid="8e093c6a-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="baa57250-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotst" mip="VIACSAB" priority="1" title="Omon: mlotst" uid="8e093e18-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="baa57688-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsitherm" mip="VIACSAB" priority="1" title="Omon: fsitherm" uid="8e09400c-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="baa63136-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="day: huss" uid="8e0941a6-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="bab0238a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="day: tasmin" uid="8e094340-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="bab95fae-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="day: tasmax" uid="8e0944e4-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="day: tas" uid="8e09467e-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="day: pr" uid="8e094818-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="bab3d692-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="day: psl" uid="8e0949b2-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="bab491f4-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="day: sfcWind" uid="8e094b4c-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="bab6fe58-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="day: clt" uid="8e094d40-33eb-11e7-80d4-5404a60d96b5" vgid="6d993554-5979-11e6-8fd9-ac72891c3257" vid="baaace4e-e5dd-11e5-8482-ac72891c3257"/>
<item label="wmo" mip="VIACSAB" priority="1" title="Omon: wmo" uid="8e094f02-33eb-11e7-80d4-5404a60d96b5" vgid="6d993aa4-5979-11e6-8fd9-ac72891c3257" vid="baa58f74-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbfe" mip="VIACSAB" priority="1" title="Omon: intpbfe" uid="8e095164-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa08984-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbsi" mip="VIACSAB" priority="1" title="Omon: intpbsi" uid="8e09542a-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa08f6a-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpcalcite" mip="VIACSAB" priority="1" title="Omon: intpcalcite" uid="8e095614-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa0944c-e5dd-11e5-8482-ac72891c3257"/>
<item label="intparag" mip="VIACSAB" priority="1" title="Omon: intparag" uid="8e0957d6-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa0999c-e5dd-11e5-8482-ac72891c3257"/>
<item label="epfe100" mip="VIACSAB" priority="1" title="Omon: epfe100" uid="8e095998-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="5a35e288-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epsi100" mip="VIACSAB" priority="1" title="Omon: epsi100" uid="8e095b50-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="5a35f1ba-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epcalc100" mip="VIACSAB" priority="1" title="Omon: epcalc100" uid="8e095d12-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="5a3602cc-c77d-11e6-8a33-5404a60d96b5"/>
<item label="eparag100" mip="VIACSAB" priority="1" title="Omon: eparag100" uid="8e095ede-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="5a361136-c77d-11e6-8a33-5404a60d96b5"/>
<item label="fgco2" mip="VIACSAB" priority="1" title="Omon: fgco2" uid="8e0960a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa0d420-e5dd-11e5-8482-ac72891c3257"/>
<item label="fgo2" mip="VIACSAB" priority="1" title="Omon: fgo2" uid="8e0962d0-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa0e4ba-e5dd-11e5-8482-ac72891c3257"/>
<item label="fgdms" mip="VIACSAB" priority="1" title="Omon: fgdms" uid="8e096492-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa0e906-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsn" mip="VIACSAB" priority="1" title="Omon: fsn" uid="8e096686-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa10292-e5dd-11e5-8482-ac72891c3257"/>
<item label="frn" mip="VIACSAB" priority="1" title="Omon: frn" uid="8e09683e-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa106c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e096a1e-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e096bea-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="fddtdic" mip="VIACSAB" priority="1" title="Omon: fddtdic" uid="8e096dac-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa123da-e5dd-11e5-8482-ac72891c3257"/>
<item label="fddtalk" mip="VIACSAB" priority="1" title="Omon: fddtalk" uid="8e096f6e-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa138fc-e5dd-11e5-8482-ac72891c3257"/>
<item label="fbddtdic" mip="VIACSAB" priority="1" title="Omon: fbddtdic" uid="8e097126-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa13d20-e5dd-11e5-8482-ac72891c3257"/>
<item label="masscello" mip="VIACSAB" priority="1" title="Omon: masscello" uid="8e0972f2-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa5147c-e5dd-11e5-8482-ac72891c3257"/>
<item label="tossq" mip="VIACSAB" priority="1" title="Omon: tossq" uid="8e0974c8-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa53ee8-e5dd-11e5-8482-ac72891c3257"/>
<item label="agessc" mip="VIACSAB" priority="1" title="Omon: agessc" uid="8e09768a-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa56de6-e5dd-11e5-8482-ac72891c3257"/>
<item label="msftbarot" mip="VIACSAB" priority="1" title="Omon: msftbarot" uid="8e097842-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa57250-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotstsq" mip="VIACSAB" priority="1" title="Omon: mlotstsq" uid="8e097a04-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa57ac0-e5dd-11e5-8482-ac72891c3257"/>
<item label="htovgyre" mip="VIACSAB" priority="1" title="Omon: htovgyre" uid="8e097c20-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa5ef8c-e5dd-11e5-8482-ac72891c3257"/>
<item label="htovovrt" mip="VIACSAB" priority="1" title="Omon: htovovrt" uid="8e097e78-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="baa5f3ba-e5dd-11e5-8482-ac72891c3257"/>
<item label="snc" mip="VIACSAB" priority="1" title="day: snc" uid="8e09806c-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="bab7c75c-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="3hr: huss" uid="8e09822e-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="bab034a6-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="3hr: mrsos" uid="8e0983f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="bab1c668-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="3hr: mrro" uid="8e0985bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d993ff4-5979-11e6-8fd9-ac72891c3257" vid="bab177b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="day: huss" uid="8e0988dc-33eb-11e7-80d4-5404a60d96b5" vgid="6d994bd4-5979-11e6-8fd9-ac72891c3257" vid="bab0238a-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="day: psl" uid="8e098aa8-33eb-11e7-80d4-5404a60d96b5" vgid="6d994bd4-5979-11e6-8fd9-ac72891c3257" vid="bab491f4-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="day: sfcWind" uid="8e098c60-33eb-11e7-80d4-5404a60d96b5" vgid="6d994bd4-5979-11e6-8fd9-ac72891c3257" vid="bab6fe58-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="day: mrsos" uid="8e098e2c-33eb-11e7-80d4-5404a60d96b5" vgid="6d994bd4-5979-11e6-8fd9-ac72891c3257" vid="bab1ca14-e5dd-11e5-8482-ac72891c3257"/>
<item label="snc" mip="VIACSAB" priority="1" title="day: snc" uid="8e098fe4-33eb-11e7-80d4-5404a60d96b5" vgid="6d994bd4-5979-11e6-8fd9-ac72891c3257" vid="bab7c75c-e5dd-11e5-8482-ac72891c3257"/>
<item label="prw" mip="VIACSAB" priority="1" title="Amon: prw" uid="8e0991d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d995138-5979-11e6-8fd9-ac72891c3257" vid="bab45df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="sootsn" mip="VIACSAB" priority="1" title="LImon: sootsn" uid="8e09939a-33eb-11e7-80d4-5404a60d96b5" vgid="6d995138-5979-11e6-8fd9-ac72891c3257" vid="bab83fc0-e5dd-11e5-8482-ac72891c3257"/>
<item label="tpf" mip="VIACSAB" priority="1" title="LImon: tpf" uid="8e09955c-33eb-11e7-80d4-5404a60d96b5" vgid="6d995138-5979-11e6-8fd9-ac72891c3257" vid="baba8cbc-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="Amon: tas" uid="8e099746-33eb-11e7-80d4-5404a60d96b5" vgid="6d9956a6-5979-11e6-8fd9-ac72891c3257" vid="bab9237c-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="Amon: tasmin" uid="8e099912-33eb-11e7-80d4-5404a60d96b5" vgid="6d9956a6-5979-11e6-8fd9-ac72891c3257" vid="bab955ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="Amon: tasmax" uid="8e099af2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9956a6-5979-11e6-8fd9-ac72891c3257" vid="bab942a8-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="Amon: pr" uid="8e099e1c-33eb-11e7-80d4-5404a60d96b5" vgid="6d9956a6-5979-11e6-8fd9-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrso" mip="VIACSAB" priority="1" title="Lmon: mrso" uid="8e09a1dc-33eb-11e7-80d4-5404a60d96b5" vgid="6d9956a6-5979-11e6-8fd9-ac72891c3257" vid="bab1a782-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrlsl" mip="VIACSAB" priority="1" title="Lmon: mrlsl" uid="8e09a4c0-33eb-11e7-80d4-5404a60d96b5" vgid="6d9956a6-5979-11e6-8fd9-ac72891c3257" vid="bab17032-e5dd-11e5-8482-ac72891c3257"/>
<item label="cropFrac" mip="VIACSAB" priority="1" title="Lmon: cropFrac" uid="8e09a79a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9956a6-5979-11e6-8fd9-ac72891c3257" vid="baab87f8-e5dd-11e5-8482-ac72891c3257"/>
<item label="pastureFrac" mip="VIACSAB" priority="1" title="Lmon: pastureFrac" uid="8e09aa42-33eb-11e7-80d4-5404a60d96b5" vgid="6d9956a6-5979-11e6-8fd9-ac72891c3257" vid="bab30988-e5dd-11e5-8482-ac72891c3257"/>
<item label="prveg" mip="VIACSAB" priority="1" title="Lmon: prveg" uid="8e09ada8-33eb-11e7-80d4-5404a60d96b5" vgid="6d995c0a-5979-11e6-8fd9-ac72891c3257" vid="bab45658-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblveg" mip="VIACSAB" priority="1" title="Lmon: evspsblveg" uid="8e09b050-33eb-11e7-80d4-5404a60d96b5" vgid="6d995c0a-5979-11e6-8fd9-ac72891c3257" vid="baad6596-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblsoi" mip="VIACSAB" priority="1" title="Lmon: evspsblsoi" uid="8e09b32a-33eb-11e7-80d4-5404a60d96b5" vgid="6d995c0a-5979-11e6-8fd9-ac72891c3257" vid="baad5d9e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tran" mip="VIACSAB" priority="1" title="Lmon: tran" uid="8e09b618-33eb-11e7-80d4-5404a60d96b5" vgid="6d995c0a-5979-11e6-8fd9-ac72891c3257" vid="baba9752-e5dd-11e5-8482-ac72891c3257"/>
<item label="tsl" mip="VIACSAB" priority="1" title="Lmon: tsl" uid="8e09b92e-33eb-11e7-80d4-5404a60d96b5" vgid="6d995c0a-5979-11e6-8fd9-ac72891c3257" vid="babb0732-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e09bc6c-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="Amon: psl" uid="8e09bf5a-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab48ce0-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="Amon: ps" uid="8e09c266-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab47b56-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e09c554-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e09c838-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="Amon: sfcWind" uid="8e09cba8-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab6f494-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="Amon: hurs" uid="8e09ce5a-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="baaff41e-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="Amon: huss" uid="8e09d102-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab01dfe-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Amon: prsn" uid="8e09d3be-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab42b88-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="Amon: prc" uid="8e09d67a-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab3f8a2-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e09d936-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="Amon: clt" uid="8e09db98-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="baaad7e0-e5dd-11e5-8482-ac72891c3257"/>
<item label="cl" mip="VIACSAB" priority="1" title="Amon: cl" uid="8e09dd46-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="baaa4302-e5dd-11e5-8482-ac72891c3257"/>
<item label="mc" mip="VIACSAB" priority="1" title="Amon: mc" uid="8e09deea-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab117b8-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="Amon: ta" uid="8e09e098-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab8fa0a-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="Amon: ua" uid="8e09e232-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="babb4b34-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="Amon: va" uid="8e09e3d6-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="babbb25e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hur" mip="VIACSAB" priority="1" title="Amon: hur" uid="8e09e570-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="baafe578-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="Lmon: mrsos" uid="8e09e714-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab1c85c-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrfso" mip="VIACSAB" priority="1" title="Lmon: mrfso" uid="8e09e8ae-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab1688a-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrros" mip="VIACSAB" priority="1" title="Lmon: mrros" uid="8e09ea5c-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab19ff8-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="Lmon: mrro" uid="8e09ecfa-33eb-11e7-80d4-5404a60d96b5" vgid="6d996182-5979-11e6-8fd9-ac72891c3257" vid="bab17a6e-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFrac" mip="VIACSAB" priority="1" title="Lmon: treeFrac" uid="8e09eee4-33eb-11e7-80d4-5404a60d96b5" vgid="6d99677c-5979-11e6-8fd9-ac72891c3257" vid="babab3ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="grassFrac" mip="VIACSAB" priority="1" title="Lmon: grassFrac" uid="8e09f088-33eb-11e7-80d4-5404a60d96b5" vgid="6d99677c-5979-11e6-8fd9-ac72891c3257" vid="baae910a-e5dd-11e5-8482-ac72891c3257"/>
<item label="shrubFrac" mip="VIACSAB" priority="1" title="Lmon: shrubFrac" uid="8e09f22c-33eb-11e7-80d4-5404a60d96b5" vgid="6d99677c-5979-11e6-8fd9-ac72891c3257" vid="bab76b9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="baresoilFrac" mip="VIACSAB" priority="1" title="Lmon: baresoilFrac" uid="8e09f3c6-33eb-11e7-80d4-5404a60d96b5" vgid="6d99677c-5979-11e6-8fd9-ac72891c3257" vid="baa84fd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="day: hurs" uid="8e09f592-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="5a070350-c77d-11e6-8a33-5404a60d96b5"/>
<item label="hursmax" mip="VIACSAB" priority="1" title="day: hursmax" uid="8e09f736-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="5a071ff2-c77d-11e6-8a33-5404a60d96b5"/>
<item label="snc" mip="VIACSAB" priority="1" title="day: snc" uid="8e09f8da-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab7c75c-e5dd-11e5-8482-ac72891c3257"/>
<item label="snw" mip="VIACSAB" priority="1" title="day: snw" uid="8e09fa74-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab820b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="day: prc" uid="8e09fc18-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab3fde8-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="day: prsn" uid="8e09fdd0-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab43b50-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="day: uas" uid="8e09ff6a-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="babb6cea-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="day: vas" uid="8e0a0104-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="babbd25c-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWindmax" mip="VIACSAB" priority="1" title="day: sfcWindmax" uid="8e0a02a8-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab709de-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="day: rlds" uid="8e0a0442-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab538d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="day: rlus" uid="8e0a05dc-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab57f92-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="day: rsus" uid="8e0a0780-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab65ad4-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="3hr: hfss" uid="8e0a0910-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="baaf8452-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="3hr: uas" uid="8e0a0ab4-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="babb5db8-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="3hr: vas" uid="8e0a0c44-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="babbdec8-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="3hr: ps" uid="8e0a0de8-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab47354-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdsdiff" mip="VIACSAB" priority="1" title="3hr: rsdsdiff" uid="8e0a0f96-33eb-11e7-80d4-5404a60d96b5" vgid="6d996cfe-5979-11e6-8fd9-ac72891c3257" vid="bab61768-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbfe" mip="VIACSAB" priority="1" title="Omon: intpbfe" uid="8e0a1176-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa08984-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbsi" mip="VIACSAB" priority="1" title="Omon: intpbsi" uid="8e0a131a-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa08f6a-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpn2" mip="VIACSAB" priority="1" title="Omon: intpn2" uid="8e0a14e6-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa0fe00-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsn" mip="VIACSAB" priority="1" title="Omon: fsn" uid="8e0a168a-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa10292-e5dd-11e5-8482-ac72891c3257"/>
<item label="frn" mip="VIACSAB" priority="1" title="Omon: frn" uid="8e0a184c-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa106c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="fsfe" mip="VIACSAB" priority="1" title="Omon: fsfe" uid="8e0a19e6-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa10aee-e5dd-11e5-8482-ac72891c3257"/>
<item label="frfe" mip="VIACSAB" priority="1" title="Omon: frfe" uid="8e0a1b80-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa10f12-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Omon: prsn" uid="8e0a1d60-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa61c28-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfpr" mip="VIACSAB" priority="1" title="Omon: vsfpr" uid="8e0a1f0e-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa649d2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfevap" mip="VIACSAB" priority="1" title="Omon: vsfevap" uid="8e0a2134-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa64df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfriver" mip="VIACSAB" priority="1" title="Omon: vsfriver" uid="8e0a22d8-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa65224-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfsit" mip="VIACSAB" priority="1" title="Omon: vsfsit" uid="8e0a2472-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa65648-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsf" mip="VIACSAB" priority="1" title="Omon: vsf" uid="8e0a260c-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa65a76-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfcorr" mip="VIACSAB" priority="1" title="Omon: vsfcorr" uid="8e0a27a6-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa65eae-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfdsi" mip="VIACSAB" priority="1" title="Omon: sfdsi" uid="8e0a294a-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa662fa-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfriver" mip="VIACSAB" priority="1" title="Omon: sfriver" uid="8e0a2ae4-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa66746-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfgeou" mip="VIACSAB" priority="1" title="Omon: hfgeou" uid="8e0a2c7e-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa67344-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfrainds" mip="VIACSAB" priority="1" title="Omon: hfrainds" uid="8e0a2e22-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa67768-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfevapds" mip="VIACSAB" priority="1" title="Omon: hfevapds" uid="8e0a2fd0-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baa67b8c-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="3hr: pr" uid="8e0a32fa-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="bab3c904-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="3hr: tas" uid="8e0a349e-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="bab91b20-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="3hr: hfls" uid="8e0a3638-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baaefbcc-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="3hr: hfss" uid="8e0a37c8-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="baaf8452-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="3hr: rlds" uid="8e0a3962-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="bab52b5a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="3hr: rlus" uid="8e0a3b74-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="bab59202-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="3hr: rsds" uid="8e0a3d18-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="bab5df78-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="3hr: rsus" uid="8e0a3eb2-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="bab65138-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="3hr: uas" uid="8e0a4042-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="babb5db8-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="3hr: vas" uid="8e0a41dc-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="babbdec8-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="3hr: huss" uid="8e0a4376-33eb-11e7-80d4-5404a60d96b5" vgid="6d997262-5979-11e6-8fd9-ac72891c3257" vid="bab034a6-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e0a45ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d9977d0-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e0a4790-33eb-11e7-80d4-5404a60d96b5" vgid="6d9977d0-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e0a492a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9977d0-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e0a4ac4-33eb-11e7-80d4-5404a60d96b5" vgid="6d9977d0-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissic" mip="VIACSAB" priority="1" title="Oyr: dissic" uid="8e0a4c90-33eb-11e7-80d4-5404a60d96b5" vgid="6d997d34-5979-11e6-8fd9-ac72891c3257" vid="ba9da994-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissoc" mip="VIACSAB" priority="1" title="Oyr: dissoc" uid="8e0a4e2a-33eb-11e7-80d4-5404a60d96b5" vgid="6d997d34-5979-11e6-8fd9-ac72891c3257" vid="ba9dbc04-e5dd-11e5-8482-ac72891c3257"/>
<item label="no3" mip="VIACSAB" priority="1" title="Oyr: no3" uid="8e0a4fce-33eb-11e7-80d4-5404a60d96b5" vgid="6d997d34-5979-11e6-8fd9-ac72891c3257" vid="ba9e1d16-e5dd-11e5-8482-ac72891c3257"/>
<item label="nh4" mip="VIACSAB" priority="1" title="Oyr: nh4" uid="8e0a5168-33eb-11e7-80d4-5404a60d96b5" vgid="6d997d34-5979-11e6-8fd9-ac72891c3257" vid="ba9e2158-e5dd-11e5-8482-ac72891c3257"/>
<item label="po4" mip="VIACSAB" priority="1" title="Oyr: po4" uid="8e0a5302-33eb-11e7-80d4-5404a60d96b5" vgid="6d997d34-5979-11e6-8fd9-ac72891c3257" vid="ba9e25a4-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlmisc" mip="VIACSAB" priority="1" title="Oyr: chlmisc" uid="8e0a549c-33eb-11e7-80d4-5404a60d96b5" vgid="6d997d34-5979-11e6-8fd9-ac72891c3257" vid="ba9e4b7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="graz" mip="VIACSAB" priority="1" title="Oyr: graz" uid="8e0a56a4-33eb-11e7-80d4-5404a60d96b5" vgid="6d997d34-5979-11e6-8fd9-ac72891c3257" vid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbfe" mip="VIACSAB" priority="1" title="Omon: intpbfe" uid="8e0a5898-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="baa08984-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbsi" mip="VIACSAB" priority="1" title="Omon: intpbsi" uid="8e0a5a32-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="baa08f6a-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpcalcite" mip="VIACSAB" priority="1" title="Omon: intpcalcite" uid="8e0a5bcc-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="baa0944c-e5dd-11e5-8482-ac72891c3257"/>
<item label="intparag" mip="VIACSAB" priority="1" title="Omon: intparag" uid="8e0a5d66-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="baa0999c-e5dd-11e5-8482-ac72891c3257"/>
<item label="epc100" mip="VIACSAB" priority="1" title="Omon: epc100" uid="8e0a5f00-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="5a35b628-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epfe100" mip="VIACSAB" priority="1" title="Omon: epfe100" uid="8e0a60c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="5a35e288-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epsi100" mip="VIACSAB" priority="1" title="Omon: epsi100" uid="8e0a6266-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="5a35f1ba-c77d-11e6-8a33-5404a60d96b5"/>
<item label="epcalc100" mip="VIACSAB" priority="1" title="Omon: epcalc100" uid="8e0a6400-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="5a3602cc-c77d-11e6-8a33-5404a60d96b5"/>
<item label="eparag100" mip="VIACSAB" priority="1" title="Omon: eparag100" uid="8e0a659a-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="5a361136-c77d-11e6-8a33-5404a60d96b5"/>
<item label="intdic" mip="VIACSAB" priority="1" title="Omon: intdic" uid="8e0a673e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="c91e4b7c-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="fgdms" mip="VIACSAB" priority="1" title="Omon: fgdms" uid="8e0a68ec-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="baa0e906-e5dd-11e5-8482-ac72891c3257"/>
<item label="frfe" mip="VIACSAB" priority="1" title="Omon: frfe" uid="8e0a6ab8-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="baa10f12-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfpr" mip="VIACSAB" priority="1" title="Omon: vsfpr" uid="8e0a6c8e-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="baa649d2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfevap" mip="VIACSAB" priority="1" title="Omon: vsfevap" uid="8e0a6e28-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="baa64df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vsfriver" mip="VIACSAB" priority="1" title="Omon: vsfriver" uid="8e0a6fb8-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="baa65224-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="day: pr" uid="8e0a7152-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="bab3d692-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="day: mrro" uid="8e0a7332-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="bab17cb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="day: rlds" uid="8e0a74cc-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="bab538d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="day: rlus" uid="8e0a76a2-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="bab57f92-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="day: rsds" uid="8e0a7846-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="bab5ecd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="day: rsus" uid="8e0a79f4-33eb-11e7-80d4-5404a60d96b5" vgid="6d9982f2-5979-11e6-8fd9-ac72891c3257" vid="bab65ad4-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="Amon: clt" uid="8e0a7bfc-33eb-11e7-80d4-5404a60d96b5" vgid="6d998838-5979-11e6-8fd9-ac72891c3257" vid="baaad7e0-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbfe" mip="VIACSAB" priority="1" title="Omon: intpbfe" uid="8e0a7e5e-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa08984-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpbsi" mip="VIACSAB" priority="1" title="Omon: intpbsi" uid="8e0a7ff8-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa08f6a-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpcalcite" mip="VIACSAB" priority="1" title="Omon: intpcalcite" uid="8e0a8192-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa0944c-e5dd-11e5-8482-ac72891c3257"/>
<item label="intparag" mip="VIACSAB" priority="1" title="Omon: intparag" uid="8e0a8322-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa0999c-e5dd-11e5-8482-ac72891c3257"/>
<item label="epcalc100" mip="VIACSAB" priority="1" title="Omon: epcalc100" uid="8e0a84bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="5a3602cc-c77d-11e6-8a33-5404a60d96b5"/>
<item label="eparag100" mip="VIACSAB" priority="1" title="Omon: eparag100" uid="8e0a8656-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="5a361136-c77d-11e6-8a33-5404a60d96b5"/>
<item label="frn" mip="VIACSAB" priority="1" title="Omon: frn" uid="8e0a884a-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa106c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="zsatcalc" mip="VIACSAB" priority="1" title="Omon: zsatcalc" uid="8e0a8a52-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa11b92-e5dd-11e5-8482-ac72891c3257"/>
<item label="zsatarag" mip="VIACSAB" priority="1" title="Omon: zsatarag" uid="8e0a8bf6-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa11fb6-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e0a8d90-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetaoga" mip="VIACSAB" priority="1" title="Omon: thetaoga" uid="8e0a8f2a-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa52138-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="VIACSAB" priority="1" title="Omon: so" uid="8e0a90c4-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsntds" mip="VIACSAB" priority="1" title="Omon: rsntds" uid="8e0a9290-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa6b66a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauuo" mip="VIACSAB" priority="1" title="Omon: tauuo" uid="8e0a942a-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa6cf38-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauvo" mip="VIACSAB" priority="1" title="Omon: tauvo" uid="8e0a95ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa6d366-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauucorr" mip="VIACSAB" priority="1" title="Omon: tauucorr" uid="8e0a9768-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa6d78a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauvcorr" mip="VIACSAB" priority="1" title="Omon: tauvcorr" uid="8e0a9916-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baa6dbb8-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="day: tasmin" uid="8e0a9ac4-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab95fae-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="day: tasmax" uid="8e0a9c68-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="day: tas" uid="8e0a9e16-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="day: rlds" uid="8e0a9ff6-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab538d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="day: rlus" uid="8e0aa190-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab57f92-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="day: rsds" uid="8e0aa32a-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab5ecd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="day: rsus" uid="8e0aa4c4-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab65ad4-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="day: ta" uid="8e0aa65e-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab902e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="3hr: tas" uid="8e0aa816-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab91b20-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="3hr: rlds" uid="8e0aa9ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab52b5a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="VIACSAB" priority="1" title="3hr: rlus" uid="8e0aab5e-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab59202-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="3hr: rsds" uid="8e0aacf8-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab5df78-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="VIACSAB" priority="1" title="3hr: rsus" uid="8e0aae88-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab65138-e5dd-11e5-8482-ac72891c3257"/>
<item label="tso" mip="VIACSAB" priority="1" title="3hr: tso" uid="8e0ab022-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="babb20b4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rldscs" mip="VIACSAB" priority="1" title="3hr: rldscs" uid="8e0ab1bc-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab55f12-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdscs" mip="VIACSAB" priority="1" title="3hr: rsdscs" uid="8e0ab356-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab612cc-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsuscs" mip="VIACSAB" priority="1" title="3hr: rsuscs" uid="8e0ab4f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="bab66e70-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="3hr: clt" uid="8e0ab68a-33eb-11e7-80d4-5404a60d96b5" vgid="6d998d92-5979-11e6-8fd9-ac72891c3257" vid="baaad560-e5dd-11e5-8482-ac72891c3257"/>
<item label="fco2antt" mip="VIACSAB" priority="1" title="Amon: fco2antt" uid="8e0ab8b0-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baaddada-e5dd-11e5-8482-ac72891c3257"/>
<item label="fco2fos" mip="VIACSAB" priority="1" title="Amon: fco2fos" uid="8e0aba68-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baade44e-e5dd-11e5-8482-ac72891c3257"/>
<item label="fco2nat" mip="VIACSAB" priority="1" title="Amon: fco2nat" uid="8e0abc16-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baaded68-e5dd-11e5-8482-ac72891c3257"/>
<item label="burntArea" mip="VIACSAB" priority="1" title="Lmon: burntArea" uid="8e0abf2c-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa88256-e5dd-11e5-8482-ac72891c3257"/>
<item label="cVeg" mip="VIACSAB" priority="1" title="Lmon: cVeg" uid="8e0ac0f8-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa90258-e5dd-11e5-8482-ac72891c3257"/>
<item label="cLitter" mip="VIACSAB" priority="1" title="Lmon: cLitter" uid="8e0ac2ba-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8b67c-e5dd-11e5-8482-ac72891c3257"/>
<item label="cProduct" mip="VIACSAB" priority="1" title="Lmon: cProduct" uid="8e0ac49a-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8d49a-e5dd-11e5-8482-ac72891c3257"/>
<item label="gpp" mip="VIACSAB" priority="1" title="Lmon: gpp" uid="8e0ac65c-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baae7800-e5dd-11e5-8482-ac72891c3257"/>
<item label="ra" mip="VIACSAB" priority="1" title="Lmon: ra" uid="8e0ac814-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab4c3ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="npp" mip="VIACSAB" priority="1" title="Lmon: npp" uid="8e0ac9cc-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab26690-e5dd-11e5-8482-ac72891c3257"/>
<item label="rh" mip="VIACSAB" priority="1" title="Lmon: rh" uid="8e0acb98-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab4f95a-e5dd-11e5-8482-ac72891c3257"/>
<item label="fFire" mip="VIACSAB" priority="1" title="Lmon: fFire" uid="8e0acd8c-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baad7f22-e5dd-11e5-8482-ac72891c3257"/>
<item label="fGrazing" mip="VIACSAB" priority="1" title="Lmon: fGrazing" uid="8e0acf44-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baad86fc-e5dd-11e5-8482-ac72891c3257"/>
<item label="fHarvest" mip="VIACSAB" priority="1" title="Lmon: fHarvest" uid="8e0ad0fc-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baad8e7c-e5dd-11e5-8482-ac72891c3257"/>
<item label="nbp" mip="VIACSAB" priority="1" title="Lmon: nbp" uid="8e0ad2dc-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab23634-e5dd-11e5-8482-ac72891c3257"/>
<item label="fVegLitter" mip="VIACSAB" priority="1" title="Lmon: fVegLitter" uid="8e0ad49e-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baada4ca-e5dd-11e5-8482-ac72891c3257"/>
<item label="fLitterSoil" mip="VIACSAB" priority="1" title="Lmon: fLitterSoil" uid="8e0ad692-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baad95d4-e5dd-11e5-8482-ac72891c3257"/>
<item label="fVegSoil" mip="VIACSAB" priority="1" title="Lmon: fVegSoil" uid="8e0ad85e-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baadac22-e5dd-11e5-8482-ac72891c3257"/>
<item label="cLeaf" mip="VIACSAB" priority="1" title="Lmon: cLeaf" uid="8e0ada20-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8aed4-e5dd-11e5-8482-ac72891c3257"/>
<item label="cRoot" mip="VIACSAB" priority="1" title="Lmon: cRoot" uid="8e0adc0a-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8dc06-e5dd-11e5-8482-ac72891c3257"/>
<item label="cCwd" mip="VIACSAB" priority="1" title="Lmon: cCwd" uid="8e0addf4-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8a740-e5dd-11e5-8482-ac72891c3257"/>
<item label="cLitterAbove" mip="VIACSAB" priority="1" title="Lmon: cLitterAbove" uid="8e0adfd4-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8be1a-e5dd-11e5-8482-ac72891c3257"/>
<item label="cLitterBelow" mip="VIACSAB" priority="1" title="Lmon: cLitterBelow" uid="8e0ae1be-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8c590-e5dd-11e5-8482-ac72891c3257"/>
<item label="cSoilFast" mip="VIACSAB" priority="1" title="Lmon: cSoilFast" uid="8e0ae376-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8eb2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="cSoilMedium" mip="VIACSAB" priority="1" title="Lmon: cSoilMedium" uid="8e0ae52e-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8f326-e5dd-11e5-8482-ac72891c3257"/>
<item label="cSoilSlow" mip="VIACSAB" priority="1" title="Lmon: cSoilSlow" uid="8e0ae6f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa8faf6-e5dd-11e5-8482-ac72891c3257"/>
<item label="landCoverFrac" mip="VIACSAB" priority="1" title="Lmon: landCoverFrac" uid="8e0ae89e-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab09a7c-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFracPrimDec" mip="VIACSAB" priority="1" title="Lmon: treeFracPrimDec" uid="8e0aea60-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bababb4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFracPrimEver" mip="VIACSAB" priority="1" title="Lmon: treeFracPrimEver" uid="8e0aec18-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="babac2c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFracSecDec" mip="VIACSAB" priority="1" title="Lmon: treeFracSecDec" uid="8e0aedd0-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="babaca24-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFracSecEver" mip="VIACSAB" priority="1" title="Lmon: treeFracSecEver" uid="8e0aef88-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="babad172-e5dd-11e5-8482-ac72891c3257"/>
<item label="c3PftFrac" mip="VIACSAB" priority="1" title="Lmon: c3PftFrac" uid="8e0af14a-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa897e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="c4PftFrac" mip="VIACSAB" priority="1" title="Lmon: c4PftFrac" uid="8e0af366-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="baa89f8e-e5dd-11e5-8482-ac72891c3257"/>
<item label="rGrowth" mip="VIACSAB" priority="1" title="Lmon: rGrowth" uid="8e0af5be-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab4b4a4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rMaint" mip="VIACSAB" priority="1" title="Lmon: rMaint" uid="8e0af78a-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab4bc2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="nppLeaf" mip="VIACSAB" priority="1" title="Lmon: nppLeaf" uid="8e0af94c-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab26e24-e5dd-11e5-8482-ac72891c3257"/>
<item label="nppWood" mip="VIACSAB" priority="1" title="Lmon: nppWood" uid="8e0afb04-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab27d2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="nppRoot" mip="VIACSAB" priority="1" title="Lmon: nppRoot" uid="8e0afcbc-33eb-11e7-80d4-5404a60d96b5" vgid="6d999846-5979-11e6-8fd9-ac72891c3257" vid="bab275d6-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="VIACSAB" priority="1" title="Amon: prsn" uid="8e0afee2-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="bab42b88-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="Amon: prc" uid="8e0b00a4-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="bab3f8a2-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsbl" mip="VIACSAB" priority="1" title="Amon: evspsbl" uid="8e0b025c-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="VIACSAB" priority="1" title="Amon: rlds" uid="8e0b041e-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdscs" mip="VIACSAB" priority="1" title="Amon: rsdscs" uid="8e0b05ea-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="bab607c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="prveg" mip="VIACSAB" priority="1" title="Lmon: prveg" uid="8e0b07ac-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="bab45658-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblveg" mip="VIACSAB" priority="1" title="Lmon: evspsblveg" uid="8e0b0964-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="baad6596-e5dd-11e5-8482-ac72891c3257"/>
<item label="evspsblsoi" mip="VIACSAB" priority="1" title="Lmon: evspsblsoi" uid="8e0b0b1c-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="baad5d9e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tran" mip="VIACSAB" priority="1" title="Lmon: tran" uid="8e0b0cd4-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="baba9752-e5dd-11e5-8482-ac72891c3257"/>
<item label="tsl" mip="VIACSAB" priority="1" title="Lmon: tsl" uid="8e0b0e8c-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="babb0732-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFrac" mip="VIACSAB" priority="1" title="Lmon: treeFrac" uid="8e0b104e-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="babab3ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="grassFrac" mip="VIACSAB" priority="1" title="Lmon: grassFrac" uid="8e0b1210-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="baae910a-e5dd-11e5-8482-ac72891c3257"/>
<item label="shrubFrac" mip="VIACSAB" priority="1" title="Lmon: shrubFrac" uid="8e0b13be-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="bab76b9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="pastureFrac" mip="VIACSAB" priority="1" title="Lmon: pastureFrac" uid="8e0b1580-33eb-11e7-80d4-5404a60d96b5" vgid="6d999eb8-5979-11e6-8fd9-ac72891c3257" vid="bab30988-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e0b17ce-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="Amon: ps" uid="8e0b1990-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="bab47b56-e5dd-11e5-8482-ac72891c3257"/>
<item label="uas" mip="VIACSAB" priority="1" title="Amon: uas" uid="8e0b1b48-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="babb67c2-e5dd-11e5-8482-ac72891c3257"/>
<item label="vas" mip="VIACSAB" priority="1" title="Amon: vas" uid="8e0b1d00-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="babbcd34-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="Amon: sfcWind" uid="8e0b1eb8-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="bab6f494-e5dd-11e5-8482-ac72891c3257"/>
<item label="hurs" mip="VIACSAB" priority="1" title="Amon: hurs" uid="8e0b2070-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="baaff41e-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="Amon: huss" uid="8e0b2228-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="bab01dfe-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="Lmon: mrsos" uid="8e0b2408-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="bab1c85c-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrfso" mip="VIACSAB" priority="1" title="Lmon: mrfso" uid="8e0b25c0-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="bab1688a-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrros" mip="VIACSAB" priority="1" title="Lmon: mrros" uid="8e0b27a0-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="bab19ff8-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="Lmon: mrro" uid="8e0b2976-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="bab17a6e-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrlsl" mip="VIACSAB" priority="1" title="Lmon: mrlsl" uid="8e0b2b42-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="bab17032-e5dd-11e5-8482-ac72891c3257"/>
<item label="cropFrac" mip="VIACSAB" priority="1" title="Lmon: cropFrac" uid="8e0b2e80-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="baab87f8-e5dd-11e5-8482-ac72891c3257"/>
<item label="lai" mip="VIACSAB" priority="1" title="Lmon: lai" uid="8e0b3164-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a458-5979-11e6-8fd9-ac72891c3257" vid="bab0919e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="Amon: tas" uid="8e0b348e-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a9da-5979-11e6-8fd9-ac72891c3257" vid="bab9237c-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="VIACSAB" priority="1" title="Amon: tasmin" uid="8e0b3768-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a9da-5979-11e6-8fd9-ac72891c3257" vid="bab955ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="VIACSAB" priority="1" title="Amon: tasmax" uid="8e0b3a38-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a9da-5979-11e6-8fd9-ac72891c3257" vid="bab942a8-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="Amon: pr" uid="8e0b3cfe-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a9da-5979-11e6-8fd9-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="Amon: rsds" uid="8e0b3fd8-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a9da-5979-11e6-8fd9-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="Amon: clt" uid="8e0b4294-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a9da-5979-11e6-8fd9-ac72891c3257" vid="baaad7e0-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrso" mip="VIACSAB" priority="1" title="Lmon: mrso" uid="8e0b45f0-33eb-11e7-80d4-5404a60d96b5" vgid="6d99a9da-5979-11e6-8fd9-ac72891c3257" vid="bab1a782-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2min" mip="VIACSAB" priority="1" title="Omon: o2min" uid="8e0b4960-33eb-11e7-80d4-5404a60d96b5" vgid="6d99af52-5979-11e6-8fd9-ac72891c3257" vid="baa11336-e5dd-11e5-8482-ac72891c3257"/>
<item label="zo2min" mip="VIACSAB" priority="1" title="Omon: zo2min" uid="8e0b4c62-33eb-11e7-80d4-5404a60d96b5" vgid="6d99af52-5979-11e6-8fd9-ac72891c3257" vid="baa11764-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotst" mip="VIACSAB" priority="1" title="Omon: mlotst" uid="8e0b4f32-33eb-11e7-80d4-5404a60d96b5" vgid="6d99af52-5979-11e6-8fd9-ac72891c3257" vid="baa57688-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="day: huss" uid="8e0b523e-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab0238a-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="VIACSAB" priority="1" title="day: psl" uid="8e0b5432-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab491f4-e5dd-11e5-8482-ac72891c3257"/>
<item label="sfcWind" mip="VIACSAB" priority="1" title="day: sfcWind" uid="8e0b55f4-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab6fe58-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="day: mrsos" uid="8e0b57ac-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab1ca14-e5dd-11e5-8482-ac72891c3257"/>
<item label="hursmin" mip="VIACSAB" priority="1" title="day: hursmin" uid="8e0b5964-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="5a0711f6-c77d-11e6-8a33-5404a60d96b5"/>
<item label="clt" mip="VIACSAB" priority="1" title="day: clt" uid="8e0b5b26-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="baaace4e-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="VIACSAB" priority="1" title="day: mrro" uid="8e0b5cf2-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab17cb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="day: hfls" uid="8e0b5ed2-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="baaf0a9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="VIACSAB" priority="1" title="day: hfss" uid="8e0b6102-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="baaf91cc-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="VIACSAB" priority="1" title="3hr: pr" uid="8e0b63b4-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab3c904-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="VIACSAB" priority="1" title="3hr: tas" uid="8e0b6670-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab91b20-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="VIACSAB" priority="1" title="3hr: hfls" uid="8e0b692c-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="baaefbcc-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="VIACSAB" priority="1" title="3hr: rsds" uid="8e0b6ba2-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab5df78-e5dd-11e5-8482-ac72891c3257"/>
<item label="huss" mip="VIACSAB" priority="1" title="3hr: huss" uid="8e0b6d6e-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab034a6-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="VIACSAB" priority="1" title="3hr: mrsos" uid="8e0b6f26-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab1c668-e5dd-11e5-8482-ac72891c3257"/>
<item label="prc" mip="VIACSAB" priority="1" title="3hr: prc" uid="8e0b70de-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="bab40c20-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="VIACSAB" priority="1" title="3hr: clt" uid="8e0b72fa-33eb-11e7-80d4-5404a60d96b5" vgid="6d99b4ca-5979-11e6-8fd9-ac72891c3257" vid="baaad560-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="VIACSAB" priority="1" title="6hrLev: ta" uid="8e0b750c-33eb-11e7-80d4-5404a60d96b5" vgid="6d99ba88-5979-11e6-8fd9-ac72891c3257" vid="bab8f686-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="6hrLev: ua" uid="8e0b76f6-33eb-11e7-80d4-5404a60d96b5" vgid="6d99ba88-5979-11e6-8fd9-ac72891c3257" vid="babb47a6-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="6hrLev: va" uid="8e0b7980-33eb-11e7-80d4-5404a60d96b5" vgid="6d99ba88-5979-11e6-8fd9-ac72891c3257" vid="babbaebc-e5dd-11e5-8482-ac72891c3257"/>
<item label="hus" mip="VIACSAB" priority="1" title="6hrLev: hus" uid="8e0b7b4c-33eb-11e7-80d4-5404a60d96b5" vgid="6d99ba88-5979-11e6-8fd9-ac72891c3257" vid="bab009cc-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="VIACSAB" priority="1" title="6hrLev: ps" uid="8e0b7d04-33eb-11e7-80d4-5404a60d96b5" vgid="6d99ba88-5979-11e6-8fd9-ac72891c3257" vid="bab46b70-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissic" mip="VIACSAB" priority="1" title="Oyr: dissic" uid="8e0b7ef8-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9da994-e5dd-11e5-8482-ac72891c3257"/>
<item label="dissoc" mip="VIACSAB" priority="1" title="Oyr: dissoc" uid="8e0b80c4-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9dbc04-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiat" mip="VIACSAB" priority="1" title="Oyr: phydiat" uid="8e0b8286-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9ddd7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="phydiaz" mip="VIACSAB" priority="1" title="Oyr: phydiaz" uid="8e0b843e-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9de1c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phycalc" mip="VIACSAB" priority="1" title="Oyr: phycalc" uid="8e0b8600-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9de666-e5dd-11e5-8482-ac72891c3257"/>
<item label="phymisc" mip="VIACSAB" priority="1" title="Oyr: phymisc" uid="8e0b87cc-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9defe4-e5dd-11e5-8482-ac72891c3257"/>
<item label="zmicro" mip="VIACSAB" priority="1" title="Oyr: zmicro" uid="8e0b89ac-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="c922e600-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="zmeso" mip="VIACSAB" priority="1" title="Oyr: zmeso" uid="8e0b8b8c-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="c922fcda-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="expc" mip="VIACSAB" priority="1" title="Oyr: expc" uid="8e0b8d8a-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9ea4e8-e5dd-11e5-8482-ac72891c3257"/>
<item label="expn" mip="VIACSAB" priority="1" title="Oyr: expn" uid="8e0b8f4c-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9ea916-e5dd-11e5-8482-ac72891c3257"/>
<item label="graz" mip="VIACSAB" priority="1" title="Oyr: graz" uid="8e0b9104-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9f0e4c-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="VIACSAB" priority="1" title="Omon: o2" uid="8e0b92c6-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c014-5979-11e6-8fd9-ac72891c3257" vid="ba9f9e7a-e5dd-11e5-8482-ac72891c3257"/>
<item label="thetao" mip="VIACSAB" priority="1" title="Omon: thetao" uid="8e0b94f6-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c5be-5979-11e6-8fd9-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="intpp" mip="VIACSAB" priority="1" title="Omon: intpp" uid="8e0b96e0-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c5be-5979-11e6-8fd9-ac72891c3257" vid="baa054f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Omon: phyc" uid="8e0b98ca-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c5be-5979-11e6-8fd9-ac72891c3257" vid="ba9f5398-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Omon: phypico" uid="8e0b9aa0-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c5be-5979-11e6-8fd9-ac72891c3257" vid="ba9f792c-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Omon: zooc" uid="8e0b9c58-33eb-11e7-80d4-5404a60d96b5" vgid="6d99c5be-5979-11e6-8fd9-ac72891c3257" vid="ba9f57bc-e5dd-11e5-8482-ac72891c3257"/>
<item label="phyc" mip="VIACSAB" priority="1" title="Oyr: phyc" uid="8e0b9ee2-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9dc05a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zooc" mip="VIACSAB" priority="1" title="Oyr: zooc" uid="8e0ba0ae-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9dc53c-e5dd-11e5-8482-ac72891c3257"/>
<item label="bacc" mip="VIACSAB" priority="1" title="Oyr: bacc" uid="8e0ba270-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9dcab4-e5dd-11e5-8482-ac72891c3257"/>
<item label="detoc" mip="VIACSAB" priority="1" title="Oyr: detoc" uid="8e0ba432-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9dcf28-e5dd-11e5-8482-ac72891c3257"/>
<item label="phypico" mip="VIACSAB" priority="1" title="Oyr: phypico" uid="8e0ba5ea-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9deb2a-e5dd-11e5-8482-ac72891c3257"/>
<item label="chl" mip="VIACSAB" priority="1" title="Oyr: chl" uid="8e0ba7ac-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9e3274-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiat" mip="VIACSAB" priority="1" title="Oyr: chldiat" uid="8e0ba978-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9e36b6-e5dd-11e5-8482-ac72891c3257"/>
<item label="chldiaz" mip="VIACSAB" priority="1" title="Oyr: chldiaz" uid="8e0bab4e-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9e3ae4-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlcalc" mip="VIACSAB" priority="1" title="Oyr: chlcalc" uid="8e0bad06-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9e3f08-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlpico" mip="VIACSAB" priority="1" title="Oyr: chlpico" uid="8e0baebe-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9e4336-e5dd-11e5-8482-ac72891c3257"/>
<item label="chlmisc" mip="VIACSAB" priority="1" title="Oyr: chlmisc" uid="8e0bb080-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9e4b7e-e5dd-11e5-8482-ac72891c3257"/>
<item label="pp" mip="VIACSAB" priority="1" title="Oyr: pp" uid="8e0bb2f6-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9e8a26-e5dd-11e5-8482-ac72891c3257"/>
<item label="pnitrate" mip="VIACSAB" priority="1" title="Oyr: pnitrate" uid="8e0bb4c2-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="ba9e8fb2-e5dd-11e5-8482-ac72891c3257"/>
<item label="pdi" mip="VIACSAB" priority="1" title="Oyr: pdi" uid="8e0bb684-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="c925ef58-c5e8-11e6-84e6-5404a60d96b5"/>
<item label="ts" mip="VIACSAB" priority="1" title="Amon: ts" uid="8e0bb878-33eb-11e7-80d4-5404a60d96b5" vgid="6d99cb36-5979-11e6-8fd9-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="VIACSAB" priority="1" title="6hrLev: ua" uid="8e0bba76-33eb-11e7-80d4-5404a60d96b5" vgid="6d99d07c-5979-11e6-8fd9-ac72891c3257" vid="babb47a6-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="VIACSAB" priority="1" title="6hrLev: va" uid="8e0bbc42-33eb-11e7-80d4-5404a60d96b5" vgid="6d99d07c-5979-11e6-8fd9-ac72891c3257" vid="babbaebc-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="VIACSAB" priority="1" title="Omon: uo" uid="8e0bbe54-33eb-11e7-80d4-5404a60d96b5" vgid="6d99d5a4-5979-11e6-8fd9-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="VIACSAB" priority="1" title="Omon: vo" uid="8e0bc020-33eb-11e7-80d4-5404a60d96b5" vgid="6d99d5a4-5979-11e6-8fd9-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfx" mip="VIACSAB" priority="1" title="Omon: hfx" uid="8e0bc1f6-33eb-11e7-80d4-5404a60d96b5" vgid="6d99d5a4-5979-11e6-8fd9-ac72891c3257" vid="baa5e2e4-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfy" mip="VIACSAB" priority="1" title="Omon: hfy" uid="8e0bc4e4-33eb-11e7-80d4-5404a60d96b5" vgid="6d99d5a4-5979-11e6-8fd9-ac72891c3257" vid="baa5e758-e5dd-11e5-8482-ac72891c3257"/>
<item label="mfo" mip="VIACSAB" priority="1" title="Omon: mfo" uid="8e0bc7c8-33eb-11e7-80d4-5404a60d96b5" vgid="6d99d5a4-5979-11e6-8fd9-ac72891c3257" vid="baa60bf2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rtmt" mip="CMIP" priority="1" title="ESMVal: Amon.rtmt" uid="9127380c-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab6a91c-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauv" mip="CMIP" priority="1" title="ESMVal: Amon.tauv" uid="91273e06-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab9888a-e5dd-11e5-8482-ac72891c3257"/>
<item label="cropFrac" mip="CMIP" priority="1" title="ESMVal: Lmon.cropFrac" uid="9127419e-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baab87f8-e5dd-11e5-8482-ac72891c3257"/>
<item label="siconc" mip="CMIP" priority="1" title="ESMVal: SImon.siconc" uid="91274586-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="71190054-faa7-11e6-bfb7-ac72891c3257"/>
<item label="rlut" mip="CMIP" priority="1" title="ESMVal: day.rlut" uid="9127d8c0-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab59c66-e5dd-11e5-8482-ac72891c3257"/>
<item label="chl" mip="CMIP" priority="1" title="ESMVal: Omon.chl" uid="9127dd52-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="ba9fb75c-e5dd-11e5-8482-ac72891c3257"/>
<item label="hur" mip="CMIP" priority="1" title="ESMVal: Amon.hur" uid="9127e108-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baafe578-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="CMIP" priority="1" title="ESMVal: 3hr.mrsos" uid="9127e4f0-33eb-11e7-80d4-5404a60d96b5" vgid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" vid="bab1c668-e5dd-11e5-8482-ac72891c3257"/>
<item label="o2" mip="CMIP" priority="1" title="ESMVal: Omon.o2" uid="9127e8a6-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="ba9f9e7a-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsofc" mip="CMIP" priority="1" title="ESMVal: fx.mrsofc" uid="9127ec52-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab1c08c-e5dd-11e5-8482-ac72891c3257"/>
<item label="areacella" mip="CMIP" priority="1" title="ESMVal: fx.areacella" uid="9127eff4-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa83a12-e5dd-11e5-8482-ac72891c3257"/>
<item label="tos" mip="CMIP" priority="1" title="ESMVal: Omon.tos" uid="9127f382-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa52de0-e5dd-11e5-8482-ac72891c3257"/>
<item label="baresoilFrac" mip="CMIP" priority="1" title="ESMVal: Lmon.baresoilFrac" uid="9127f7e2-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa84fd4-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsus" mip="CMIP" priority="1" title="ESMVal: 3hr.rsus" uid="9127fb98-33eb-11e7-80d4-5404a60d96b5" vgid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" vid="bab65138-e5dd-11e5-8482-ac72891c3257"/>
<item label="clivi" mip="CMIP" priority="1" title="ESMVal: Amon.clivi" uid="9127ff3a-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baaa9852-e5dd-11e5-8482-ac72891c3257"/>
<item label="uo" mip="CMIP" priority="1" title="ESMVal: Omon.uo" uid="912802c8-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa586e6-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdscs" mip="CMIP" priority="1" title="ESMVal: Amon.rsdscs" uid="91280660-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab607c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="clwvi" mip="CMIP" priority="1" title="ESMVal: Amon.clwvi" uid="91280a16-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baab1818-e5dd-11e5-8482-ac72891c3257"/>
<item label="cVeg" mip="CMIP" priority="1" title="ESMVal: Lmon.cVeg" uid="91280dae-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa90258-e5dd-11e5-8482-ac72891c3257"/>
<item label="mlotst" mip="CMIP" priority="1" title="ESMVal: Omon.mlotst" uid="9128113c-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa57688-e5dd-11e5-8482-ac72891c3257"/>
<item label="ch4" mip="CMIP" priority="1" title="ESMVal: Amon.ch4" uid="912814ca-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa9d642-e5dd-11e5-8482-ac72891c3257"/>
<item label="hus" mip="CMIP" priority="1" title="ESMVal: Amon.hus" uid="91281c72-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab00b98-e5dd-11e5-8482-ac72891c3257"/>
<item label="zg" mip="CMIP" priority="1" title="ESMVal: Amon.zg" uid="91282046-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="babd9ace-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="CMIP" priority="1" title="ESMVal: day.ua" uid="912823de-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="babb5084-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="CMIP" priority="1" title="ESMVal: day.pr" uid="91282776-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab3d692-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsdscs" mip="CMIP" priority="1" title="ESMVal: 3hr.rsdscs" uid="91282b04-33eb-11e7-80d4-5404a60d96b5" vgid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" vid="bab612cc-e5dd-11e5-8482-ac72891c3257"/>
<item label="lai" mip="CMIP" priority="1" title="ESMVal: Lmon.lai" uid="91282e9c-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab0919e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tauu" mip="CMIP" priority="1" title="ESMVal: Amon.tauu" uid="9128323e-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab96cc4-e5dd-11e5-8482-ac72891c3257"/>
<item label="clt" mip="CMIP" priority="1" title="ESMVal: Amon.clt" uid="912835fe-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baaad7e0-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="CMIP" priority="1" title="ESMVal: day.tas" uid="9128398c-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab928ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="rldscs" mip="CMIP" priority="1" title="ESMVal: Amon.rldscs" uid="91283d1a-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab5540e-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="CMIP" priority="1" title="ESMVal: 3hr.rlds" uid="91284134-33eb-11e7-80d4-5404a60d96b5" vgid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" vid="bab52b5a-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="CMIP" priority="1" title="ESMVal: Amon.rsds" uid="91284530-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab5e1b2-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsds" mip="CMIP" priority="1" title="ESMVal: 3hr.rsds" uid="912848f0-33eb-11e7-80d4-5404a60d96b5" vgid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" vid="bab5df78-e5dd-11e5-8482-ac72891c3257"/>
<item label="vo" mip="CMIP" priority="1" title="ESMVal: Omon.vo" uid="91284cba-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa58b1e-e5dd-11e5-8482-ac72891c3257"/>
<item label="pastureFrac" mip="CMIP" priority="1" title="ESMVal: Lmon.pastureFrac" uid="9128508e-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab30988-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlus" mip="CMIP" priority="1" title="ESMVal: 3hr.rlus" uid="912858a4-33eb-11e7-80d4-5404a60d96b5" vgid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" vid="bab59202-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsutcs" mip="CMIP" priority="1" title="ESMVal: Amon.rsutcs" uid="91285c5a-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab69c06-e5dd-11e5-8482-ac72891c3257"/>
<item label="so" mip="CMIP" priority="1" title="ESMVal: Omon.so" uid="91285ff2-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa5491a-e5dd-11e5-8482-ac72891c3257"/>
<item label="gpp" mip="CMIP" priority="1" title="ESMVal: Lmon.gpp" uid="912863a8-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baae7800-e5dd-11e5-8482-ac72891c3257"/>
<item label="grassFrac" mip="CMIP" priority="1" title="ESMVal: Lmon.grassFrac" uid="91286754-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baae910a-e5dd-11e5-8482-ac72891c3257"/>
<item label="o3" mip="CMIP" priority="1" title="ESMVal: Amon.o3" uid="91286aec-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="59fbf2a8-c77d-11e6-8a33-5404a60d96b5"/>
<item label="evspsbl" mip="CMIP" priority="1" title="ESMVal: Amon.evspsbl" uid="91286e98-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baad45c0-e5dd-11e5-8482-ac72891c3257"/>
<item label="snc" mip="CMIP" priority="1" title="ESMVal: day.snc" uid="91287230-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab7c75c-e5dd-11e5-8482-ac72891c3257"/>
<item label="sftlf" mip="CMIP" priority="1" title="ESMVal: fx.sftlf" uid="91287640-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab742c8-e5dd-11e5-8482-ac72891c3257"/>
<item label="psl" mip="CMIP" priority="1" title="ESMVal: Amon.psl" uid="91287a1e-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab48ce0-e5dd-11e5-8482-ac72891c3257"/>
<item label="ta" mip="CMIP" priority="1" title="ESMVal: Amon.ta" uid="91287df2-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab8fa0a-e5dd-11e5-8482-ac72891c3257"/>
<item label="ts" mip="CMIP" priority="1" title="ESMVal: Amon.ts" uid="912881b2-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="babaef0e-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfds" mip="CMIP" priority="1" title="ESMVal: Omon.hfds" uid="91288586-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa6c33a-e5dd-11e5-8482-ac72891c3257"/>
<item label="zos" mip="CMIP" priority="1" title="ESMVal: Omon.zos" uid="9128898c-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa507f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="CMIP" priority="1" title="ESMVal: Amon.tasmax" uid="91288d60-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab942a8-e5dd-11e5-8482-ac72891c3257"/>
<item label="fgco2" mip="CMIP" priority="1" title="ESMVal: Omon.fgco2" uid="91289576-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa0d420-e5dd-11e5-8482-ac72891c3257"/>
<item label="ps" mip="CMIP" priority="1" title="ESMVal: Amon.ps" uid="91289940-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab47b56-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlds" mip="CMIP" priority="1" title="ESMVal: Amon.rlds" uid="91289cce-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab52da8-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfls" mip="CMIP" priority="1" title="ESMVal: Amon.hfls" uid="9128a066-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baaefe2e-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsut" mip="CMIP" priority="1" title="ESMVal: Amon.rsut" uid="9128a3f4-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab68ebe-e5dd-11e5-8482-ac72891c3257"/>
<item label="hfss" mip="CMIP" priority="1" title="ESMVal: Amon.hfss" uid="9128a782-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baaf86a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="rlut" mip="CMIP" priority="1" title="ESMVal: Amon.rlut" uid="9128ab06-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab5aad0-e5dd-11e5-8482-ac72891c3257"/>
<item label="spco2" mip="CMIP" priority="1" title="ESMVal: Omon.spco2" uid="9128aeb2-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa0c7a0-e5dd-11e5-8482-ac72891c3257"/>
<item label="sisnmass" mip="CMIP" priority="1" title="ESMVal: SImon.sisnmass" uid="9128b240-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="713ed766-faa7-11e6-bfb7-ac72891c3257"/>
<item label="thetao" mip="CMIP" priority="1" title="ESMVal: Omon.thetao" uid="9128b5ec-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa51d00-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmax" mip="CMIP" priority="1" title="ESMVal: day.tasmax" uid="9128b984-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab94a50-e5dd-11e5-8482-ac72891c3257"/>
<item label="sos" mip="CMIP" priority="1" title="ESMVal: Omon.sos" uid="9128bd26-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa557f2-e5dd-11e5-8482-ac72891c3257"/>
<item label="areacello" mip="CMIP" priority="1" title="ESMVal: Ofx.areacello" uid="9128c0be-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa3ee94-e5dd-11e5-8482-ac72891c3257"/>
<item label="wap" mip="CMIP" priority="1" title="ESMVal: Amon.wap" uid="9128c44c-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="babd0906-e5dd-11e5-8482-ac72891c3257"/>
<item label="rldscs" mip="CMIP" priority="1" title="ESMVal: 3hr.rldscs" uid="9128cb54-33eb-11e7-80d4-5404a60d96b5" vgid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" vid="bab55f12-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="CMIP" priority="1" title="ESMVal: 3hr.pr" uid="9128cef6-33eb-11e7-80d4-5404a60d96b5" vgid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" vid="bab3c904-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrsos" mip="CMIP" priority="1" title="ESMVal: Lmon.mrsos" uid="9128d298-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab1c85c-e5dd-11e5-8482-ac72891c3257"/>
<item label="co2" mip="CMIP" priority="1" title="ESMVal: Amon.co2" uid="9128d626-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baab23da-e5dd-11e5-8482-ac72891c3257"/>
<item label="simass" mip="CMIP" priority="1" title="ESMVal: SImon.simass" uid="9128d9b4-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="714b603a-faa7-11e6-bfb7-ac72891c3257"/>
<item label="rlutcs" mip="CMIP" priority="1" title="ESMVal: Amon.rlutcs" uid="9128dd60-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab5bcdc-e5dd-11e5-8482-ac72891c3257"/>
<item label="prw" mip="CMIP" priority="1" title="ESMVal: Amon.prw" uid="9128e0f8-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab45df6-e5dd-11e5-8482-ac72891c3257"/>
<item label="prsn" mip="CMIP" priority="1" title="ESMVal: Amon.prsn" uid="9128e4a4-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab42b88-e5dd-11e5-8482-ac72891c3257"/>
<item label="ua" mip="CMIP" priority="1" title="ESMVal: Amon.ua" uid="9128e828-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="babb4b34-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="CMIP" priority="1" title="ESMVal: day.va" uid="9128ebc0-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="babbbbe6-e5dd-11e5-8482-ac72891c3257"/>
<item label="pr" mip="CMIP" priority="1" title="ESMVal: Amon.pr" uid="9128ef4e-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab3cb52-e5dd-11e5-8482-ac72891c3257"/>
<item label="shrubFrac" mip="CMIP" priority="1" title="ESMVal: Lmon.shrubFrac" uid="9128f2f0-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab76b9a-e5dd-11e5-8482-ac72891c3257"/>
<item label="tas" mip="CMIP" priority="1" title="ESMVal: Amon.tas" uid="9128f688-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab9237c-e5dd-11e5-8482-ac72891c3257"/>
<item label="treeFrac" mip="CMIP" priority="1" title="ESMVal: Lmon.treeFrac" uid="9128fa0c-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="babab3ae-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrro" mip="CMIP" priority="1" title="ESMVal: Lmon.mrro" uid="9128fd9a-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab17a6e-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="CMIP" priority="1" title="ESMVal: day.tasmin" uid="91290498-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab95fae-e5dd-11e5-8482-ac72891c3257"/>
<item label="nbp" mip="CMIP" priority="1" title="ESMVal: Lmon.nbp" uid="91290876-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab23634-e5dd-11e5-8482-ac72891c3257"/>
<item label="tasmin" mip="CMIP" priority="1" title="ESMVal: Amon.tasmin" uid="91290c0e-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab955ea-e5dd-11e5-8482-ac72891c3257"/>
<item label="talk" mip="CMIP" priority="1" title="ESMVal: Omon.talk" uid="91290f92-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="ba9f91f0-e5dd-11e5-8482-ac72891c3257"/>
<item label="va" mip="CMIP" priority="1" title="ESMVal: Amon.va" uid="91291334-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="babbb25e-e5dd-11e5-8482-ac72891c3257"/>
<item label="rsuscs" mip="CMIP" priority="1" title="ESMVal: 3hr.rsuscs" uid="912916cc-33eb-11e7-80d4-5404a60d96b5" vgid="b8257ed0-c16a-11e6-bb6a-ac72891c3257" vid="bab66e70-e5dd-11e5-8482-ac72891c3257"/>
<item label="msftmyz" mip="CMIP" priority="1" title="ESMVal: Omon.msftmyz" uid="91291a5a-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="baa59d48-e5dd-11e5-8482-ac72891c3257"/>
<item label="mrso" mip="CMIP" priority="1" title="ESMVal: Lmon.mrso" uid="91291df2-33eb-11e7-80d4-5404a60d96b5" vgid="b7d445ce-c16a-11e6-bb6a-ac72891c3257" vid="bab1a782-e5dd-11e5-8482-ac72891c3257"/>
</requestVar>
<standardname id="sn" label="standardname" title="1.8 CF Standard Names" uid="SECTION:standardname" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item description="The quantity with standard name acoustic_signal_roundtrip_travel_time_in_sea_water is the time taken for an acoustic signal to propagate from the emitting instrument to a reflecting surface and back again to the instrument. In the case of an instrument based on the sea floor and measuring the roundtrip time to the sea surface, the data are commonly used as a measure of ocean heat content." label="AcousticSignalRoundtripTravelTimeInSeaWater" title="Acoustic Signal Roundtrip Travel Time in Sea Water" uid="acoustic_signal_roundtrip_travel_time_in_sea_water" units="s"/>
<item description="The diameter of a spherical particle with density 1000 kg m-3 having the same aerodynamic properties as the particles in question." label="AerodynamicParticleDiameter" title="Aerodynamic Particle Diameter" uid="aerodynamic_particle_diameter" units="m"/>
<item description="The &quot;aerodynamic_resistance&quot; is the resistance to mixing through the boundary layer toward the surface by means of the dominant process, turbulent transport. Reference: Wesely, M. L., 1989,  doi:10.1016/0004-6981(89)90153-4." label="AerodynamicResistance" title="Aerodynamic Resistance" uid="aerodynamic_resistance" units="m-1 s"/>
<item description="&quot;Age of sea ice&quot; means the length of time elapsed since the ice formed." label="AgeOfSeaIce" title="Age of Sea Ice" uid="age_of_sea_ice" units="year"/>
<item description="&quot;Age of stratospheric air&quot; means an estimate of the time since a parcel of stratospheric air was last in contact with the troposphere." label="AgeOfStratosphericAir" title="Age of Stratospheric Air" uid="age_of_stratospheric_air" units="s"/>
<item description="&quot;Age of surface snow&quot; means the length of time elapsed since the snow accumulated on the earth's surface. The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="AgeOfSurfaceSnow" title="Age of Surface Snow" uid="age_of_surface_snow" units="day"/>
<item description="" label="AirDensity" title="Air Density" uid="air_density" units="kg m-3"/>
<item description="Potential temperature is the temperature a parcel of air or sea water would have if moved adiabatically to sea level pressure." label="AirPotentialTemperature" title="Air Potential Temperature" uid="air_potential_temperature" units="K"/>
<item description="" label="AirPressure" title="Air Pressure" uid="air_pressure" units="Pa"/>
<item description="&quot;anomaly&quot; means difference from climatology." label="AirPressureAnomaly" title="Air Pressure Anomaly" uid="air_pressure_anomaly" units="Pa"/>
<item description="cloud_base refers to the base of the lowest cloud." label="AirPressureAtCloudBase" title="Air Pressure At Cloud Base" uid="air_pressure_at_cloud_base" units="Pa"/>
<item description="cloud_top refers to the top of the highest cloud." label="AirPressureAtCloudTop" title="Air Pressure At Cloud Top" uid="air_pressure_at_cloud_top" units="Pa"/>
<item description="cloud_base refers to the base of the lowest cloud. Convective cloud is that produced by the convection schemes in an atmosphere model." label="AirPressureAtConvectiveCloudBase" title="Air Pressure At Convective Cloud Base" uid="air_pressure_at_convective_cloud_base" units="Pa"/>
<item description="cloud_top refers to the top of the highest cloud. Convective cloud is that produced by the convection schemes in an atmosphere model." label="AirPressureAtConvectiveCloudTop" title="Air Pressure At Convective Cloud Top" uid="air_pressure_at_convective_cloud_top" units="Pa"/>
<item description="" label="AirPressureAtFreezingLevel" title="Air Pressure At Freezing Level" uid="air_pressure_at_freezing_level" units="Pa"/>
<item description="sea_level means mean sea level, which is close to the geoid in sea areas. Air pressure at sea level is the quantity often abbreviated as MSLP or PMSL." label="AirPressureAtSeaLevel" title="Air Pressure At Sea Level" uid="air_pressure_at_sea_level" units="Pa"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="AirTemperature" title="Air Temperature" uid="air_temperature" units="K"/>
<item description="&quot;anomaly&quot; means difference from climatology. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="AirTemperatureAnomaly" title="Air Temperature Anomaly" uid="air_temperature_anomaly" units="K"/>
<item description="cloud_top refers to the top of the highest cloud. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="AirTemperatureAtCloudTop" title="Air Temperature At Cloud Top" uid="air_temperature_at_cloud_top" units="K"/>
<item description="The &quot;effective cloud top defined by infrared radiation&quot; is (approximately) the geometric height above the surface that is one optical depth at infrared wavelengths (in the region of 11 micrometers) below the cloud top that would be detected by visible and lidar techniques. Reference: Minnis, P. et al 2011 CERES Edition-2 Cloud Property Retrievals Using TRMM VIRS and Terra and Aqua MODIS Data x2014; Part I: Algorithms IEEE Transactions on Geoscience and Remote Sensing, 49(11), 4374-4400. doi: http://dx.doi.org/10.1109/TGRS.2011.2144601." label="AirTemperatureAtEffectiveCloudTopDefinedByInfraredRadiation" title="Air Temperature At Effective Cloud Top Defined by Infrared Radiation" uid="air_temperature_at_effective_cloud_top_defined_by_infrared_radiation" units="K"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature. A lapse rate is the negative derivative of a quantity with respect to increasing height above the surface, or the (positive) derivative with respect to increasing depth." label="AirTemperatureLapseRate" title="Air Temperature Lapse Rate" uid="air_temperature_lapse_rate" units="K m-1"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature. Air temperature excess and deficit are calculated relative to the air temperature threshold." label="AirTemperatureThreshold" title="Air Temperature Threshold" uid="air_temperature_threshold" units="K"/>
<item description="An altimeter operates by sending out a short pulse of radiation and measuring the time required for the pulse to return from the sea surface; this measurement is used to calculate the distance between the instrument and the sea surface.  That measurement is called the &quot;altimeter range&quot; and does not include any range corrections." label="AltimeterRange" title="Altimeter Range" uid="altimeter_range" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.   To apply the altimeter range correction it must be added to the quantity with standard name altimeter_range.  &quot;Correction_due_to_dry_troposphere&quot; means a correction for dry gases in the troposphere, i.e. excluding the effect of liquid water.  Additional altimeter range corrections are given by the quantities with standard names altimeter_range_correction_due_to_wet_troposphere, altimeter_range_correction_due_to_ionosphere, sea_surface_height_correction_due_to_air_pressure_at_low_frequency and sea_surface_height_correction_due_to_air_pressure_and_wind_at_high_frequency." label="AltimeterRangeCorrectionDueToDryTroposphere" title="Altimeter Range Correction Due To Dry Troposphere" uid="altimeter_range_correction_due_to_dry_troposphere" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.   To apply the altimeter range correction it must be added to the quantity with standard name altimeter_range.  &quot;Correction_due_to_ionosphere&quot; means a correction for the atmosphere's electron content in the ionosphere. Additional altimeter range corrections are given by the quantities with standard names altimeter_range_correction_due_to_wet_troposphere, altimeter_range_correction_due_to_dry_troposphere, sea_surface_height_correction_due_to_air_pressure_at_low_frequency and sea_surface_height_correction_due_to_air_pressure_and_wind_at_high_frequency." label="AltimeterRangeCorrectionDueToIonosphere" title="Altimeter Range Correction Due To Ionosphere" uid="altimeter_range_correction_due_to_ionosphere" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.   To apply the altimeter range correction it must be added to the quantity with standard name altimeter_range.  &quot;Correction_due_to_wet_troposphere&quot; means a correction for the effect of liquid water in the troposphere.  Additional altimeter range corrections are given by the quantities with standard names altimeter_range_correction_due_to_dry_troposphere, altimeter_range_correction_due_to_ionosphere, sea_surface_height_correction_due_to_air_pressure_at_low_frequency and sea_surface_height_correction_due_to_air_pressure_and_wind_at_high_frequency." label="AltimeterRangeCorrectionDueToWetTroposphere" title="Altimeter Range Correction Due To Wet Troposphere" uid="altimeter_range_correction_due_to_wet_troposphere" units="m"/>
<item description="Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." label="Altitude" title="Altitude" uid="altitude" units="m"/>
<item description="Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." label="AltitudeAtTopOfDryConvection" title="Altitude At Top of Dry Convection" uid="altitude_at_top_of_dry_convection" units="m"/>
<item description="&quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="AmbientAerosolParticleDiameter" title="Ambient Aerosol Particle Diameter" uid="ambient_aerosol_particle_diameter" units="m"/>
<item description="Global average sea level change is due to change in volume of the water in the ocean, caused by mass and/or density change, or to change in the volume of the ocean basins, caused by tectonics etc. It is sometimes called &quot;eustatic&quot;, which is a term that also has other definitions. It differs from the change in the global average sea surface height relative to the centre of the Earth by the global average vertical movement of the ocean floor. Zero sea level change is an arbitrary level. Amplitude is the magnitude of a wave modelled by a sinusoidal function. A coordinate variable of harmonic_period should be used to specify the period of the sinusoidal wave." label="AmplitudeOfGlobalAverageSeaLevelChange" title="Amplitude of Global Average Sea Level Change" uid="amplitude_of_global_average_sea_level_change" units="m"/>
<item description="The angle of emergence is that between the direction of a beam of radiation emerging from the surface of a medium and the normal to that surface." label="AngleOfEmergence" title="Angle of Emergence" uid="angle_of_emergence" units="degree"/>
<item description="The angle of incidence is that between the direction of approach of a beam of radiation toward a surface and the normal to that surface." label="AngleOfIncidence" title="Angle of Incidence" uid="angle_of_incidence" units="degree"/>
<item description="The quantity with standard name angle_of_rotation_from_east_to_x is the angle, anticlockwise reckoned positive, between due East and (dr/di)jk, where r(i,j,k) is the vector 3D position of the point with coordinate indices (i,j,k).  It could be used for rotating vector fields between model space and latitude-longitude space." label="AngleOfRotationFromEastToX" title="Angle of Rotation From East To X" uid="angle_of_rotation_from_east_to_x" units="degree"/>
<item description="The quantity with standard name angle_of_rotation_from_east_to_y is the angle, anticlockwise reckoned positive, between due East and (dr/dj)ik, where r(i,j,k) is the vector 3D position of the point with coordinate indices (i,j,k).  It could be used for rotating vector fields between model space and latitude-longitude space." label="AngleOfRotationFromEastToY" title="Angle of Rotation From East To Y" uid="angle_of_rotation_from_east_to_y" units="degree"/>
<item description="Standard names for &quot;platform&quot; describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite. An angle of rotation is reckoned positive in the anticlockwise direction. The &quot;angle_of_rotation_from_solar_azimuth_to_platform_azimuth&quot; is the angle of rotation between the solar azimuth angle and the platform azimuth angle. Solar azimuth angle is the horizontal angle between the line of sight from the observation point to the sun and a reference direction at the observation point, which is often due north. The angle is measured clockwise, starting from the reference direction. Platform azimuth angle is the horizontal angle between the line of sight from the observation point to the platform and a reference direction at the observation point, which is often due north. The angle is measured clockwise, starting from the reference direction." label="AngleOfRotationFromSolarAzimuthToPlatformAzimuth" title="Angle of Rotation From Solar Azimuth To Platform Azimuth" uid="angle_of_rotation_from_solar_azimuth_to_platform_azimuth" units="degree"/>
<item description="The &quot;Angstrom exponent&quot; appears in the formula relating aerosol optical thickness to the wavelength of incident radiation: T(lambda) = T(lambda0) * [lambda/lambda0] ** (-1 * alpha) where alpha is the Angstrom exponent, lambda is the wavelength of incident radiation, lambda0 is a reference wavelength, T(lambda) and T(lambda0) are the values of aerosol optical thickness at wavelengths lambda and lambda0, respectively. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="AngstromExponentOfAmbientAerosolInAir" title="Angstrom Exponent of Ambient Aerosol in Air" uid="angstrom_exponent_of_ambient_aerosol_in_air" units="1"/>
<item description="Apparent Oxygen Utilization (AOU) is the difference between measured dissolved oxygen concentration in water, and the equilibrium saturation concentration of dissolved oxygen in water with the same physical and chemical properties. Reference: Broecker, W. S. and T. H. Peng (1982), Tracers in the Sea, Lamont-Doherty Earth Observatory, Palisades, N. Y." label="ApparentOxygenUtilization" title="Apparent Oxygen Utilization" uid="apparent_oxygen_utilization" units="mol kg-1"/>
<item description="&quot;Area fraction&quot; means the fraction of horizontal area. To specify which area is quantified by a variable of &quot;area_fraction&quot;, provide a coordinate variable or scalar coordinate variable of &quot;area_type&quot;. Alternatively, if one is defined, use a more specific standard name of &quot;X_area_fraction&quot; for the fraction of horizontal area occupied by X." label="AreaFraction" title="Area Fraction" uid="area_fraction" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The fraction of horizontal area where the surface specified by the axes other than horizontal axes, for instance an isobaric surface, is below the (ground or sea) surface." label="AreaFractionBelowSurface" title="Area Fraction Below Surface" uid="area_fraction_below_surface" units="1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. A coordinate variable of solar_zenith_angle indicating the day extent should be specified." label="AreaFractionOfDayDefinedBySolarZenithAngle" title="Area Fraction of Day Defined by Solar Zenith Angle" uid="area_fraction_of_day_defined_by_solar_zenith_angle" units="1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. A coordinate variable of solar_zenith_angle indicating the night extent should be specified." label="AreaFractionOfNightDefinedBySolarZenithAngle" title="Area Fraction of Night Defined by Solar Zenith Angle" uid="area_fraction_of_night_defined_by_solar_zenith_angle" units="1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. A coordinate variable of solar_zenith_angle indicating the twilight extent should be specified." label="AreaFractionOfTwilightDefinedBySolarZenithAngle" title="Area Fraction of Twilight Defined by Solar Zenith Angle" uid="area_fraction_of_twilight_defined_by_solar_zenith_angle" units="1"/>
<item description="A variable with the standard name of area_type contains strings which indicate the nature of the surface e.g. land, sea, sea_ice. These strings are standardised.  Values must be taken from the area_type table." label="AreaType" title="Area Type" uid="area_type" units=""/>
<item description="Absolute vorticity is the sum of relative vorticity and the upward component of vorticity due to the Earth's rotation." label="AtmosphereAbsoluteVorticity" title="Atmosphere Absolute Vorticity" uid="atmosphere_absolute_vorticity" units="s-1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Absorption optical thickness&quot; means that part of the atmosphere optical thickness that is caused by the absorption of incident radiation. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereAbsorptionOpticalThicknessDueToAmbientAerosolParticles" title="Atmosphere Absorption Optical Thickness Due To Ambient Aerosol Particles" uid="atmosphere_absorption_optical_thickness_due_to_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path.  A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Absorption optical thickness&quot; means that part of the atmosphere optical thickness that is caused by the absorption of incident radiation. &quot;Aerosol&quot; means the suspended liquid or solid particles in air (except cloud droplets).  &quot;Ambient aerosol&quot; is aerosol that has taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the aerosol. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="AtmosphereAbsorptionOpticalThicknessDueToBlackCarbonAmbientAerosol" title="Atmosphere Absorption Optical Thickness Due To Black Carbon Ambient Aerosol" uid="atmosphere_absorption_optical_thickness_due_to_black_carbon_ambient_aerosol" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Absorption optical thickness&quot; means that part of the atmosphere optical thickness that is caused by the absorption of incident radiation. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereAbsorptionOpticalThicknessDueToDustAmbientAerosolParticles" title="Atmosphere Absorption Optical Thickness Due To Dust Ambient Aerosol Particles" uid="atmosphere_absorption_optical_thickness_due_to_dust_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Absorption optical thickness&quot; means that part of the atmosphere optical thickness that is caused by the absorption of incident radiation. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereAbsorptionOpticalThicknessDueToParticulateOrganicMatterAmbientAerosolParticles" title="Atmosphere Absorption Optical Thickness Due To Particulate Organic Matter Ambient Aerosol Particles" uid="atmosphere_absorption_optical_thickness_due_to_particulate_organic_matter_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Absorption optical thickness&quot; means that part of the atmosphere optical thickness that is caused by the absorption of incident radiation. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereAbsorptionOpticalThicknessDueToSeasaltAmbientAerosolParticles" title="Atmosphere Absorption Optical Thickness Due To Seasalt Ambient Aerosol Particles" uid="atmosphere_absorption_optical_thickness_due_to_seasalt_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Absorption optical thickness&quot; means that part of the atmosphere optical thickness that is caused by the absorption of incident radiation. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereAbsorptionOpticalThicknessDueToSulfateAmbientAerosolParticles" title="Atmosphere Absorption Optical Thickness Due To Sulfate Ambient Aerosol Particles" uid="atmosphere_absorption_optical_thickness_due_to_sulfate_ambient_aerosol_particles" units="1"/>
<item description="The atmosphere boundary layer thickness is the &quot;depth&quot; or &quot;height&quot; of the (atmosphere) planetary boundary layer." label="AtmosphereBoundaryLayerThickness" title="Atmosphere Boundary Layer Thickness" uid="atmosphere_boundary_layer_thickness" units="m"/>
<item description="Convective(ly) available potential energy (often abbreviated CAPE) is a stability measure calculated by integrating the positive temperature difference between the surrounding atmosphere and a parcel of air lifted adiabatically from a given starting height to its equilibrium level. A coordinate variable of original_air_pressure_of_lifted_parcel should be specified to indicate the starting height of the lifted parcel. CAPE exists under conditions of potential instability, and measures the potential energy per unit mass that would be released by the unstable parcel if it were able to convect upwards to equilibrium." label="AtmosphereConvectiveAvailablePotentialEnergy" title="Atmosphere Convective Available Potential Energy" uid="atmosphere_convective_available_potential_energy" units="J kg-1"/>
<item description="Convective(ly) available potential energy (often abbreviated CAPE) is a stability measure calculated by integrating the positive temperature difference between the surrounding atmosphere and a parcel of air lifted adiabatically from the surface to its equilibrium level. CAPE exists under conditions of potential instability, and measures the potential energy per unit mass that would be released by the unstable parcel if it were able to convect upwards to equilibrium. " label="AtmosphereConvectiveAvailablePotentialEnergyWrtSurface" title="Atmosphere Convective Available Potential Energy Wrt Surface" uid="atmosphere_convective_available_potential_energy_wrt_surface" units="J kg -1"/>
<item description="Convective inhibition is the amount of energy per unit mass required to overcome the negatively buoyant energy exerted by the environment on a parcel of air.  Convective inhibition is often abbreviated as &quot;CIN&quot; or &quot;CINH&quot;.  It is calculated by integrating the negative temperature difference between the surrounding atmosphere and a parcel of air lifted adiabatically from a given starting height to its equilibrium level. A coordinate variable of original_air_pressure_of_lifted_parcel should be specified to indicate the starting height of the lifted parcel. " label="AtmosphereConvectiveInhibition" title="Atmosphere Convective Inhibition" uid="atmosphere_convective_inhibition" units="J kg -1"/>
<item description="Convective inhibition is the amount of energy per unit mass required to overcome the negatively buoyant energy exerted by the environment on a parcel of air.  Convective inhibition is often abbreviated as &quot;CIN&quot; or &quot;CINH&quot;.  It is calculated by integrating the negative temperature difference between the surrounding atmosphere and a parcel of air lifted adiabatically from the surface to its equilibrium level." label="AtmosphereConvectiveInhibitionWrtSurface" title="Atmosphere Convective Inhibition Wrt Surface" uid="atmosphere_convective_inhibition_wrt_surface" units="J kg -1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The atmosphere convective mass flux is the vertical transport of mass for a field of cumulus clouds or thermals, given by the product of air density and vertical velocity. For an area-average, cell_methods should specify whether the average is over all the area or the area of updrafts and/or downdrafts only.  &quot;Downdraft&quot; means that the flux is positive in the downward direction (negative upward)." label="AtmosphereDowndraftConvectiveMassFlux" title="Atmosphere Downdraft Convective Mass Flux" uid="atmosphere_downdraft_convective_mass_flux" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Dry energy is the sum of dry static energy and kinetic energy. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="AtmosphereDryEnergyContent" title="Atmosphere Dry Energy Content" uid="atmosphere_dry_energy_content" units="J m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="AtmosphereDryStaticEnergyContent" title="Atmosphere Dry Static Energy Content" uid="atmosphere_dry_static_energy_content" units="J m-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Atmosphere_Xward_stress is a stress which tends to accelerate the atmosphere in direction X." label="AtmosphereEastwardStressDueToGravityWaveDrag" title="Atmosphere Eastward Stress Due To Gravity Wave Drag" uid="atmosphere_eastward_stress_due_to_gravity_wave_drag" units="Pa"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Atmosphere energy content&quot; has not yet been precisely defined! Please express your views on this quantity on the CF email list." label="AtmosphereEnergyContent" title="Atmosphere Energy Content" uid="atmosphere_energy_content" units="J m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="AtmosphereEnthalpyContent" title="Atmosphere Enthalpy Content" uid="atmosphere_enthalpy_content" units="J m-2"/>
<item description="" label="AtmosphereHeatDiffusivity" title="Atmosphere Heat Diffusivity" uid="atmosphere_heat_diffusivity" units="m2 s-1"/>
<item description="&quot;Horizontal&quot; indicates that the streamfunction applies to a horizontal velocity field on a particular vertical level." label="AtmosphereHorizontalStreamfunction" title="Atmosphere Horizontal Streamfunction" uid="atmosphere_horizontal_streamfunction" units="m2 s-1"/>
<item description="A velocity is a vector quantity. &quot;Horizontal&quot; indicates that the velocity potential applies to a horizontal velocity field on a particular vertical level." label="AtmosphereHorizontalVelocityPotential" title="Atmosphere Horizontal Velocity Potential" uid="atmosphere_horizontal_velocity_potential" units="m2 s-1"/>
<item description="See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="AtmosphereHybridHeightCoordinate" title="Atmosphere Hybrid Height Coordinate" uid="atmosphere_hybrid_height_coordinate" units="m"/>
<item description="See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="AtmosphereHybridSigmaPressureCoordinate" title="Atmosphere Hybrid Sigma Pressure Coordinate" uid="atmosphere_hybrid_sigma_pressure_coordinate" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereKineticEnergyContent" title="Atmosphere Kinetic Energy Content" uid="atmosphere_kinetic_energy_content" units="J m-2"/>
<item description="The level of free convection is the altitude where the temperature of the environment decreases faster than the moist adiabatic lapse rate of a saturated air parcel at the same level.  It is calculated by lifting a parcel of air dry adiabatically to the LCL (lifted condensation level), then moist adiabatically until the parcel temperature is equal to the ambient temperature. A coordinate variable of original_air_pressure_of_lifted_parcel should be specified to indicate the starting height of the lifted parcel." label="AtmosphereLevelOfFreeConvection" title="Atmosphere Level of Free Convection" uid="atmosphere_level_of_free_convection" units="m"/>
<item description="The level of free convection is the altitude where the temperature of the environment decreases faster than the moist adiabatic lapse rate of a saturated air parcel at the same level.  It is calculated by lifting a parcel of air dry adiabatically from the surface to the LCL (lifting condensation level), then moist adiabatically until the parcel temperature is equal to the ambient temperature." label="AtmosphereLevelOfFreeConvectionWrtSurface" title="Atmosphere Level of Free Convection Wrt Surface" uid="atmosphere_level_of_free_convection_wrt_surface" units="m"/>
<item description="The lifting condensation level is the height at which the relative humidity of an air parcel cooled by dry adiabatic lifting would reach 100%. A coordinate variable of original_air_pressure_of_lifted_parcel should be specified to indicate the starting height of the lifted parcel." label="AtmosphereLiftingCondensationLevel" title="Atmosphere Lifting Condensation Level" uid="atmosphere_lifting_condensation_level" units="m"/>
<item description="The lifting condensation level is the height at which the relative humidity of an air parcel cooled by dry adiabatic lifting from the surface would reach 100%." label="AtmosphereLiftingCondensationLevelWrtSurface" title="Atmosphere Lifting Condensation Level Wrt Surface" uid="atmosphere_lifting_condensation_level_wrt_surface" units="m"/>
<item description="&quot;ln_X&quot; means natural logarithm of X. X must be dimensionless. See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="AtmosphereLnPressureCoordinate" title="Atmosphere Ln Pressure Coordinate" uid="atmosphere_ln_pressure_coordinate" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for acetic_acid is CH3COOH. The IUPAC name for acetic acid is ethanoic acid." label="AtmosphereMassContentOfAceticAcid" title="Atmosphere Mass Content of Acetic Acid" uid="atmosphere_mass_content_of_acetic_acid" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for aceto-nitrile is CH3CN. The IUPAC name for aceto-nitrile is ethanenitrile." label="AtmosphereMassContentOfAcetoNitrile" title="Atmosphere Mass Content of Aceto Nitrile" uid="atmosphere_mass_content_of_aceto_nitrile" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  Alkanes are saturated hydrocarbons, i.e. they do not contain any chemical double bonds.  Alkanes contain only hydrogen and carbon combined in the general proportions C(n)H(2n+2); &quot;alkanes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkane species, e.g., methane and ethane." label="AtmosphereMassContentOfAlkanes" title="Atmosphere Mass Content of Alkanes" uid="atmosphere_mass_content_of_alkanes" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  Alkenes are unsaturated hydrocarbons as they contain chemical double bonds between adjacent carbon atoms.  Alkenes contain only hydrogen and carbon combined in the general proportions C(n)H(2n); &quot;alkenes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkene species, e.g., ethene and propene." label="AtmosphereMassContentOfAlkenes" title="Atmosphere Mass Content of Alkenes" uid="atmosphere_mass_content_of_alkenes" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for alpha_hexachlorocyclohexane is C6H6Cl6." label="AtmosphereMassContentOfAlphaHexachlorocyclohexane" title="Atmosphere Mass Content of Alpha Hexachlorocyclohexane" uid="atmosphere_mass_content_of_alpha_hexachlorocyclohexane" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for alpha_pinene is C10H16. The IUPAC name for alpha-pinene is (1S,5S)-2,6,6-trimethylbicyclo[3.1.1]hept-2-ene." label="AtmosphereMassContentOfAlphaPinene" title="Atmosphere Mass Content of Alpha Pinene" uid="atmosphere_mass_content_of_alpha_pinene" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for ammonia is NH3." label="AtmosphereMassContentOfAmmonia" title="Atmosphere Mass Content of Ammonia" uid="atmosphere_mass_content_of_ammonia" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for ammonium is NH4." label="AtmosphereMassContentOfAmmoniumDryAerosolParticles" title="Atmosphere Mass Content of Ammonium Dry Aerosol Particles" uid="atmosphere_mass_content_of_ammonium_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMassContentOfAnthropogenicNmvocExpressedAsCarbon" title="Atmosphere Mass Content of Anthropogenic Nmvoc Expressed As Carbon" uid="atmosphere_mass_content_of_anthropogenic_nmvoc_expressed_as_carbon" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  Aromatic compounds in organic chemistry are compounds that contain at least one benzene ring of six carbon atoms joined by alternating single and double covalent bonds.  The simplest aromatic compound is benzene itself.  In standard names &quot;aromatic_compounds&quot; is the term used to describe the group of aromatic chemical species that  are represented within a given model.  The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.  Standard names exist for some individual aromatic species, e.g. benzene and xylene." label="AtmosphereMassContentOfAromaticCompounds" title="Atmosphere Mass Content of Aromatic Compounds" uid="atmosphere_mass_content_of_aromatic_compounds" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical symbol for atomic bromine is Br." label="AtmosphereMassContentOfAtomicBromine" title="Atmosphere Mass Content of Atomic Bromine" uid="atmosphere_mass_content_of_atomic_bromine" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical symbol for atomic chlorine is Cl." label="AtmosphereMassContentOfAtomicChlorine" title="Atmosphere Mass Content of Atomic Chlorine" uid="atmosphere_mass_content_of_atomic_chlorine" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical symbol for atomic nitrogen is N." label="AtmosphereMassContentOfAtomicNitrogen" title="Atmosphere Mass Content of Atomic Nitrogen" uid="atmosphere_mass_content_of_atomic_nitrogen" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for benzene is C6H6.  Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="AtmosphereMassContentOfBenzene" title="Atmosphere Mass Content of Benzene" uid="atmosphere_mass_content_of_benzene" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for beta_pinene is C10H16.  The IUPAC name for beta-pinene is (1S,5S)-6,6-dimethyl-2-methylenebicyclo[3.1.1]heptane." label="AtmosphereMassContentOfBetaPinene" title="Atmosphere Mass Content of Beta Pinene" uid="atmosphere_mass_content_of_beta_pinene" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Biogenic&quot; means influenced, caused, or created by natural processes. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMassContentOfBiogenicNmvocExpressedAsCarbon" title="Atmosphere Mass Content of Biogenic Nmvoc Expressed As Carbon" uid="atmosphere_mass_content_of_biogenic_nmvoc_expressed_as_carbon" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for bromine chloride is BrCl." label="AtmosphereMassContentOfBromineChloride" title="Atmosphere Mass Content of Bromine Chloride" uid="atmosphere_mass_content_of_bromine_chloride" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for bromine monoxide is BrO." label="AtmosphereMassContentOfBromineMonoxide" title="Atmosphere Mass Content of Bromine Monoxide" uid="atmosphere_mass_content_of_bromine_monoxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for bromine nitrate is BrONO2. The chemical formula for the nitrate anion is NO3-." label="AtmosphereMassContentOfBromineNitrate" title="Atmosphere Mass Content of Bromine Nitrate" uid="atmosphere_mass_content_of_bromine_nitrate" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  &quot;Brox&quot;  describes a family of chemical species consisting of inorganic bromine compounds with the exception of  hydrogen bromide (HBr) and bromine nitrate (BrONO2). &quot;Brox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols.  Standard names that use the term &quot;inorganic_bromine&quot; are used for quantities that contain all inorganic bromine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMassContentOfBroxExpressedAsBromine" title="Atmosphere Mass Content of Brox Expressed As Bromine" uid="atmosphere_mass_content_of_brox_expressed_as_bromine" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="AtmosphereMassContentOfButane" title="Atmosphere Mass Content of Butane" uid="atmosphere_mass_content_of_butane" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for carbon dioxide is CO2." label="AtmosphereMassContentOfCarbonDioxide" title="Atmosphere Mass Content of Carbon Dioxide" uid="atmosphere_mass_content_of_carbon_dioxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula of carbon monoxide is CO." label="AtmosphereMassContentOfCarbonMonoxide" title="Atmosphere Mass Content of Carbon Monoxide" uid="atmosphere_mass_content_of_carbon_monoxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula of carbon tetrachloride is CCl4." label="AtmosphereMassContentOfCarbonTetrachloride" title="Atmosphere Mass Content of Carbon Tetrachloride" uid="atmosphere_mass_content_of_carbon_tetrachloride" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula of CFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="AtmosphereMassContentOfCfc11" title="Atmosphere Mass Content of Cfc11" uid="atmosphere_mass_content_of_cfc11" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula of CFC113 is CCl2FCClF2. The IUPAC name for CFC113 is 1,1,2-trichloro-1,2,2-trifluoro-ethane." label="AtmosphereMassContentOfCfc113" title="Atmosphere Mass Content of Cfc113" uid="atmosphere_mass_content_of_cfc113" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula of CFC113a CCl3CF3.  The IUPAC name for CFC113a is 1,1,1-trichloro-2,2,2-trifluoro-ethane." label="AtmosphereMassContentOfCfc113a" title="Atmosphere Mass Content of Cfc113a" uid="atmosphere_mass_content_of_cfc113a" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula of CFC114 is CClF2CClF2. The IUPAC name for CFC114 is 1,2-dichloro-1,1,2,2-tetrafluoro-ethane." label="AtmosphereMassContentOfCfc114" title="Atmosphere Mass Content of Cfc114" uid="atmosphere_mass_content_of_cfc114" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula of CFC115 is CClF2CF3. The IUPAC name for CFC115 is 1-chloro-1,1,2,2,2-pentafluoro-ethane." label="AtmosphereMassContentOfCfc115" title="Atmosphere Mass Content of Cfc115" uid="atmosphere_mass_content_of_cfc115" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for CFC12 is CF2Cl2.  The IUPAC name for CFC12 is dichloro-difluoro-methane." label="AtmosphereMassContentOfCfc12" title="Atmosphere Mass Content of Cfc12" uid="atmosphere_mass_content_of_cfc12" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for chlorine dioxide is OClO." label="AtmosphereMassContentOfChlorineDioxide" title="Atmosphere Mass Content of Chlorine Dioxide" uid="atmosphere_mass_content_of_chlorine_dioxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for chlorine monoxide is ClO." label="AtmosphereMassContentOfChlorineMonoxide" title="Atmosphere Mass Content of Chlorine Monoxide" uid="atmosphere_mass_content_of_chlorine_monoxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for chlorine nitrate is ClONO2." label="AtmosphereMassContentOfChlorineNitrate" title="Atmosphere Mass Content of Chlorine Nitrate" uid="atmosphere_mass_content_of_chlorine_nitrate" units="kg m-2"/>
<item description="&quot;condensed_water&quot; means liquid and ice. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereMassContentOfCloudCondensedWater" title="Atmosphere Mass Content of Cloud Condensed Water" uid="atmosphere_mass_content_of_cloud_condensed_water" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereMassContentOfCloudIce" title="Atmosphere Mass Content of Cloud Ice" uid="atmosphere_mass_content_of_cloud_ice" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereMassContentOfCloudLiquidWater" title="Atmosphere Mass Content of Cloud Liquid Water" uid="atmosphere_mass_content_of_cloud_liquid_water" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  &quot;Clox&quot; describes a family of chemical species consisting of inorganic chlorine compounds with the exception of  hydrogen chloride (HCl) and chlorine nitrate (ClONO2). &quot;Clox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols.   Standard names that use the term &quot;inorganic_chlorine&quot; are used for quantities that contain all inorganic chlorine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMassContentOfCloxExpressedAsChlorine" title="Atmosphere Mass Content of Clox Expressed As Chlorine" uid="atmosphere_mass_content_of_clox_expressed_as_chlorine" units="kg m-2"/>
<item description="&quot;condensed_water&quot; means liquid and ice. Convective cloud is that produced by the convection schemes in an atmosphere model.  &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereMassContentOfConvectiveCloudCondensedWater" title="Atmosphere Mass Content of Convective Cloud Condensed Water" uid="atmosphere_mass_content_of_convective_cloud_condensed_water" units="kg m-2"/>
<item description="Convective cloud is that produced by the convection schemes in an atmosphere model.  &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereMassContentOfConvectiveCloudLiquidWater" title="Atmosphere Mass Content of Convective Cloud Liquid Water" uid="atmosphere_mass_content_of_convective_cloud_liquid_water" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for dichlorine peroxide is Cl2O2." label="AtmosphereMassContentOfDichlorinePeroxide" title="Atmosphere Mass Content of Dichlorine Peroxide" uid="atmosphere_mass_content_of_dichlorine_peroxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for dimethyl sulfide is (CH3)2S.  Dimethyl sulfide is sometimes referred to as DMS." label="AtmosphereMassContentOfDimethylSulfide" title="Atmosphere Mass Content of Dimethyl Sulfide" uid="atmosphere_mass_content_of_dimethyl_sulfide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for dinitrogen pentoxide is N2O5." label="AtmosphereMassContentOfDinitrogenPentoxide" title="Atmosphere Mass Content of Dinitrogen Pentoxide" uid="atmosphere_mass_content_of_dinitrogen_pentoxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="AtmosphereMassContentOfDustDryAerosolParticles" title="Atmosphere Mass Content of Dust Dry Aerosol Particles" uid="atmosphere_mass_content_of_dust_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="AtmosphereMassContentOfElementalCarbonDryAerosolParticles" title="Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles" uid="atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="AtmosphereMassContentOfEthane" title="Atmosphere Mass Content of Ethane" uid="atmosphere_mass_content_of_ethane" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for ethanol is C2H5OH." label="AtmosphereMassContentOfEthanol" title="Atmosphere Mass Content of Ethanol" uid="atmosphere_mass_content_of_ethanol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="AtmosphereMassContentOfEthene" title="Atmosphere Mass Content of Ethene" uid="atmosphere_mass_content_of_ethene" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for ethyne is HC2H.  Ethyne is the IUPAC name for this species, which is also commonly known as acetylene." label="AtmosphereMassContentOfEthyne" title="Atmosphere Mass Content of Ethyne" uid="atmosphere_mass_content_of_ethyne" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="AtmosphereMassContentOfFormaldehyde" title="Atmosphere Mass Content of Formaldehyde" uid="atmosphere_mass_content_of_formaldehyde" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for formic acid is HCOOH.  The IUPAC name for formic acid is methanoic acid." label="AtmosphereMassContentOfFormicAcid" title="Atmosphere Mass Content of Formic Acid" uid="atmosphere_mass_content_of_formic_acid" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s) in a salt or to other atom(s) in a molecule." label="AtmosphereMassContentOfGaseousDivalentMercury" title="Atmosphere Mass Content of Gaseous Divalent Mercury" uid="atmosphere_mass_content_of_gaseous_divalent_mercury" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical symbol for mercury is Hg." label="AtmosphereMassContentOfGaseousElementalMercury" title="Atmosphere Mass Content of Gaseous Elemental Mercury" uid="atmosphere_mass_content_of_gaseous_elemental_mercury" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for halon1202 is CBr2F2. The IUPAC name for halon1202 is dibromo-difluoro-methane." label="AtmosphereMassContentOfHalon1202" title="Atmosphere Mass Content of Halon1202" uid="atmosphere_mass_content_of_halon1202" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for halon1211 is CBrClF2. The IUPAC name for halon1211 is bromo-chloro-difluoro-methane." label="AtmosphereMassContentOfHalon1211" title="Atmosphere Mass Content of Halon1211" uid="atmosphere_mass_content_of_halon1211" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for halon1301 is CBrF3. The IUPAC name for halon1301 is bromo-trifluoro-methane." label="AtmosphereMassContentOfHalon1301" title="Atmosphere Mass Content of Halon1301" uid="atmosphere_mass_content_of_halon1301" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for halo2402 is C2Br2F4. The IUPAC name for halon2402 is 1,2-dibromo-1,1,2,2-tetrafluoro-ethane." label="AtmosphereMassContentOfHalon2402" title="Atmosphere Mass Content of Halon2402" uid="atmosphere_mass_content_of_halon2402" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for hcc140a is CH3CCl3. The IUPAC name for hcc140a is 1,1,1-trichloro-ethane." label="AtmosphereMassContentOfHcc140a" title="Atmosphere Mass Content of Hcc140a" uid="atmosphere_mass_content_of_hcc140a" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for HCFC141b is CH3CCl2F. The IUPAC name for HCFC141b is 1,1-dichloro-1-fluoroethane." label="AtmosphereMassContentOfHcfc141b" title="Atmosphere Mass Content of Hcfc141b" uid="atmosphere_mass_content_of_hcfc141b" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for HCFC142b is CH3CClF2. The IUPAC name for HCFC142b is 1-chloro-1,1-difluoroethane." label="AtmosphereMassContentOfHcfc142b" title="Atmosphere Mass Content of Hcfc142b" uid="atmosphere_mass_content_of_hcfc142b" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for HCFC22 is CHClF2.  The IUPAC name for HCFC22 is chloro-difluoro-methane." label="AtmosphereMassContentOfHcfc22" title="Atmosphere Mass Content of Hcfc22" uid="atmosphere_mass_content_of_hcfc22" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for hexachlorobiphenyl is C12H4Cl6.  This structure of this species consists of two linked benzene rings, each of which is additionally bonded to three chlorine atoms." label="AtmosphereMassContentOfHexachlorobiphenyl" title="Atmosphere Mass Content of Hexachlorobiphenyl" uid="atmosphere_mass_content_of_hexachlorobiphenyl" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  &quot;HOx&quot; means a combination of two radical species containing hydrogen and oxygen: OH and HO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMassContentOfHoxExpressedAsHydrogen" title="Atmosphere Mass Content of Hox Expressed As Hydrogen" uid="atmosphere_mass_content_of_hox_expressed_as_hydrogen" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for hydrogen bromide is HBr." label="AtmosphereMassContentOfHydrogenBromide" title="Atmosphere Mass Content of Hydrogen Bromide" uid="atmosphere_mass_content_of_hydrogen_bromide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for hydrogen chloride is HCl." label="AtmosphereMassContentOfHydrogenChloride" title="Atmosphere Mass Content of Hydrogen Chloride" uid="atmosphere_mass_content_of_hydrogen_chloride" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for hydrogen cyanide is HCN." label="AtmosphereMassContentOfHydrogenCyanide" title="Atmosphere Mass Content of Hydrogen Cyanide" uid="atmosphere_mass_content_of_hydrogen_cyanide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for hydrogen peroxide is H2O2." label="AtmosphereMassContentOfHydrogenPeroxide" title="Atmosphere Mass Content of Hydrogen Peroxide" uid="atmosphere_mass_content_of_hydrogen_peroxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for the hydroperoxyl radical is HO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="AtmosphereMassContentOfHydroperoxylRadical" title="Atmosphere Mass Content of Hydroperoxyl Radical" uid="atmosphere_mass_content_of_hydroperoxyl_radical" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for the hydroxyl radical is OH. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="AtmosphereMassContentOfHydroxylRadical" title="Atmosphere Mass Content of Hydroxyl Radical" uid="atmosphere_mass_content_of_hydroxyl_radical" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for hypobromous acid is HOBr." label="AtmosphereMassContentOfHypobromousAcid" title="Atmosphere Mass Content of Hypobromous Acid" uid="atmosphere_mass_content_of_hypobromous_acid" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for hypochlorous acid is HOCl." label="AtmosphereMassContentOfHypochlorousAcid" title="Atmosphere Mass Content of Hypochlorous Acid" uid="atmosphere_mass_content_of_hypochlorous_acid" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols. &quot;Inorganic bromine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;brox&quot; are used for quantities that contain all inorganic bromine species except HBr and BrONO2." label="AtmosphereMassContentOfInorganicBromine" title="Atmosphere Mass Content of Inorganic Bromine" uid="atmosphere_mass_content_of_inorganic_bromine" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols. &quot;Inorganic chlorine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;clox&quot; are used for quantities that contain all inorganic chlorine species except HCl and ClONO2." label="AtmosphereMassContentOfInorganicChlorine" title="Atmosphere Mass Content of Inorganic Chlorine" uid="atmosphere_mass_content_of_inorganic_chlorine" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for isoprene is CH2=C(CH3)CH=CH2. The IUPAC name for isoprene is 2-methyl-buta-1,3-diene. Isoprene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="AtmosphereMassContentOfIsoprene" title="Atmosphere Mass Content of Isoprene" uid="atmosphere_mass_content_of_isoprene" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for limonene is C10H16. The IUPAC name for limonene is 1-methyl-4-prop-1-en-2-yl-cyclohexene. Limonene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="AtmosphereMassContentOfLimonene" title="Atmosphere Mass Content of Limonene" uid="atmosphere_mass_content_of_limonene" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="AtmosphereMassContentOfMercuryDryAerosolParticles" title="Atmosphere Mass Content of Mercury Dry Aerosol Particles" uid="atmosphere_mass_content_of_mercury_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="AtmosphereMassContentOfMethane" title="Atmosphere Mass Content of Methane" uid="atmosphere_mass_content_of_methane" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for methanol is CH3OH." label="AtmosphereMassContentOfMethanol" title="Atmosphere Mass Content of Methanol" uid="atmosphere_mass_content_of_methanol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for methyl bromide is CH3Br. The IUPAC name for methyl bromide is bromomethane." label="AtmosphereMassContentOfMethylBromide" title="Atmosphere Mass Content of Methyl Bromide" uid="atmosphere_mass_content_of_methyl_bromide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for methyl chloride is CH3Cl. The IUPAC name for methyl chloride is chloromethane." label="AtmosphereMassContentOfMethylChloride" title="Atmosphere Mass Content of Methyl Chloride" uid="atmosphere_mass_content_of_methyl_chloride" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for methyl hydroperoxide is CH3OOH." label="AtmosphereMassContentOfMethylHydroperoxide" title="Atmosphere Mass Content of Methyl Hydroperoxide" uid="atmosphere_mass_content_of_methyl_hydroperoxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for methyl_peroxy_radical is CH3O2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="AtmosphereMassContentOfMethylPeroxyRadical" title="Atmosphere Mass Content of Methyl Peroxy Radical" uid="atmosphere_mass_content_of_methyl_peroxy_radical" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for molecular hydrogen is H2." label="AtmosphereMassContentOfMolecularHydrogen" title="Atmosphere Mass Content of Molecular Hydrogen" uid="atmosphere_mass_content_of_molecular_hydrogen" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for the nitrate anion is NO3-." label="AtmosphereMassContentOfNitrateDryAerosolParticles" title="Atmosphere Mass Content of Nitrate Dry Aerosol Particles" uid="atmosphere_mass_content_of_nitrate_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for nitrate is NO3. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="AtmosphereMassContentOfNitrateRadical" title="Atmosphere Mass Content of Nitrate Radical" uid="atmosphere_mass_content_of_nitrate_radical" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for nitric acid is HNO3." label="AtmosphereMassContentOfNitricAcid" title="Atmosphere Mass Content of Nitric Acid" uid="atmosphere_mass_content_of_nitric_acid" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. Nitric acid trihydrate, sometimes referred to as NAT, is a stable crystalline substance consisting of three molecules of water to one molecule of nitric acid. The chemical formula for nitric acid is HNO3." label="AtmosphereMassContentOfNitricAcidTrihydrateAmbientAerosolParticles" title="Atmosphere Mass Content of Nitric Acid Trihydrate Ambient Aerosol Particles" uid="atmosphere_mass_content_of_nitric_acid_trihydrate_ambient_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for nitrogen monoxide is NO." label="AtmosphereMassContentOfNitrogenMonoxide" title="Atmosphere Mass Content of Nitrogen Monoxide" uid="atmosphere_mass_content_of_nitrogen_monoxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for nitrous acid is HNO2." label="AtmosphereMassContentOfNitrousAcid" title="Atmosphere Mass Content of Nitrous Acid" uid="atmosphere_mass_content_of_nitrous_acid" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for nitrous oxide is N2O." label="AtmosphereMassContentOfNitrousOxide" title="Atmosphere Mass Content of Nitrous Oxide" uid="atmosphere_mass_content_of_nitrous_oxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMassContentOfNmvocExpressedAsCarbon" title="Atmosphere Mass Content of Nmvoc Expressed As Carbon" uid="atmosphere_mass_content_of_nmvoc_expressed_as_carbon" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMassContentOfNoxExpressedAsNitrogen" title="Atmosphere Mass Content of Nox Expressed As Nitrogen" uid="atmosphere_mass_content_of_nox_expressed_as_nitrogen" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2) , chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMassContentOfNoyExpressedAsNitrogen" title="Atmosphere Mass Content of Noy Expressed As Nitrogen" uid="atmosphere_mass_content_of_noy_expressed_as_nitrogen" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.   &quot;Oxygenated&quot; means containing oxygen. &quot;Hydrocarbon&quot; means a compound containing hydrogen and carbon." label="AtmosphereMassContentOfOxygenatedHydrocarbons" title="Atmosphere Mass Content of Oxygenated Hydrocarbons" uid="atmosphere_mass_content_of_oxygenated_hydrocarbons" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for ozone is O3." label="AtmosphereMassContentOfOzone" title="Atmosphere Mass Content of Ozone" uid="atmosphere_mass_content_of_ozone" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="AtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticles" title="Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles" uid="atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The term &quot;peroxy_radicals&quot; means all organic and inorganic peroxy radicals. This includes HO2 and all organic peroxy radicals, sometimes referred to as RO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="AtmosphereMassContentOfPeroxyRadicals" title="Atmosphere Mass Content of Peroxy Radicals" uid="atmosphere_mass_content_of_peroxy_radicals" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for peroxyacetyl nitrate, sometimes referred to as PAN, is CH3COO2NO2.  The IUPAC name for peroxyacetyl_nitrate is nitroethaneperoxoate." label="AtmosphereMassContentOfPeroxyacetylNitrate" title="Atmosphere Mass Content of Peroxyacetyl Nitrate" uid="atmosphere_mass_content_of_peroxyacetyl_nitrate" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for peroxynitric acid, sometimes referred to as PNA, is HO2NO2." label="AtmosphereMassContentOfPeroxynitricAcid" title="Atmosphere Mass Content of Peroxynitric Acid" uid="atmosphere_mass_content_of_peroxynitric_acid" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="AtmosphereMassContentOfPrimaryParticulateOrganicMatterDryAerosolParticles" title="Atmosphere Mass Content of Primary Particulate Organic Matter Dry Aerosol Particles" uid="atmosphere_mass_content_of_primary_particulate_organic_matter_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="AtmosphereMassContentOfPropane" title="Atmosphere Mass Content of Propane" uid="atmosphere_mass_content_of_propane" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="AtmosphereMassContentOfPropene" title="Atmosphere Mass Content of Propene" uid="atmosphere_mass_content_of_propene" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical symbol for radon is Rn." label="AtmosphereMassContentOfRadon" title="Atmosphere Mass Content of Radon" uid="atmosphere_mass_content_of_radon" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="AtmosphereMassContentOfSeasaltDryAerosolParticles" title="Atmosphere Mass Content of Seasalt Dry Aerosol Particles" uid="atmosphere_mass_content_of_seasalt_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter &quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="AtmosphereMassContentOfSecondaryParticulateOrganicMatterDryAerosolParticles" title="Atmosphere Mass Content of Secondary Particulate Organic Matter Dry Aerosol Particles" uid="atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereMassContentOfSulfate" title="Atmosphere Mass Content of Sulfate" uid="atmosphere_mass_content_of_sulfate" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="AtmosphereMassContentOfSulfateAmbientAerosolParticles" title="Atmosphere Mass Content of Sulfate Ambient Aerosol Particles" uid="atmosphere_mass_content_of_sulfate_ambient_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for the sulfate anion is SO4(2-)." label="AtmosphereMassContentOfSulfateDryAerosolParticles" title="Atmosphere Mass Content of Sulfate Dry Aerosol Particles" uid="atmosphere_mass_content_of_sulfate_dry_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for the sulfate anion is SO4(2-)." label="AtmosphereMassContentOfSulfateDryAerosolParticlesExpressedAsSulfur" title="Atmosphere Mass Content of Sulfate Dry Aerosol Particles Expressed As Sulfur" uid="atmosphere_mass_content_of_sulfate_dry_aerosol_particles_expressed_as_sulfur" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for sulfur dioxide is SO2." label="AtmosphereMassContentOfSulfurDioxide" title="Atmosphere Mass Content of Sulfur Dioxide" uid="atmosphere_mass_content_of_sulfur_dioxide" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  Terpenes are hydrocarbons, that is, they contain only hydrogen and carbon combined in the general proportions (C5H8)n where n is an integer greater than on equal to one. The term &quot;terpenes&quot; is used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.  Standard names exist for some individual terpene species, e.g., isoprene and limonene." label="AtmosphereMassContentOfTerpenes" title="Atmosphere Mass Content of Terpenes" uid="atmosphere_mass_content_of_terpenes" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for toluene is C6H5CH3.  Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group.  The systematic name for toluene is methylbenzene." label="AtmosphereMassContentOfToluene" title="Atmosphere Mass Content of Toluene" uid="atmosphere_mass_content_of_toluene" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Volcanic_ash&quot; means the fine-grained products of explosive volcanic eruptions, such as minerals or crystals, older fragmented rock (e.g. andesite), and glass. Particles within a volcanic ash cloud have diameters less than 2 mm. &quot;Volcanic_ash&quot; does not include non-volcanic dust. " label="AtmosphereMassContentOfVolcanicAsh" title="Atmosphere Mass Content of Volcanic Ash" uid="atmosphere_mass_content_of_volcanic_ash" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Water&quot; means water in all phases." label="AtmosphereMassContentOfWater" title="Atmosphere Mass Content of Water" uid="atmosphere_mass_content_of_water" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Water&quot; means water in all phases. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="AtmosphereMassContentOfWaterInAmbientAerosolParticles" title="Atmosphere Mass Content of Water in Ambient Aerosol Particles" uid="atmosphere_mass_content_of_water_in_ambient_aerosol_particles" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Atmosphere water vapor content is sometimes referred to as &quot;precipitable water&quot;, although this term does not imply the water could all be precipitated." label="AtmosphereMassContentOfWaterVapor" title="Atmosphere Mass Content of Water Vapor" uid="atmosphere_mass_content_of_water_vapor" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="AtmosphereMassContentOfXylene" title="Atmosphere Mass Content of Xylene" uid="atmosphere_mass_content_of_xylene" units="kg m-2"/>
<item description="&quot;Mass_of_air&quot; means the mass due solely to the gaseous constituents of the atmosphere.  The standard name for the mass including precipitation and aerosol particles is atmosphere_mass_per_unit_area." label="AtmosphereMassOfAirPerUnitArea" title="Atmosphere Mass of Air Per Unit Area" uid="atmosphere_mass_of_air_per_unit_area" units="kg m-2"/>
<item description="The chemical formula for carbon dioxide is CO2." label="AtmosphereMassOfCarbonDioxide" title="Atmosphere Mass of Carbon Dioxide" uid="atmosphere_mass_of_carbon_dioxide" units="kg"/>
<item description="&quot;X_area&quot; means the horizontal area occupied by X within the grid cell." label="AtmosphereMassPerUnitArea" title="Atmosphere Mass Per Unit Area" uid="atmosphere_mass_per_unit_area" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The construction &quot;atmosphere_mole_content_of_X&quot; means the vertically integrated number of moles of X above a unit area. The chemical formula for ozone is O3. atmosphere_mole_content_of_ozone is usually measured in Dobson Units which are equivalent to 446.2 micromoles m-2. N.B. Data variables containing column content of ozone can be given the standard name of either equivalent_thickness_at_stp_of_atmosphere_ozone_content or atmosphere_mole_content_of_ozone.The latter name is recommended for consistency with mole content names for chemical species other than ozone." label="AtmosphereMoleContentOfOzone" title="Atmosphere Mole Content of Ozone" uid="atmosphere_mole_content_of_ozone" units="mol m-2"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for acetic_acid is CH3COOH. The IUPAC name for acetic acid is ethanoic acid." label="AtmosphereMolesOfAceticAcid" title="Atmosphere Moles of Acetic Acid" uid="atmosphere_moles_of_acetic_acid" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for aceto-nitrile is CH3CN. The IUPAC name for aceto-nitrile is ethanenitrile." label="AtmosphereMolesOfAcetoNitrile" title="Atmosphere Moles of Aceto Nitrile" uid="atmosphere_moles_of_aceto_nitrile" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for alpha_hexachlorocyclohexane is C6H6Cl6." label="AtmosphereMolesOfAlphaHexachlorocyclohexane" title="Atmosphere Moles of Alpha Hexachlorocyclohexane" uid="atmosphere_moles_of_alpha_hexachlorocyclohexane" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for alpha_pinene is C10H16. The IUPAC name for alpha-pinene is (1S,5S)-2,6,6-trimethylbicyclo[3.1.1]hept-2-ene." label="AtmosphereMolesOfAlphaPinene" title="Atmosphere Moles of Alpha Pinene" uid="atmosphere_moles_of_alpha_pinene" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ammonia is NH3." label="AtmosphereMolesOfAmmonia" title="Atmosphere Moles of Ammonia" uid="atmosphere_moles_of_ammonia" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity.  The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMolesOfAnthropogenicNmvocExpressedAsCarbon" title="Atmosphere Moles of Anthropogenic Nmvoc Expressed As Carbon" uid="atmosphere_moles_of_anthropogenic_nmvoc_expressed_as_carbon" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for atomic bromine is Br." label="AtmosphereMolesOfAtomicBromine" title="Atmosphere Moles of Atomic Bromine" uid="atmosphere_moles_of_atomic_bromine" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for atomic chlorine is Cl." label="AtmosphereMolesOfAtomicChlorine" title="Atmosphere Moles of Atomic Chlorine" uid="atmosphere_moles_of_atomic_chlorine" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for atomic nitrogen is N." label="AtmosphereMolesOfAtomicNitrogen" title="Atmosphere Moles of Atomic Nitrogen" uid="atmosphere_moles_of_atomic_nitrogen" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for benzene is C6H6.  Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="AtmosphereMolesOfBenzene" title="Atmosphere Moles of Benzene" uid="atmosphere_moles_of_benzene" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for beta_pinene is C10H16.  The IUPAC name for beta-pinene is (1S,5S)-6,6-dimethyl-2-methylenebicyclo[3.1.1]heptane." label="AtmosphereMolesOfBetaPinene" title="Atmosphere Moles of Beta Pinene" uid="atmosphere_moles_of_beta_pinene" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Biogenic&quot; means influenced, caused, or created by natural processes. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMolesOfBiogenicNmvocExpressedAsCarbon" title="Atmosphere Moles of Biogenic Nmvoc Expressed As Carbon" uid="atmosphere_moles_of_biogenic_nmvoc_expressed_as_carbon" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for bromine chloride is BrCl." label="AtmosphereMolesOfBromineChloride" title="Atmosphere Moles of Bromine Chloride" uid="atmosphere_moles_of_bromine_chloride" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for bromine monoxide is BrO." label="AtmosphereMolesOfBromineMonoxide" title="Atmosphere Moles of Bromine Monoxide" uid="atmosphere_moles_of_bromine_monoxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for bromine nitrate is BrONO2." label="AtmosphereMolesOfBromineNitrate" title="Atmosphere Moles of Bromine Nitrate" uid="atmosphere_moles_of_bromine_nitrate" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Brox&quot;  describes a family of chemical species consisting of inorganic bromine compounds with the exception of  hydrogen bromide (HBr) and bromine nitrate (BrONO2). &quot;Brox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols.  Standard names that use the term &quot;inorganic_bromine&quot; are used for quantities that contain all inorganic bromine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMolesOfBroxExpressedAsBromine" title="Atmosphere Moles of Brox Expressed As Bromine" uid="atmosphere_moles_of_brox_expressed_as_bromine" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="AtmosphereMolesOfButane" title="Atmosphere Moles of Butane" uid="atmosphere_moles_of_butane" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for carbon dioxide is CO2." label="AtmosphereMolesOfCarbonDioxide" title="Atmosphere Moles of Carbon Dioxide" uid="atmosphere_moles_of_carbon_dioxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for carbon monoxide is CO." label="AtmosphereMolesOfCarbonMonoxide" title="Atmosphere Moles of Carbon Monoxide" uid="atmosphere_moles_of_carbon_monoxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for carbon tetrachloride is CCl4." label="AtmosphereMolesOfCarbonTetrachloride" title="Atmosphere Moles of Carbon Tetrachloride" uid="atmosphere_moles_of_carbon_tetrachloride" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula of CFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="AtmosphereMolesOfCfc11" title="Atmosphere Moles of Cfc11" uid="atmosphere_moles_of_cfc11" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula of CFC113 is CCl2FCClF2. The IUPAC name for CFC113 is 1,1,2-trichloro-1,2,2-trifluoro-ethane." label="AtmosphereMolesOfCfc113" title="Atmosphere Moles of Cfc113" uid="atmosphere_moles_of_cfc113" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula of CFC113a CCl3CF3.  The IUPAC name for CFC113a is 1,1,1-trichloro-2,2,2-trifluoro-ethane." label="AtmosphereMolesOfCfc113a" title="Atmosphere Moles of Cfc113a" uid="atmosphere_moles_of_cfc113a" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula of CFC114 is CClF2CClF2. The IUPAC name for CFC114 is 1,2-dichloro-1,1,2,2-tetrafluoro-ethane." label="AtmosphereMolesOfCfc114" title="Atmosphere Moles of Cfc114" uid="atmosphere_moles_of_cfc114" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula of CFC115 is CClF2CF3. The IUPAC name for CFC115 is 1-chloro-1,1,2,2,2-pentafluoro-ethane." label="AtmosphereMolesOfCfc115" title="Atmosphere Moles of Cfc115" uid="atmosphere_moles_of_cfc115" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for CFC12 is CF2Cl2.  The IUPAC name for CFC12 is dichloro-difluoro-methane." label="AtmosphereMolesOfCfc12" title="Atmosphere Moles of Cfc12" uid="atmosphere_moles_of_cfc12" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for chlorine dioxide is OClO." label="AtmosphereMolesOfChlorineDioxide" title="Atmosphere Moles of Chlorine Dioxide" uid="atmosphere_moles_of_chlorine_dioxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for chlorine monoxide is ClO." label="AtmosphereMolesOfChlorineMonoxide" title="Atmosphere Moles of Chlorine Monoxide" uid="atmosphere_moles_of_chlorine_monoxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for chlorine nitrate is ClONO2." label="AtmosphereMolesOfChlorineNitrate" title="Atmosphere Moles of Chlorine Nitrate" uid="atmosphere_moles_of_chlorine_nitrate" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Clox&quot; describes a family of chemical species consisting of inorganic chlorine compounds with the exception of  hydrogen chloride (HCl) and chlorine nitrate (ClONO2). &quot;Clox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols.   Standard names that use the term &quot;inorganic_chlorine&quot; are used for quantities that contain all inorganic chlorine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMolesOfCloxExpressedAsChlorine" title="Atmosphere Moles of Clox Expressed As Chlorine" uid="atmosphere_moles_of_clox_expressed_as_chlorine" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for dichlorine peroxide is Cl2O2." label="AtmosphereMolesOfDichlorinePeroxide" title="Atmosphere Moles of Dichlorine Peroxide" uid="atmosphere_moles_of_dichlorine_peroxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for dimethyl sulfide is (CH3)2S.  Dimethyl sulfide is sometimes referred to as DMS." label="AtmosphereMolesOfDimethylSulfide" title="Atmosphere Moles of Dimethyl Sulfide" uid="atmosphere_moles_of_dimethyl_sulfide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for dinitrogen pentoxide is N2O5." label="AtmosphereMolesOfDinitrogenPentoxide" title="Atmosphere Moles of Dinitrogen Pentoxide" uid="atmosphere_moles_of_dinitrogen_pentoxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="AtmosphereMolesOfEthane" title="Atmosphere Moles of Ethane" uid="atmosphere_moles_of_ethane" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ethanol is C2H5OH." label="AtmosphereMolesOfEthanol" title="Atmosphere Moles of Ethanol" uid="atmosphere_moles_of_ethanol" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="AtmosphereMolesOfEthene" title="Atmosphere Moles of Ethene" uid="atmosphere_moles_of_ethene" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ethyne is HC2H.  Ethyne is the IUPAC name for this species, which is also commonly known as acetylene." label="AtmosphereMolesOfEthyne" title="Atmosphere Moles of Ethyne" uid="atmosphere_moles_of_ethyne" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="AtmosphereMolesOfFormaldehyde" title="Atmosphere Moles of Formaldehyde" uid="atmosphere_moles_of_formaldehyde" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for formic acid is HCOOH.  The IUPAC name for formic acid is methanoic acid." label="AtmosphereMolesOfFormicAcid" title="Atmosphere Moles of Formic Acid" uid="atmosphere_moles_of_formic_acid" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s) in a salt or to other atom(s) in a molecule." label="AtmosphereMolesOfGaseousDivalentMercury" title="Atmosphere Moles of Gaseous Divalent Mercury" uid="atmosphere_moles_of_gaseous_divalent_mercury" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for mercury is Hg." label="AtmosphereMolesOfGaseousElementalMercury" title="Atmosphere Moles of Gaseous Elemental Mercury" uid="atmosphere_moles_of_gaseous_elemental_mercury" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for halon1202 is CBr2F2. The IUPAC name for halon1202 is dibromo-difluoro-methane." label="AtmosphereMolesOfHalon1202" title="Atmosphere Moles of Halon1202" uid="atmosphere_moles_of_halon1202" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for halon1211 is CBrClF2. The IUPAC name for halon1211 is bromo-chloro-difluoro-methane." label="AtmosphereMolesOfHalon1211" title="Atmosphere Moles of Halon1211" uid="atmosphere_moles_of_halon1211" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for halon1301 is CBrF3. The IUPAC name for halon1301 is bromo-trifluoro-methane." label="AtmosphereMolesOfHalon1301" title="Atmosphere Moles of Halon1301" uid="atmosphere_moles_of_halon1301" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for halo2402 is C2Br2F4. The IUPAC name for halon2402 is 1,2-dibromo-1,1,2,2-tetrafluoro-ethane." label="AtmosphereMolesOfHalon2402" title="Atmosphere Moles of Halon2402" uid="atmosphere_moles_of_halon2402" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hcc140a is CH3CCl3. The IUPAC name for hcc140a is 1,1,1-trichloro-ethane." label="AtmosphereMolesOfHcc140a" title="Atmosphere Moles of Hcc140a" uid="atmosphere_moles_of_hcc140a" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for HCFC141b is CH3CCl2F. The IUPAC name for HCFC141b is 1,1-dichloro-1-fluoroethane." label="AtmosphereMolesOfHcfc141b" title="Atmosphere Moles of Hcfc141b" uid="atmosphere_moles_of_hcfc141b" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for HCFC142b is CH3CClF2. The IUPAC name for HCFC142b is 1-chloro-1,1-difluoroethane." label="AtmosphereMolesOfHcfc142b" title="Atmosphere Moles of Hcfc142b" uid="atmosphere_moles_of_hcfc142b" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for HCFC22 is CHClF2.  The IUPAC name for HCFC22 is chloro-difluoro-methane." label="AtmosphereMolesOfHcfc22" title="Atmosphere Moles of Hcfc22" uid="atmosphere_moles_of_hcfc22" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hexachlorobiphenyl is C12H4Cl6.  This structure of this species consists of two linked benzene rings, each of which is additionally bonded to three chlorine atoms." label="AtmosphereMolesOfHexachlorobiphenyl" title="Atmosphere Moles of Hexachlorobiphenyl" uid="atmosphere_moles_of_hexachlorobiphenyl" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;HOx&quot; means a combination of two radical species containing hydrogen and oxygen: OH and HO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMolesOfHoxExpressedAsHydrogen" title="Atmosphere Moles of Hox Expressed As Hydrogen" uid="atmosphere_moles_of_hox_expressed_as_hydrogen" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hydrogen bromide is HBr." label="AtmosphereMolesOfHydrogenBromide" title="Atmosphere Moles of Hydrogen Bromide" uid="atmosphere_moles_of_hydrogen_bromide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hydrogen chloride is HCl." label="AtmosphereMolesOfHydrogenChloride" title="Atmosphere Moles of Hydrogen Chloride" uid="atmosphere_moles_of_hydrogen_chloride" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hydrogen cyanide is HCN." label="AtmosphereMolesOfHydrogenCyanide" title="Atmosphere Moles of Hydrogen Cyanide" uid="atmosphere_moles_of_hydrogen_cyanide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hydrogen peroxide is H2O2." label="AtmosphereMolesOfHydrogenPeroxide" title="Atmosphere Moles of Hydrogen Peroxide" uid="atmosphere_moles_of_hydrogen_peroxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for the hydroperoxyl radical is HO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="AtmosphereMolesOfHydroperoxylRadical" title="Atmosphere Moles of Hydroperoxyl Radical" uid="atmosphere_moles_of_hydroperoxyl_radical" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for the hydroxyl radical is OH. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="AtmosphereMolesOfHydroxylRadical" title="Atmosphere Moles of Hydroxyl Radical" uid="atmosphere_moles_of_hydroxyl_radical" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hypobromous acid is HOBr." label="AtmosphereMolesOfHypobromousAcid" title="Atmosphere Moles of Hypobromous Acid" uid="atmosphere_moles_of_hypobromous_acid" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hypochlorous acid is HOCl." label="AtmosphereMolesOfHypochlorousAcid" title="Atmosphere Moles of Hypochlorous Acid" uid="atmosphere_moles_of_hypochlorous_acid" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols. &quot;Inorganic bromine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;brox&quot; are used for quantities that contain all inorganic bromine species except HBr and BrONO2." label="AtmosphereMolesOfInorganicBromine" title="Atmosphere Moles of Inorganic Bromine" uid="atmosphere_moles_of_inorganic_bromine" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols. &quot;Inorganic chlorine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;clox&quot; are used for quantities that contain all inorganic chlorine species except HCl and ClONO2." label="AtmosphereMolesOfInorganicChlorine" title="Atmosphere Moles of Inorganic Chlorine" uid="atmosphere_moles_of_inorganic_chlorine" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for isoprene is CH2=C(CH3)CH=CH2. The IUPAC name for isoprene is 2-methyl-buta-1,3-diene. Isoprene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="AtmosphereMolesOfIsoprene" title="Atmosphere Moles of Isoprene" uid="atmosphere_moles_of_isoprene" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for limonene is C10H16. The IUPAC name for limonene is 1-methyl-4-prop-1-en-2-yl-cyclohexene. Limonene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="AtmosphereMolesOfLimonene" title="Atmosphere Moles of Limonene" uid="atmosphere_moles_of_limonene" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="AtmosphereMolesOfMethane" title="Atmosphere Moles of Methane" uid="atmosphere_moles_of_methane" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methanol is CH3OH." label="AtmosphereMolesOfMethanol" title="Atmosphere Moles of Methanol" uid="atmosphere_moles_of_methanol" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methyl bromide is CH3Br. The IUPAC name for methyl bromide is bromomethane." label="AtmosphereMolesOfMethylBromide" title="Atmosphere Moles of Methyl Bromide" uid="atmosphere_moles_of_methyl_bromide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methyl chloride is CH3Cl. The IUPAC name for methyl chloride is chloromethane." label="AtmosphereMolesOfMethylChloride" title="Atmosphere Moles of Methyl Chloride" uid="atmosphere_moles_of_methyl_chloride" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methyl hydroperoxide is CH3OOH." label="AtmosphereMolesOfMethylHydroperoxide" title="Atmosphere Moles of Methyl Hydroperoxide" uid="atmosphere_moles_of_methyl_hydroperoxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methyl_peroxy_radical is CH3O2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="AtmosphereMolesOfMethylPeroxyRadical" title="Atmosphere Moles of Methyl Peroxy Radical" uid="atmosphere_moles_of_methyl_peroxy_radical" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for molecular hydrogen is H2." label="AtmosphereMolesOfMolecularHydrogen" title="Atmosphere Moles of Molecular Hydrogen" uid="atmosphere_moles_of_molecular_hydrogen" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="AtmosphereMolesOfNitrateRadical" title="Atmosphere Moles of Nitrate Radical" uid="atmosphere_moles_of_nitrate_radical" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitric acid is HNO3." label="AtmosphereMolesOfNitricAcid" title="Atmosphere Moles of Nitric Acid" uid="atmosphere_moles_of_nitric_acid" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The chemical formula for nitric acid is HNO3. Nitric acid trihydrate, sometimes referred to as NAT, is a stable crystalline substance consisting of three molecules of water to one molecule of nitric acid." label="AtmosphereMolesOfNitricAcidTrihydrateAmbientAerosolParticles" title="Atmosphere Moles of Nitric Acid Trihydrate Ambient Aerosol Particles" uid="atmosphere_moles_of_nitric_acid_trihydrate_ambient_aerosol_particles" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitrogen dioxide is NO2." label="AtmosphereMolesOfNitrogenDioxide" title="Atmosphere Moles of Nitrogen Dioxide" uid="atmosphere_moles_of_nitrogen_dioxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitrogen monoxide is NO." label="AtmosphereMolesOfNitrogenMonoxide" title="Atmosphere Moles of Nitrogen Monoxide" uid="atmosphere_moles_of_nitrogen_monoxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitrous acid is HNO2." label="AtmosphereMolesOfNitrousAcid" title="Atmosphere Moles of Nitrous Acid" uid="atmosphere_moles_of_nitrous_acid" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitrous oxide is N2O." label="AtmosphereMolesOfNitrousOxide" title="Atmosphere Moles of Nitrous Oxide" uid="atmosphere_moles_of_nitrous_oxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMolesOfNmvocExpressedAsCarbon" title="Atmosphere Moles of Nmvoc Expressed As Carbon" uid="atmosphere_moles_of_nmvoc_expressed_as_carbon" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMolesOfNoxExpressedAsNitrogen" title="Atmosphere Moles of Nox Expressed As Nitrogen" uid="atmosphere_moles_of_nox_expressed_as_nitrogen" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2) , chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="AtmosphereMolesOfNoyExpressedAsNitrogen" title="Atmosphere Moles of Noy Expressed As Nitrogen" uid="atmosphere_moles_of_noy_expressed_as_nitrogen" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ozone is O3." label="AtmosphereMolesOfOzone" title="Atmosphere Moles of Ozone" uid="atmosphere_moles_of_ozone" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for peroxyacetyl nitrate, sometimes referred to as PAN, is CH3COO2NO2.  The IUPAC name for peroxyacetyl_nitrate is nitroethaneperoxoate." label="AtmosphereMolesOfPeroxyacetylNitrate" title="Atmosphere Moles of Peroxyacetyl Nitrate" uid="atmosphere_moles_of_peroxyacetyl_nitrate" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for peroxynitric acid, sometimes referred to as PNA, is HO2NO2." label="AtmosphereMolesOfPeroxynitricAcid" title="Atmosphere Moles of Peroxynitric Acid" uid="atmosphere_moles_of_peroxynitric_acid" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="AtmosphereMolesOfPropane" title="Atmosphere Moles of Propane" uid="atmosphere_moles_of_propane" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="AtmosphereMolesOfPropene" title="Atmosphere Moles of Propene" uid="atmosphere_moles_of_propene" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for radon is Rn." label="AtmosphereMolesOfRadon" title="Atmosphere Moles of Radon" uid="atmosphere_moles_of_radon" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for sulfur dioxide is SO2." label="AtmosphereMolesOfSulfurDioxide" title="Atmosphere Moles of Sulfur Dioxide" uid="atmosphere_moles_of_sulfur_dioxide" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for toluene is C6H5CH3.  Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group.  The systematic name for toluene is methylbenzene." label="AtmosphereMolesOfToluene" title="Atmosphere Moles of Toluene" uid="atmosphere_moles_of_toluene" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe." label="AtmosphereMolesOfWaterVapor" title="Atmosphere Moles of Water Vapor" uid="atmosphere_moles_of_water_vapor" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="AtmosphereMolesOfXylene" title="Atmosphere Moles of Xylene" uid="atmosphere_moles_of_xylene" units="mol"/>
<item description="" label="AtmosphereMomentumDiffusivity" title="Atmosphere Momentum Diffusivity" uid="atmosphere_momentum_diffusivity" units="m2 s-1"/>
<item description="&quot;longwave&quot; means longwave radiation. Net absorbed radiation is the difference between absorbed and emitted radiation." label="AtmosphereNetRateOfAbsorptionOfLongwaveEnergy" title="Atmosphere Net Rate of Absorption of Longwave Energy" uid="atmosphere_net_rate_of_absorption_of_longwave_energy" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. Net absorbed radiation is the difference between absorbed and emitted radiation." label="AtmosphereNetRateOfAbsorptionOfShortwaveEnergy" title="Atmosphere Net Rate of Absorption of Shortwave Energy" uid="atmosphere_net_rate_of_absorption_of_shortwave_energy" units="W m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The atmosphere convective mass flux is the vertical transport of mass for a field of cumulus clouds or thermals, given by the product of air density and vertical velocity. Net upward convective mass flux is the difference between the updraft mass flux and the downdraft mass flux. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). For an area-average, cell_methods should specify whether the average is over all the area or the area of updrafts and/or downdrafts only." label="AtmosphereNetUpwardConvectiveMassFlux" title="Atmosphere Net Upward Convective Mass Flux" uid="atmosphere_net_upward_convective_mass_flux" units="kg m-2 s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The atmosphere convective mass flux is the vertical transport of mass for a field of cumulus clouds or thermals, given by the product of air density and vertical velocity. For an area-average, cell_methods should specify whether the average is over all the area or the area of updrafts and/or downdrafts only.  Net upward convective mass flux is the difference between the updraft mass flux and the downdraft mass flux." label="AtmosphereNetUpwardDeepConvectiveMassFlux" title="Atmosphere Net Upward Deep Convective Mass Flux" uid="atmosphere_net_upward_deep_convective_mass_flux" units="kg m-2 s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The atmosphere convective mass flux is the vertical transport of mass for a field of cumulus clouds or thermals, given by the product of air density and vertical velocity. For an area-average, cell_methods should specify whether the average is over all the area or the area of updrafts and/or downdrafts only.  Net upward convective mass flux is the difference between the updraft mass flux and the downdraft mass flux." label="AtmosphereNetUpwardShallowConvectiveMassFlux" title="Atmosphere Net Upward Shallow Convective Mass Flux" uid="atmosphere_net_upward_shallow_convective_mass_flux" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Atmosphere_Xward_stress is a stress which tends to accelerate the atmosphere in direction X." label="AtmosphereNorthwardStressDueToGravityWaveDrag" title="Atmosphere Northward Stress Due To Gravity Wave Drag" uid="atmosphere_northward_stress_due_to_gravity_wave_drag" units="Pa"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself." label="AtmosphereNumberContentOfAerosolParticles" title="Atmosphere Number Content of Aerosol Particles" uid="atmosphere_number_content_of_aerosol_particles" units="m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereNumberContentOfCloudDroplets" title="Atmosphere Number Content of Cloud Droplets" uid="atmosphere_number_content_of_cloud_droplets" units="m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereNumberContentOfIceCrystals" title="Atmosphere Number Content of Ice Crystals" uid="atmosphere_number_content_of_ice_crystals" units="m-2"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="AtmosphereOpticalThicknessDueToAmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-&quot;optical_thickness&quot;) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToAmmoniumAmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Ammonium Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_ammonium_ambient_aerosol_particles" units="1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. &quot;Aerosol&quot; means the suspended liquid or solid particles in air (except cloud droplets).  &quot;Ambient aerosol&quot; is aerosol that has taken up ambient water through hygroscopic growth.  The extent of hygroscopic growth depends on the relative humidity and the composition of the aerosol.  Black carbon aerosol is composed of elemental carbon.  It is strongly light absorbing." label="AtmosphereOpticalThicknessDueToBlackCarbonAmbientAerosol" title="Atmosphere Optical Thickness Due To Black Carbon Ambient Aerosol" uid="atmosphere_optical_thickness_due_to_black_carbon_ambient_aerosol" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. &quot;Cloud&quot; means the component of extinction owing to the presence of liquid or ice water particles. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToCloud" title="Atmosphere Optical Thickness Due To Cloud" uid="atmosphere_optical_thickness_due_to_cloud" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path.  A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. The atmosphere optical thickness applies to radiation passing through the entire atmosphere.  Convective cloud is that produced by the convection schemes in an atmosphere model.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="AtmosphereOpticalThicknessDueToConvectiveCloud" title="Atmosphere Optical Thickness Due To Convective Cloud" uid="atmosphere_optical_thickness_due_to_convective_cloud" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToDustAmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Dust Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_dust_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-&quot;optical_thickness&quot;) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToDustDryAerosolParticles" title="Atmosphere Optical Thickness Due To Dust Dry Aerosol Particles" uid="atmosphere_optical_thickness_due_to_dust_dry_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-&quot;optical_thickness&quot;) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The chemical formula for the nitrate anion is NO3-." label="AtmosphereOpticalThicknessDueToNitrateAmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Nitrate Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_nitrate_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToParticulateOrganicMatterAmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Particulate Organic Matter Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_particulate_organic_matter_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself.  &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToPm10AmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Pm10 Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_pm10_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm1 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 1 micrometer. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToPm1AmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Pm1 Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_pm1_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToPm2p5AmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Pm2p5 Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_pm2p5_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToSeasaltAmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Seasalt Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_seasalt_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path.  A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. The atmosphere optical thickness applies to radiation passing through the entire atmosphere.  In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="AtmosphereOpticalThicknessDueToStratiformCloud" title="Atmosphere Optical Thickness Due To Stratiform Cloud" uid="atmosphere_optical_thickness_due_to_stratiform_cloud" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-&quot;optical_thickness&quot;) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToSulfateAmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Sulfate Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_sulfate_ambient_aerosol_particles" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;atmosphere_optical_thickness_due_to_water_in_ambient_aerosol&quot; refers to the optical thickness due to the water that is associated with aerosol particles due to hygroscopic growth in ambient air, affecting the radius and refractive index of the particle. It corresponds to the difference between the total dry aerosol optical thickness and the total ambient aerosol optical thickness. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToWaterInAmbientAerosolParticles" title="Atmosphere Optical Thickness Due To Water in Ambient Aerosol Particles" uid="atmosphere_optical_thickness_due_to_water_in_ambient_aerosol_particles" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)" label="AtmospherePotentialEnergyContent" title="Atmosphere Potential Energy Content" uid="atmosphere_potential_energy_content" units="J m-2"/>
<item description="Relative vorticity is the upward component of the vorticity vector i.e. the component which arises from horizontal velocity." label="AtmosphereRelativeVorticity" title="Atmosphere Relative Vorticity" uid="atmosphere_relative_vorticity" units="s-1"/>
<item description="See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="AtmosphereSigmaCoordinate" title="Atmosphere Sigma Coordinate" uid="atmosphere_sigma_coordinate" units="1"/>
<item description="See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="AtmosphereSleveCoordinate" title="Atmosphere Sleve Coordinate" uid="atmosphere_sleve_coordinate" units="1"/>
<item description="The atmosphere_stability_k_index is an index that indicates the potential of severe convection and is often referred to a simply the k index. The index is derived from the difference in air temperature between 850 and 500 hPa, the dew point temperature at 850 hPa, and the difference between the air temperature and the dew point temperature at 700 hPa. " label="AtmosphereStabilityKIndex" title="Atmosphere Stability K Index" uid="atmosphere_stability_k_index" units="K"/>
<item description="The atmosphere_stability_showalter_index is an index used to determine convective and thunderstorm potential and is often referred to as simply the showalter index. The index is defined as the temperature difference between a parcel of air lifted from 850 to 500 hPa (wet adiabatically) and the ambient air temperature at 500 hPa. " label="AtmosphereStabilityShowalterIndex" title="Atmosphere Stability Showalter Index" uid="atmosphere_stability_showalter_index" units="K"/>
<item description="The atmosphere_stability_total_totals_index indicates the likelihood of severe convection and is often referred to as simply the total totals index. The index is derived from the difference in air temperature between 850 and 500 hPa (the vertical totals) and the difference between the dew point temperature at 850 hPa and the air temperature at 500 hPa (the cross totals). The vertical totals and cross totals are summed to obtain the index." label="AtmosphereStabilityTotalTotalsIndex" title="Atmosphere Stability Total Totals Index" uid="atmosphere_stability_total_totals_index" units="K"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The atmosphere convective mass flux is the vertical transport of mass for a field of cumulus clouds or thermals, given by the product of air density and vertical velocity. For an area-average, cell_methods should specify whether the average is over all the area or the area of updrafts and/or downdrafts only.  &quot;Updraft&quot; means that the flux is  positive in the updward direction (negative downward)." label="AtmosphereUpdraftConvectiveMassFlux" title="Atmosphere Updraft Convective Mass Flux" uid="atmosphere_updraft_convective_mass_flux" units="kg m-2 s-1"/>
<item description="The Automated Tropical Cyclone Forecasting System (ATCF) storm identifier is an 8 character string which identifies a tropical cyclone. The storm identifier has the form BBCCYYYY, where BB is the ocean basin, specifically: AL - North Atlantic basin, north of the Equator; SL - South Atlantic basin, south of the Equator; EP - North East Pacific basin, eastward of 140 degrees west longitude; CP - North Central Pacific basin, between the dateline and 140 degrees west longitude; WP -North West Pacific basin, westward of the dateline; IO - North Indian Ocean basin, north of the Equator between 40 and 100 degrees east longitude; SH - South Pacific Ocean basin and South Indian Ocean basin. CC is the cyclone number. Numbers 01 through 49 are reserved for tropical and subtropical cyclones. A cyclone number is assigned to each tropical or subtropical cyclone in each basin as it develops. Numbers are assigned in chronological order. Numbers 50 through 79 are reserved for internal use by operational forecast centers. Numbers 80 through 89 are reserved for training, exercises and testing. Numbers 90 through 99 are reserved for tropical disturbances having the potential to become tropical or subtropical cyclones. The 90's are assigned sequentially and reused throughout the calendar year. YYYY is the four-digit year. This is calendar year for the northern hemisphere. For the southern hemisphere, the year begins July 1, with calendar year plus one. Reference: Miller, R.J., Schrader, A.J., Sampson, C.R., &amp; Tsui, T.L. (1990), The Automated Tropical Cyclone Forecasting System (ATCF), American Meteorological Society Computer Techniques, 5, 653-660." label="AutomatedTropicalCycloneForecastingSystemStormIdentifier" title="Automated Tropical Cyclone Forecasting System Storm Identifier" uid="automated_tropical_cyclone_forecasting_system_storm_identifier" units=""/>
<item description="Scattering of radiation is its deflection from its incident path without loss of energy.  Backwards scattering refers to the sum of scattering into all backward angles i.e. scattering_angle exceeding pi/2 radians. A scattering_angle should not be specified with this quantity.  &quot;Backscattering ratio&quot; is the ratio of the  quantity with standard name volume_attenuated_backwards_scattering_function_in_air to the quantity with standard name volume_attenuated_backwards_scattering_function_in_air_assuming_no_aerosol_or_cloud." label="BackscatteringRatio" title="Backscattering Ratio" uid="backscattering_ratio" units="1"/>
<item description="A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward)." label="BaroclinicEastwardSeaWaterVelocity" title="Baroclinic Eastward Sea Water Velocity" uid="baroclinic_eastward_sea_water_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward)." label="BaroclinicNorthwardSeaWaterVelocity" title="Baroclinic Northward Sea Water Velocity" uid="baroclinic_northward_sea_water_velocity" units="m s-1"/>
<item description="Barometric altitude is the altitude determined by a pressure measurement which is converted to altitude through interpolation of the International Standard Atmosphere (ICAO, 1976).  A mean sea level pressure of 1013.25 hPa is used for the surface pressure." label="BarometricAltitude" title="Barometric Altitude" uid="barometric_altitude" units="m"/>
<item description="A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward)." label="BarotropicEastwardSeaWaterVelocity" title="Barotropic Eastward Sea Water Velocity" uid="barotropic_eastward_sea_water_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward)." label="BarotropicNorthwardSeaWaterVelocity" title="Barotropic Northward Sea Water Velocity" uid="barotropic_northward_sea_water_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity.  &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x." label="BarotropicSeaWaterXVelocity" title="Barotropic Sea Water X Velocity" uid="barotropic_sea_water_x_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity.  &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y." label="BarotropicSeaWaterYVelocity" title="Barotropic Sea Water Y Velocity" uid="barotropic_sea_water_y_velocity" units="m s-1"/>
<item description="&quot;Baseflow&quot; is subsurface runoff which takes place below the level of the water table. Runoff is the liquid water which drains from land. &quot;Amount&quot; means mass per unit area." label="BaseflowAmount" title="Baseflow Amount" uid="baseflow_amount" units="kg m-2"/>
<item description="&quot;Beaufort wind force&quot; is an index assigned on the Beaufort wind force scale and relates a qualitative description of the degree of disturbance or destruction caused by wind to the speed of the wind.  The Beaufort wind scale varies between 0 (qualitatively described as calm, smoke rises vertically, sea appears glassy) (wind speeds in the range 0 - 0.2 m s-1) and 12 (hurricane, wave heights in excess of 14 m) (wind speeds in excess of 32.7 m s-1)." label="BeaufortWindForce" title="Beaufort Wind Force" uid="beaufort_wind_force" units="1"/>
<item description="Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level. &quot;Bedrock&quot; is the solid Earth surface beneath land ice or ocean water." label="BedrockAltitude" title="Bedrock Altitude" uid="bedrock_altitude" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level. &quot;Bedrock&quot; is the solid Earth surface beneath land ice or ocean water. The zero of bedrock altitude change is arbitrary. Isostatic adjustment is the vertical movement of the lithosphere due to changing surface ice and water loads." label="BedrockAltitudeChangeDueToIsostaticAdjustment" title="Bedrock Altitude Change Due To Isostatic Adjustment" uid="bedrock_altitude_change_due_to_isostatic_adjustment" units="m"/>
<item description="" label="BioluminescentPhotonRateInSeaWater" title="Bioluminescent Photon Rate in Sea Water" uid="bioluminescent_photon_rate_in_sea_water" units="s-1 m-3"/>
<item description="&quot;Biomass burning carbon&quot; refers to the rate at which biomass is burned by forest fires etc., expressed as the mass of carbon which it contains. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="BiomassBurningCarbonFlux" title="Biomass Burning Carbon Flux" uid="biomass_burning_carbon_flux" units="kg m-2 s-1"/>
<item description="Bolus velocity in an ocean model means the velocity due to a scheme representing eddy-induced effects which are not resolved on the grid scale of the model.  &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward)." label="BolusEastwardSeaWaterVelocity" title="Bolus Eastward Sea Water Velocity" uid="bolus_eastward_sea_water_velocity" units="m s-1"/>
<item description="Bolus velocity in an ocean model means the velocity due to a scheme representing eddy-induced effects which are not resolved on the grid scale of the model.  &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward)." label="BolusNorthwardSeaWaterVelocity" title="Bolus Northward Sea Water Velocity" uid="bolus_northward_sea_water_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. Bolus velocity in an ocean model means the velocity due to a scheme representing eddy-induced effects which are not resolved on the grid scale of the model. bolus_sea_water_x_velocity is used in some parameterisations of lateral diffusion in the ocean." label="BolusSeaWaterXVelocity" title="Bolus Sea Water X Velocity" uid="bolus_sea_water_x_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. Bolus velocity in an ocean model means the velocity due to a scheme representing eddy-induced effects which are not resolved on the grid scale of the model. bolus_sea_water_y_velocity is used in some parameterisations of lateral diffusion in the ocean." label="BolusSeaWaterYVelocity" title="Bolus Sea Water Y Velocity" uid="bolus_sea_water_y_velocity" units="m s-1"/>
<item description="Bolus velocity in an ocean model means the velocity due to a scheme representing eddy-induced effects which are not resolved on the grid scale of the model.  &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward)." label="BolusUpwardSeaWaterVelocity" title="Bolus Upward Sea Water Velocity" uid="bolus_upward_sea_water_velocity" units="m s-1"/>
<item description="The brightness temperature of a body is the temperature of a black body which radiates the same power per unit solid angle per unit area." label="BrightnessTemperature" title="Brightness Temperature" uid="brightness_temperature" units="K"/>
<item description="The brightness temperature of a body is the temperature of a black body which radiates the same power per unit solid angle per unit area. &quot;anomaly&quot; means difference from climatology." label="BrightnessTemperatureAnomaly" title="Brightness Temperature Anomaly" uid="brightness_temperature_anomaly" units="K"/>
<item description="cloud_top refers to the top of the highest cloud. brightness_temperature of a body is the temperature of a black body which radiates the same power per unit solid angle per unit area. A coordinate variable of radiation_wavelength, sensor_band_central_radiation_wavelength, or radiation_frequency may be specified to indicate that the brightness temperature applies at specific wavelengths or frequencies." label="BrightnessTemperatureAtCloudTop" title="Brightness Temperature At Cloud Top" uid="brightness_temperature_at_cloud_top" units="K"/>
<item description="Frequency is the number of oscillations of a wave per unit time." label="BruntVaisalaFrequencyInAir" title="Brunt Vaisala Frequency in Air" uid="brunt_vaisala_frequency_in_air" units="s-1"/>
<item description="&quot;X_area&quot; means the horizontal area occupied by X within the grid cell. The extent of an individual grid cell is defined by the horizontal coordinates and any associated coordinate bounds or by a string valued auxiliary coordinate variable with a standard name of &quot;region&quot;. &quot;Burned area&quot; means the area of burned vegetation." label="BurnedArea" title="Burned Area" uid="burned_area" units="m2"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. &quot;Burned area&quot; means the area of burned vegetation." label="BurnedAreaFraction" title="Burned Area Fraction" uid="burned_area_fraction" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Amount&quot; means mass per unit area. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. &quot;Canopy&quot; means the plant or vegetation canopy. &quot;Canopy and surface water&quot; means the sum of water on the ground and on the canopy." label="CanopyAndSurfaceWaterAmount" title="Canopy And Surface Water Amount" uid="canopy_and_surface_water_amount" units="kg m-2"/>
<item description="Height is the vertical distance above the surface. &quot;Canopy&quot; means the plant or vegetation canopy." label="CanopyHeight" title="Canopy Height" uid="canopy_height" units="m"/>
<item description="&quot;Canopy&quot; means the plant or vegetation canopy. The &quot;canopy_resistance&quot; is the resistance of a compound to uptake by the vegetation canopy. It varies both with the surface and the chemical species or physical state (gas or particle). Canopy resistance is a function of the canopy stomatal resistance (Rstom), the canopy cuticle resistance (Rcuticle), and the soil resistance (Rsoil). In the case of ozone the uptake by the cuticle is small compared to the uptake through the stomata, reference: Kerstiens and Lendzian, 1989. This means that the cuticle transfer pathway can be neglected in model parameterizations, reference: Ganzeveld and Jos Lelieveld , 1995, doi/10.1029/95JD02266/pdf. The chemical formula for ozone is O3. The IUPAC name for ozone is trioxygen." label="CanopyResistanceToOzoneDryDeposition" title="Canopy Resistance To Ozone Dry Deposition" uid="canopy_resistance_to_ozone_dry_deposition" units="m-1 s"/>
<item description="&quot;Canopy&quot; means the plant or vegetation canopy.  &quot;Canopy_temperature&quot; is the bulk temperature of the canopy, not the surface (skin) temperature." label="CanopyTemperature" title="Canopy Temperature" uid="canopy_temperature" units="K"/>
<item description="&quot;Canopy&quot; means the plant or vegetation canopy.  &quot;Throughfall&quot; is the part of the precipitation flux that reaches the ground directly through the vegetative canopy, through intershrub spaces in the canopy, and as drip from the leaves, twigs, and stems (but not including snowmelt).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="CanopyThroughfallFlux" title="Canopy Throughfall Flux" uid="canopy_throughfall_flux" units="kg m-2 s-1"/>
<item description="&quot;Amount&quot; means mass per unit area. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. &quot;Canopy&quot; means the plant or vegetation canopy. The canopy water is the water on the canopy." label="CanopyWaterAmount" title="Canopy Water Amount" uid="canopy_water_amount" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. Examples of &quot;forestry and agricultural products&quot; are paper, cardboard, furniture, timber for construction, biofuels and food for both humans and livestock. Models that simulate land use changes have one or more pools of carbon that represent these products in order to conserve carbon and allow its eventual release into the atmosphere, for example, when the products decompose in landfill sites." label="CarbonContentOfForestryAndAgriculturalProducts" title="Carbon Content of Forestry And Agricultural Products" uid="carbon_content_of_forestry_and_agricultural_products" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity. Examples of &quot;forestry and agricultural products&quot; are paper, cardboard, furniture, timber for construction, biofuels and food for both humans and livestock. Models that simulate land use changes have one or more pools of carbon that represent these products in order to conserve carbon and allow its eventual release into the atmosphere, for example, when the products decompose in landfill sites. &quot;Anthropogenic land use change&quot; means human changes to land, excluding forest regrowth. It includes fires ignited by humans for the purpose of land use change and the processes of eventual disposal and decomposition of wood products such as paper, cardboard, furniture and timber for construction." label="CarbonMassFluxIntoForestryAndAgriculturalProductsDueToAnthropogenicLandUseOrLandCoverChange" title="Carbon Mass Flux Into Forestry And Agricultural Products Due To Anthropogenic Land Use Or Land Cover Change" uid="carbon_mass_flux_into_forestry_and_agricultural_products_due_to_anthropogenic_land_use_or_land_cover_change" units="kg m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. &quot;Litter&quot; is dead plant material in or above the soil. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity. &quot;Anthropogenic land use change&quot; means human changes to land, excluding forest regrowth. It includes fires ignited by humans for the purpose of land use change and the processes of eventual disposal and decomposition of wood products such as paper, cardboard, furniture and timber for construction." label="CarbonMassFluxIntoSoilAndLitterDueToAnthropogenicLandUseOrLandCoverChange" title="Carbon Mass Flux Into Soil And Litter Due To Anthropogenic Land Use Or Land Cover Change" uid="carbon_mass_flux_into_soil_and_litter_due_to_anthropogenic_land_use_or_land_cover_change" units="kg m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. &quot;Litter&quot; is dead plant material in or above the soil." label="CarbonMassFluxIntoSoilFromLitter" title="Carbon Mass Flux Into Soil From Litter" uid="carbon_mass_flux_into_soil_from_litter" units="kg m-2 s-1"/>
<item description="&quot;Vegetation&quot; means any plants e.g. trees, shrubs, grass.  &quot;Litter&quot; is dead plant material in or above the soil. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="CarbonMassFluxIntoSoilFromVegetationExcludingLitter" title="Carbon Mass Flux Into Soil From Vegetation Excluding Litter" uid="carbon_mass_flux_into_soil_from_vegetation_excluding_litter" units="kg m-2 s-1"/>
<item description="&quot;Cell_area&quot; is the horizontal area of a gridcell." label="CellArea" title="Cell Area" uid="cell_area" units="m2"/>
<item description="&quot;Thickness&quot; means the vertical extent of a layer. &quot;Cell&quot; refers to a model grid-cell." label="CellThickness" title="Cell Thickness" uid="cell_thickness" units="m"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;wrt&quot; means with respect to. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Atmosphere energy content&quot; has not yet been precisely defined! Please express your views on this quantity on the CF email list. See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="ChangeInAtmosphereEnergyContentDueToChangeInSigmaCoordinateWrtSurfacePressure" title="Change in Atmosphere Energy Content Due To Change in Sigma Coordinate Wrt Surface Pressure" uid="change_in_atmosphere_energy_content_due_to_change_in_sigma_coordinate_wrt_surface_pressure" units="J m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;wrt&quot; means with respect to. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="ChangeInEnergyContentOfAtmosphereLayerDueToChangeInSigmaCoordinateWrtSurfacePressure" title="Change in Energy Content of Atmosphere Layer Due To Change in Sigma Coordinate Wrt Surface Pressure" uid="change_in_energy_content_of_atmosphere_layer_due_to_change_in_sigma_coordinate_wrt_surface_pressure" units="J m-2"/>
<item description="&quot;Amount&quot; means mass per unit area. Zero change in land ice amount is an arbitrary level. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="ChangeInLandIceAmount" title="Change in Land Ice Amount" uid="change_in_land_ice_amount" units="kg m-2"/>
<item description="&quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate.  &quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  &quot;Water&quot; means water in all phases.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="ChangeOverTimeInAtmosphereMassContentOfWaterDueToAdvection" title="Change Over Time in Atmosphere Mass Content of Water Due To Advection" uid="change_over_time_in_atmosphere_mass_content_of_water_due_to_advection" units="kg m-2"/>
<item description="&quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate. Absolute Salinity, S_A, is defined as part of the Thermodynamic Equation of Seawater 2010 (TEOS-10) which was adopted in 2010 by the Intergovernmental Oceanographic Commission (IOC). It is the mass fraction of dissolved material in sea water. Absolute Salinity incorporates the spatial variations in the composition of sea water. This type of Absolute Salinity is also called &quot;Density Salinity&quot;. TEOS-10 estimates Absolute Salinity as the salinity variable that, when used with the TEOS-10 expression for density, yields the correct density of a sea water sample even when the sample is not of Reference Composition. In practice, Absolute Salinity is often calculated from Practical Salinity using a spatial lookup table of pre-defined values of the Absolute Salinity Anomaly. It is recommended that the version of (TEOS-10) software and the associated Absolute Salinity Anomaly climatology be specified within metadata by attaching a comment attribute to the data variable. Reference: www.teos-10.org; Millero et al., 2008 doi: 10.1016/j.dsr.2007.10.001. There are also standard names for the precisely defined salinity quantities sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 onwards), sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Salinity quantities that do not match any of the precise definitions should be given the more general standard name of sea_water_salinity." label="ChangeOverTimeInSeaWaterAbsoluteSalinity" title="Change Over Time in Sea Water Absolute Salinity" uid="change_over_time_in_sea_water_absolute_salinity" units="g kg-1"/>
<item description="&quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate. Conservative Temperature is defined as part of the Thermodynamic Equation of Seawater 2010 (TEOS-10) which was adopted in 2010 by the International Oceanographic Commission (IOC). Conservative Temperature is specific potential enthalpy (which has the standard name sea_water_specific_potential_enthalpy) divided by a fixed value of the specific heat capacity of sea water, namely cp_0 = 3991.86795711963 J kg-1 K-1. Conservative Temperature is a more accurate measure of the &quot;heat content&quot; of sea water, by a factor of one hundred, than is potential temperature. Because of this, it can be regarded as being proportional to the heat content of sea water per unit mass. Reference: www.teos-10.org; McDougall, 2003 doi: 10.1175/1520-0485(2003)033&lt;0945:PEACOV&gt;2.0.CO;2. " label="ChangeOverTimeInSeaWaterConservativeTemperature" title="Change Over Time in Sea Water Conservative Temperature" uid="change_over_time_in_sea_water_conservative_temperature" units="K"/>
<item description="Sea water density is the in-situ density (not the potential density). If 1000 kg m-3 is subtracted, the standard name &quot;sea_water_sigma_t&quot; should be chosen instead. &quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate." label="ChangeOverTimeInSeaWaterDensity" title="Change Over Time in Sea Water Density" uid="change_over_time_in_sea_water_density" units="kg m-3"/>
<item description="&quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate. &quot;Neutral density&quot; is a variable designed so that a surface of constant neutral density everywhere has a local slope that is close to the local slope of the neutral tangent plane. At the sea surface in the equatorial Pacific neutral density is very close to the potential density anomaly. At other locations, this is not the case. For example, along a neutral density surface there is a difference of up to 0.14 kg/m^3 in the potential density anomaly at the outcrops in the Southern and Northern hemispheres. Refer to Jackett &amp; McDougall (1997; Journal of Physical Oceanography, Vol 27, doi: 10.1175/1520-0485(1997)027&lt;0237:ANDVFT&gt;2.0.CO;2) for more information." label="ChangeOverTimeInSeaWaterNeutralDensity" title="Change Over Time in Sea Water Neutral Density" uid="change_over_time_in_sea_water_neutral_density" units="kg m-3"/>
<item description="Potential density is the density a parcel of air or sea water would have if moved adiabatically to a reference pressure, by default assumed to be sea level pressure.  For sea water potential density, if 1000 kg m-3 is subtracted, the standard name &quot;sea_water_sigma_theta&quot; should be chosen instead. &quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate." label="ChangeOverTimeInSeaWaterPotentialDensity" title="Change Over Time in Sea Water Potential Density" uid="change_over_time_in_sea_water_potential_density" units="kg m-3"/>
<item description="Potential temperature is the temperature a parcel of air or sea water would have if moved adiabatically to sea level pressure. &quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate." label="ChangeOverTimeInSeaWaterPotentialTemperature" title="Change Over Time in Sea Water Potential Temperature" uid="change_over_time_in_sea_water_potential_temperature" units="K"/>
<item description="&quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate. Practical Salinity, S_P, is a determination of the salinity of sea water, based on its electrical conductance. The measured conductance, corrected for temperature and pressure, is compared to the conductance of a standard potassium chloride solution, producing a value on the Practical Salinity Scale of 1978 (PSS-78). This name should not be used to describe salinity observations made before 1978, or ones not based on conductance measurements. Conversion of Practical Salinity to other precisely defined salinity measures should use the appropriate formulas specified by TEOS-10. Other standard names for precisely defined salinity quantities are sea_water_absolute_salinity (S_A); sea_water_preformed_salinity (S_*), sea_water_reference_salinity (S_R); sea_water_cox_salinity (S_C), used for salinity observations between 1967 and 1977; and sea_water_knudsen_salinity (S_K), used for salinity observations between 1901 and 1966. Salinity quantities that do not match any of the precise definitions shoul d be given the more general standard name of sea_water_salinity. Reference: www.teos-10.org; Lewis, 1980 doi:10.1109/JOE.1980.1145448." label="ChangeOverTimeInSeaWaterPracticalSalinity" title="Change Over Time in Sea Water Practical Salinity" uid="change_over_time_in_sea_water_practical_salinity" units="1"/>
<item description="&quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate. Preformed Salinity, S*, is defined as part of the Thermodynamic Equation of Seawater 2010 (TEOS-10) which was adopted in 2010 by the Intergovernmental Oceanographic Commission (IOC). Preformed Salinity is a salinity variable that is designed to be as conservative as possible, by removing the estimated biogeochemical influences on the sea water composition. Preformed Salinity is Absolute Salinity, S_A (which has the standard name sea_water_absolute_salinity), minus all contributions to sea water composition from biogeochemical processes. Preformed Salinity is the mass fraction of dissolved material in sea water. Reference: www.teos-10.org; Pawlowicz et al., 2011 doi: 10.5194/os-7-363-2011; Wright et al., 2011 doi: 10.5194/os-7-1-2011. There are also standard names for the precisely defined salinity quantities sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 onwards), and sea_water_reference_salinity. Salinity quantities that do not match any of the precise definitions should be given the more general standard name of sea_water_salinity." label="ChangeOverTimeInSeaWaterPreformedSalinity" title="Change Over Time in Sea Water Preformed Salinity" uid="change_over_time_in_sea_water_preformed_salinity" units="g kg-1"/>
<item description="&quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate. Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and the units attribute should normally be given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="ChangeOverTimeInSeaWaterSalinity" title="Change Over Time in Sea Water Salinity" uid="change_over_time_in_sea_water_salinity" units="1e-3"/>
<item description="&quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate. The potential enthalpy of a sea water parcel is the specific enthalpy after an adiabatic and isohaline change in pressure from its in situ pressure to the sea pressure p = 0 dbar. &quot;specific&quot; means per unit mass. Reference: www.teos-10.org; McDougall, 2003 doi: 10.1175/1520-0485(2003)033&lt;0945:PEACOV&gt;2.0.CO;2." label="ChangeOverTimeInSeaWaterSpecificPotentialEnthalpy" title="Change Over Time in Sea Water Specific Potential Enthalpy" uid="change_over_time_in_sea_water_specific_potential_enthalpy" units="J kg-1"/>
<item description="&quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate.Sea water temperature is the in situ temperature of the sea water. To specify the depth at which the temperature applies use a vertical coordinate variable or scalar coordinate variable. There are standard names for sea_surface_temperature, sea_surface_skin_temperature, sea_surface_subskin_temperature and sea_surface_foundation_temperature which can be used to describe data located at the specified surfaces. For observed data, depending on the period during which the observation was made, the measured in situ temperature was recorded against standard &quot;scales&quot;. These historical scales include the International Practical Temperature Scale of 1948 (IPTS-48; 1948-1967), the International Practical Temperature Scale of 1968 (IPTS-68, Barber, 1969; 1968-1989) and the International Temperature Scale of 1990 (ITS-90, Saunders 1990; 1990 onwards). Conversion of data between these scales follows t68 = t48 - (4.4 x 10e-6) * t48(100 - t - 48); t90 = 0.99976 * t68. Observations made prior to 1948 (IPTS-48) have not been documented and therefore a conversion cannot be certain. Differences between t90 and t68 can be up to 0.01 at temperatures of 40 C and above; differences of 0.002-0.007 occur across the standard range of ocean temperatures (-10 - 30 C). The International Equation of State of Seawater 1980 (EOS-80, UNESCO, 1981) and the Practical Salinity Scale (PSS-78) were both based on IPTS-68, while the Thermodynamic Equation of Seawater 2010 (TEOS-10) is based on ITS-90. References: Barber, 1969, doi: 10.1088/0026-1394/5/2/001; UNESCO, 1981; Saunders, 1990, WOCE Newsletter, 10, September 1990." label="ChangeOverTimeInSeaWaterTemperature" title="Change Over Time in Sea Water Temperature" uid="change_over_time_in_sea_water_temperature" units="K"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;change_over_time_in_X&quot; means change in a quantity X over a time-interval, which should be defined by the bounds of the time coordinate. &quot;Amount&quot; means mass per unit area. Surface amount refers to the amount on the ground, excluding that on the plant or vegetation canopy." label="ChangeOverTimeInSurfaceSnowAmount" title="Change Over Time in Surface Snow Amount" uid="change_over_time_in_surface_snow_amount" units="kg m-2"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. The clear_sky area fraction is for the whole atmosphere column, as seen from the surface or the top of the atmosphere." label="ClearSkyAreaFraction" title="Clear Sky Area Fraction" uid="clear_sky_area_fraction" units="1"/>
<item description="The albedo of cloud." label="CloudAlbedo" title="Cloud Albedo" uid="cloud_albedo" units="1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. The cloud area fraction is for the whole atmosphere column, as seen from the surface or the top of the atmosphere. The cloud area fraction in a layer of the atmosphere has the standard name cloud_area_fraction_in_atmosphere_layer." label="CloudAreaFraction" title="Cloud Area Fraction" uid="cloud_area_fraction" units="1"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;." label="CloudAreaFractionInAtmosphereLayer" title="Cloud Area Fraction in Atmosphere Layer" uid="cloud_area_fraction_in_atmosphere_layer" units="1"/>
<item description="cloud_base refers to the base of the lowest cloud. Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." label="CloudBaseAltitude" title="Cloud Base Altitude" uid="cloud_base_altitude" units="m"/>
<item description="X_binary_mask has 1 where condition X is met, 0 elsewhere. 1 = cloud present, 0 = cloud absent (clear). If no threshold is supplied, the binary mask is 1 if there is any non-zero amount of cloud. if a threshold is supplied, it should be specified by associating a coordinate variable or scalar coordinate variable with the data variable and giving the coordinate variable a standard name of cloud_area_fraction. The values of the coordinate variable are the threshold values for the corresponding subarrays of the data variable." label="CloudBinaryMask" title="Cloud Binary Mask" uid="cloud_binary_mask" units="1"/>
<item description="Cloud ice mixing ratio of a parcel of air is the ratio of the mass of ice to the mass of dry air." label="CloudIceMixingRatio" title="Cloud Ice Mixing Ratio" uid="cloud_ice_mixing_ratio" units="1"/>
<item description="Cloud liquid water mixing ratio of a parcel of air is the ratio of the mass of liquid water to the mass of dry air." label="CloudLiquidWaterMixingRatio" title="Cloud Liquid Water Mixing Ratio" uid="cloud_liquid_water_mixing_ratio" units="1"/>
<item description="cloud_top refers to the top of the highest cloud. Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." label="CloudTopAltitude" title="Cloud Top Altitude" uid="cloud_top_altitude" units="m"/>
<item description="&quot;Compressive strength&quot; is a measure of the capacity of a material to withstand compressive forces.  If compressive forces are exerted on a material in excess of its compressive strength, fracturing will occur." label="CompressiveStrengthOfSeaIce" title="Compressive Strength of Sea Ice" uid="compressive_strength_of_sea_ice" units="Pa m"/>
<item description="The quantity with standard name concentration_of_colored_dissolved_organic_matter_in_sea_water_expressed_as_equivalent_mass_fraction_of_quinine_sulfate_dihydrate is also commonly known as Chromophoric Dissolved Organic Matter (CDOM). CDOM plays an important role in the carbon cycling and biogeochemistry of coastal waters. It occurs naturally in aquatic environments primarily as a result of tannins released from decaying plant and animal matter, which can enter coastal areas in river run-off containing organic materials leached from soils. When present in high concentrations, it imparts a brown or yellowish color to water. Its presence can negatively impact fish populations by reducing dissolved oxygen concentrations to harmful levels and by releasing nutrients and metals that contaminate the water. Increased understanding of the role of CDOM will further our ability to manage and protect coastal ecosystems. Sensors are commonly calibrated against a 100 parts per billion (ppb) quinine sulfate dihydrate solution, a fluorescent reference standard commonly used with CDOM sensors. CDOM sensors therefore report in &quot;QSDE&quot; (quinine sulfate dihydrate equivalents). It is important to note, however, that CDOM concentrations in QSDE are not necessarily equivalent to the in situ CDOM concentrations in ppb." label="ConcentrationOfColoredDissolvedOrganicMatterInSeaWaterExpressedAsEquivalentMassFractionOfQuinineSulfateDihydrate" title="Concentration of Colored Dissolved Organic Matter in Sea Water Expressed As Equivalent Mass Fraction of Quinine Sulfate Dihydrate" uid="concentration_of_colored_dissolved_organic_matter_in_sea_water_expressed_as_equivalent_mass_fraction_of_quinine_sulfate_dihydrate" units="1"/>
<item description="&quot;Time fraction&quot; means a fraction of a time interval. The interval in question must be specified by the values or bounds of the time coordinate variable associated with the data. &quot;X_time_fraction&quot; means the fraction of the time interval during which X occurs." label="ConvectionTimeFraction" title="Convection Time Fraction" uid="convection_time_fraction" units="1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. The cloud area fraction is for the whole atmosphere column, as seen from the surface or the top of the atmosphere. The cloud area fraction in a layer of the atmosphere has the standard name cloud_area_fraction_in_atmosphere_layer. Convective cloud is that produced by the convection schemes in an atmosphere model." label="ConvectiveCloudAreaFraction" title="Convective Cloud Area Fraction" uid="convective_cloud_area_fraction" units="1"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. Convective cloud is that produced by the convection schemes in an atmosphere model." label="ConvectiveCloudAreaFractionInAtmosphereLayer" title="Convective Cloud Area Fraction in Atmosphere Layer" uid="convective_cloud_area_fraction_in_atmosphere_layer" units="1"/>
<item description="cloud_base refers to the base of the lowest cloud. Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level. Convective cloud is that produced by the convection schemes in an atmosphere model." label="ConvectiveCloudBaseAltitude" title="Convective Cloud Base Altitude" uid="convective_cloud_base_altitude" units="m"/>
<item description="cloud_base refers to the base of the lowest cloud. Height is the vertical distance above the surface. Convective cloud is that produced by the convection schemes in an atmosphere model." label="ConvectiveCloudBaseHeight" title="Convective Cloud Base Height" uid="convective_cloud_base_height" units="m"/>
<item description="Emissivity is the ratio of the power emitted by an object to the power that would be emitted by a perfect black body having the same temperature as the object. The emissivity is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength or radiation_frequency is included to specify either the wavelength or frequency. Convective cloud is that produced by the convection schemes in an atmosphere model.  &quot;longwave&quot; means longwave radiation." label="ConvectiveCloudLongwaveEmissivity" title="Convective Cloud Longwave Emissivity" uid="convective_cloud_longwave_emissivity" units="1"/>
<item description="cloud_top refers to the top of the highest cloud. Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level. Convective cloud is that produced by the convection schemes in an atmosphere model." label="ConvectiveCloudTopAltitude" title="Convective Cloud Top Altitude" uid="convective_cloud_top_altitude" units="m"/>
<item description="cloud_top refers to the top of the highest cloud. Height is the vertical distance above the surface. Convective cloud is that produced by the convection schemes in an atmosphere model." label="ConvectiveCloudTopHeight" title="Convective Cloud Top Height" uid="convective_cloud_top_height" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area." label="ConvectivePrecipitationAmount" title="Convective Precipitation Amount" uid="convective_precipitation_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ConvectivePrecipitationFlux" title="Convective Precipitation Flux" uid="convective_precipitation_flux" units="kg m-2 s-1"/>
<item description="&quot;Precipitation rate&quot; means the depth or thickness of the layer formed by precipitation per unit time." label="ConvectivePrecipitationRate" title="Convective Precipitation Rate" uid="convective_precipitation_rate" units="m s-1"/>
<item description="&quot;Amount&quot; means mass per unit area." label="ConvectiveRainfallAmount" title="Convective Rainfall Amount" uid="convective_rainfall_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ConvectiveRainfallFlux" title="Convective Rainfall Flux" uid="convective_rainfall_flux" units="kg m-2 s-1"/>
<item description="" label="ConvectiveRainfallRate" title="Convective Rainfall Rate" uid="convective_rainfall_rate" units="m s-1"/>
<item description="&quot;Amount&quot; means mass per unit area." label="ConvectiveSnowfallAmount" title="Convective Snowfall Amount" uid="convective_snowfall_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ConvectiveSnowfallFlux" title="Convective Snowfall Flux" uid="convective_snowfall_flux" units="kg m-2 s-1"/>
<item description="The Coriolis parameter is twice the component of the earth's angular velocity about the local vertical i.e. 2 W sin L, where L is latitude and W the angular speed of the earth." label="CoriolisParameter" title="Coriolis Parameter" uid="coriolis_parameter" units="s-1"/>
<item description="A numerical correction which is added to modelled negative specific humidities in order to obtain a value of zero." label="CorrectionForModelNegativeSpecificHumidity" title="Correction For Model Negative Specific Humidity" uid="correction_for_model_negative_specific_humidity" units="1"/>
<item description="Depth is the vertical distance below the surface." label="Depth" title="Depth" uid="depth" units="m"/>
<item description="This quantity, often used to indicate the &quot;thermocline depth&quot;, is the depth of the maximum vertical gradient of sea water potential temperature.  Depth is the vertical distance below the surface. Potential temperature is the temperature a parcel of air or sea water would have if moved adiabatically to sea level pressure." label="DepthAtMaximumUpwardDerivativeOfSeaWaterPotentialTemperature" title="Depth At Maximum Upward Derivative of Sea Water Potential Temperature" uid="depth_at_maximum_upward_derivative_of_sea_water_potential_temperature" units="m"/>
<item description="Depth is the vertical distance below the surface.   'Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The concentration of any chemical species, whether particulate or dissolved, may vary with depth in the ocean.  A depth profile may go through one or more local minima in concentration. The  depth_at_shallowest_local_minimum_in_vertical_profile_of_mole_concentration_of_dissolved_molecular_oxygen_in_sea_water is the depth of the local minimum in the oxygen concentration that occurs closest to the sea surface." label="DepthAtShallowestLocalMinimumInVerticalProfileOfMoleConcentrationOfDissolvedMolecularOxygenInSeaWater" title="Depth At Shallowest Local Minimum in Vertical Profile of Mole Concentration of Dissolved Molecular Oxygen in Sea Water" uid="depth_at_shallowest_local_minimum_in_vertical_profile_of_mole_concentration_of_dissolved_molecular_oxygen_in_sea_water" units="m"/>
<item description="The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. (The volume enclosed between the geoid and the sea floor equals the mean volume of water in the ocean.) In an ocean GCM the geoid is the surface of zero depth, or the rigid lid if the model uses that approximation. &quot;Depth_below_X&quot; means the vertical distance below the named surface X." label="DepthBelowGeoid" title="Depth Below Geoid" uid="depth_below_geoid" units="m"/>
<item description="&quot;Depth_below_X&quot; means the vertical distance below the named surface X." label="DepthBelowSeaFloor" title="Depth Below Sea Floor" uid="depth_below_sea_floor" units="m"/>
<item description="This quantity, sometimes called the &quot;isotherm depth&quot;, is the depth (if it exists) at which the sea water potential temperature equals some specified value. This value should be specified in a scalar coordinate variable. Depth is the vertical distance below the surface. Potential temperature is the temperature a parcel of air or sea water would have if moved adiabatically to sea level pressure." label="DepthOfIsosurfaceOfSeaWaterPotentialTemperature" title="Depth of Isosurface of Sea Water Potential Temperature" uid="depth_of_isosurface_of_sea_water_potential_temperature" units="m"/>
<item description="Dew point depression is also called dew point deficit. It is the amount by which the air temperature exceeds its dew point temperature. Dew point temperature is the temperature at which a parcel of air reaches saturation upon being cooled at constant pressure and specific humidity." label="DewPointDepression" title="Dew Point Depression" uid="dew_point_depression" units="K"/>
<item description="Dew point temperature is the temperature at which a parcel of air reaches saturation upon being cooled at constant pressure and specific humidity." label="DewPointTemperature" title="Dew Point Temperature" uid="dew_point_temperature" units="K"/>
<item description="In some atmosphere models, the difference of air pressure from model reference is a prognostic variable, instead of the air pressure itself. The model reference air pressure is a model-dependent constant." label="DifferenceOfAirPressureFromModelReference" title="Difference of Air Pressure From Model Reference" uid="difference_of_air_pressure_from_model_reference" units="Pa"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;.  When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.  In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  &quot;shortwave&quot; means shortwave radiation. &quot;Diffuse&quot; radiation is radiation that has been scattered by particles in the atmosphere such as cloud droplets and aerosols." label="DiffuseDownwellingShortwaveFluxInAir" title="Diffuse Downwelling Shortwave Flux in Air" uid="diffuse_downwelling_shortwave_flux_in_air" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;.  When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.  In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  A phrase assuming_condition  indicates that the named quantity is the value which would obtain if all  aspects of the system were unaltered except for the assumption of the  circumstances specified by the condition.  &quot;shortwave&quot; means shortwave radiation. &quot;Diffuse&quot; radiation is radiation that has been scattered by particles in the atmosphere such as cloud droplets and aerosols." label="DiffuseDownwellingShortwaveFluxInAirAssumingClearSky" title="Diffuse Downwelling Shortwave Flux in Air Assuming Clear Sky" uid="diffuse_downwelling_shortwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="The term &quot;Exner function&quot; is applied to various quantities in the literature. &quot;Dimensionless Exner function&quot; is the standard name of (p/p0)^(R/Cp), where p is pressure, p0 a reference pressure, R the gas constant and Cp the specific heat at constant pressure. This quantity is also the ratio of in-situ to potential temperature. Standard names for other variants can be defined on request." label="DimensionlessExnerFunction" title="Dimensionless Exner Function" uid="dimensionless_exner_function" units="1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Direct&quot; (also known as &quot;beam&quot;) radiation is radiation that has followed a direct path from the sun and is alternatively known as &quot;direct insolation&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. &quot;shortwave&quot; means shortwave radiation." label="DirectDownwellingShortwaveFluxInAir" title="Direct Downwelling Shortwave Flux in Air" uid="direct_downwelling_shortwave_flux_in_air" units="W m-2"/>
<item description="The direction_of_radial_vector_away_from_instrument is the direction in which the instrument itself is pointing. The direction is measured positive clockwise from due north. The &quot;instrument&quot; (examples are radar and lidar) is the device used to make an observation. &quot;direction_of_X&quot; means direction of a  vector, a bearing." label="DirectionOfRadialVectorAwayFromInstrument" title="Direction of Radial Vector Away From Instrument" uid="direction_of_radial_vector_away_from_instrument" units="degree"/>
<item description="&quot;direction_of_X&quot; means direction of a  vector, a bearing.  &quot;Displacement&quot; means the change in geospatial position of an object that has moved over time. If possible, the time interval over which the motion took place should be specified using a bounds variable for the time coordinate variable.  A displacement can be represented as a vector. Such a vector should however not be interpreted as describing a rectilinear, constant speed motion but merely as an indication that the start point of the vector is found at the tip of the vector after the time interval associated with the displacement variable.  A displacement does not prescribe a trajectory. Sea ice displacement can be defined as a two-dimensional vector, with no vertical component. In that case, &quot;displacement&quot; is also the distance across the earth's surface calculated from the change in a moving object's geospatial position between the start and end of the time interval associated with the displacement variable. The &quot;direction of displacement&quot; is the angle between due north and the displacement vector." label="DirectionOfSeaIceDisplacement" title="Direction of Sea Ice Displacement" uid="direction_of_sea_ice_displacement" units="degrees"/>
<item description="&quot;direction_of_X&quot; means direction of a vector, a bearing. A velocity is a vector quantity. Sea ice velocity is defined as a two-dimensional vector, with no vertical component." label="DirectionOfSeaIceVelocity" title="Direction of Sea Ice Velocity" uid="direction_of_sea_ice_velocity" units="degree"/>
<item description="&quot;direction_of_X&quot; means direction of a vector, a bearing. A velocity is a vector quantity." label="DirectionOfSeaWaterVelocity" title="Direction of Sea Water Velocity" uid="direction_of_sea_water_velocity" units="degree"/>
<item description="A measure of distance from the Earth's geocenter, commonly used in satellite tracks." label="DistanceFromGeocenter" title="Distance From Geocenter" uid="distance_from_geocenter" units="m"/>
<item description="The distance from the sun to the point of observation." label="DistanceFromSun" title="Distance From Sun" uid="distance_from_sun" units="m"/>
<item description="The great circle distance measured from the tropical cyclone center to the leading edge of displaced convection, which is defined as the closest point that exceeds a threshold brightness temperature at top of atmosphere limit. The threshold applied should be recorded in a coordinate variable having the standard name of toa_brightness_temperature. A coordinate variable with standard name of radiation_wavelength, sensor_band_central_radiation_wavelength, or radiation_frequency may be specified to indicate that the brightness temperature applies at specific wavelengths or frequencies." label="DistanceFromTropicalCycloneCenterToLeadingEdgeOfDisplacedConvection" title="Distance From Tropical Cyclone Center To Leading Edge of Displaced Convection" uid="distance_from_tropical_cyclone_center_to_leading_edge_of_displaced_convection" units="m"/>
<item description="&quot;[horizontal_]divergence_of_X&quot; means [horizontal] divergence of a vector X; if X does not have a vertical component then &quot;horizontal&quot; should be omitted. A velocity is a vector quantity. Sea ice velocity is defined as a two-dimensional vector, with no vertical component." label="DivergenceOfSeaIceVelocity" title="Divergence of Sea Ice Velocity" uid="divergence_of_sea_ice_velocity" units="s-1"/>
<item description="&quot;[horizontal_]divergence_of_X&quot; means [horizontal] divergence of a vector X; if X does not have a vertical component then &quot;horizontal&quot; should be omitted. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="DivergenceOfWind" title="Divergence of Wind" uid="divergence_of_wind" units="s-1"/>
<item description="A velocity is a vector quantity. 'Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Downward air velocity is the vertical component of the 3D air velocity vector. The standard name upward_air_velocity may be used for a vector component with the opposite sign convention." label="DownwardAirVelocity" title="Downward Air Velocity" uid="downward_air_velocity" units="m s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardDryStaticEnergyFluxDueToDiffusion" title="Downward Dry Static Energy Flux Due To Diffusion" uid="downward_dry_static_energy_flux_due_to_diffusion" units="W m-2"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). &quot;Downward eastward&quot; indicates the ZX component of a tensor. Momentum flux is dimensionally equivalent to stress and pressure. It is a tensor quantity. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardEastwardMomentumFluxInAir" title="Downward Eastward Momentum Flux in Air" uid="downward_eastward_momentum_flux_in_air" units="Pa"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  &quot;Downward eastward&quot; indicates the ZX component of a tensor.  Momentum flux is dimensionally equivalent to stress and pressure. It is a tensor quantity.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means thatthe quantity named is a  single term in a sum of terms which together compose the generalquantity  named by omitting the phrase." label="DownwardEastwardMomentumFluxInAirDueToDiffusion" title="Downward Eastward Momentum Flux in Air Due To Diffusion" uid="downward_eastward_momentum_flux_in_air_due_to_diffusion" units="Pa"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). &quot;Downward eastward&quot; indicates the ZX component of a tensor. A downward eastward stress is a downward flux of eastward momentum, which accelerates the lower medium eastward and the upper medium westward." label="DownwardEastwardStressAtSeaIceBase" title="Downward Eastward Stress At Sea Ice Base" uid="downward_eastward_stress_at_sea_ice_base" units="Pa"/>
<item description="ground_level means the land surface (beneath the snow and surface water, if any). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardHeatFluxAtGroundLevelInSnow" title="Downward Heat Flux At Ground Level in Snow" uid="downward_heat_flux_at_ground_level_in_snow" units="W m-2"/>
<item description="ground_level means the land surface (beneath the snow and surface water, if any). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardHeatFluxAtGroundLevelInSoil" title="Downward Heat Flux At Ground Level in Soil" uid="downward_heat_flux_at_ground_level_in_soil" units="W m-2"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). The vertical heat flux in air is the sum of all heat fluxes i.e. radiative, latent and sensible. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardHeatFluxInAir" title="Downward Heat Flux in Air" uid="downward_heat_flux_in_air" units="W m-2"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  &quot;Floating ice&quot; means any ice that is floating on water, e.g. on a sea or lake surface." label="DownwardHeatFluxInFloatingIce" title="Downward Heat Flux in Floating Ice" uid="downward_heat_flux_in_floating_ice" units="W m-2"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardHeatFluxInSeaIce" title="Downward Heat Flux in Sea Ice" uid="downward_heat_flux_in_sea_ice" units="W m-2"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardHeatFluxInSoil" title="Downward Heat Flux in Soil" uid="downward_heat_flux_in_soil" units="W m-2"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). &quot;Downward northward&quot; indicates the ZY component of a tensor. Momentum flux is dimensionally equivalent to stress and pressure. It is a tensor quantity. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardNorthwardMomentumFluxInAir" title="Downward Northward Momentum Flux in Air" uid="downward_northward_momentum_flux_in_air" units="Pa"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward).  &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  &quot;Downward northward&quot; indicates the ZY component of a tensor.  Momentum flux is dimensionally equivalent to stress and pressure. It is a tensor quantity.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="DownwardNorthwardMomentumFluxInAirDueToDiffusion" title="Downward Northward Momentum Flux in Air Due To Diffusion" uid="downward_northward_momentum_flux_in_air_due_to_diffusion" units="Pa"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). &quot;Downward northward&quot; indicates the ZY component of a tensor. A downward northward stress is a downward flux of northward momentum, which accelerates the lower medium northward and the upper medium southward." label="DownwardNorthwardStressAtSeaIceBase" title="Downward Northward Stress At Sea Ice Base" uid="downward_northward_stress_at_sea_ice_base" units="Pa"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardSeaIceBasalSaltFlux" title="Downward Sea Ice Basal Salt Flux" uid="downward_sea_ice_basal_salt_flux" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwardWaterVaporFluxInAirDueToDiffusion" title="Downward Water Vapor Flux in Air Due To Diffusion" uid="downward_water_vapor_flux_in_air_due_to_diffusion" units="kg m-2 s-1"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward)." label="DownwardXStressAtSeaIceBase" title="Downward X Stress At Sea Ice Base" uid="downward_x_stress_at_sea_ice_base" units="Pa"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward)." label="DownwardYStressAtSeaIceBase" title="Downward Y Stress At Sea Ice Base" uid="downward_y_stress_at_sea_ice_base" units="Pa"/>
<item description="&quot;longwave&quot; means longwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwellingLongwaveFluxInAir" title="Downwelling Longwave Flux in Air" uid="downwelling_longwave_flux_in_air" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;.  When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.  In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  A phrase assuming_condition  indicates that the named quantity is the value which would obtain if all  aspects of the system were unaltered except for the assumption of the  circumstances specified by the condition.  &quot;longwave&quot; means longwave radiation." label="DownwellingLongwaveFluxInAirAssumingClearSky" title="Downwelling Longwave Flux in Air Assuming Clear Sky" uid="downwelling_longwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="&quot;longwave&quot; means longwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="DownwellingLongwaveRadianceInAir" title="Downwelling Longwave Radiance in Air" uid="downwelling_longwave_radiance_in_air" units="W m-2 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. A photon flux is specified in terms of numbers of photons expressed in moles. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwellingPhotonFluxInSeaWater" title="Downwelling Photon Flux in Sea Water" uid="downwelling_photon_flux_in_sea_water" units="mol m-2 s-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. A photon flux is specified in terms of numbers of photons expressed in moles. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="DownwellingPhotonFluxPerUnitWavelengthInSeaWater" title="Downwelling Photon Flux Per Unit Wavelength in Sea Water" uid="downwelling_photon_flux_per_unit_wavelength_in_sea_water" units="mol m-2 s-1 m-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Photon radiance is the photon flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A photon flux is specified in terms of numbers of photons expressed in moles." label="DownwellingPhotonRadianceInSeaWater" title="Downwelling Photon Radiance in Sea Water" uid="downwelling_photon_radiance_in_sea_water" units="mol m-2 s-1 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Photon radiance is the photon flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A photon flux is specified in terms of numbers of photons expressed in moles. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="DownwellingPhotonRadiancePerUnitWavelengthInSeaWater" title="Downwelling Photon Radiance Per Unit Wavelength in Sea Water" uid="downwelling_photon_radiance_per_unit_wavelength_in_sea_water" units="mol m-2 s-1 m-1 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Photon spherical irradiance is the photon flux incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. A photon flux is specified in terms of numbers of photons expressed in moles." label="DownwellingPhotonSphericalIrradianceInSeaWater" title="Downwelling Photon Spherical Irradiance in Sea Water" uid="downwelling_photon_spherical_irradiance_in_sea_water" units="mol m-2 s-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength. Photon spherical irradiance is the photon flux incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. A photon flux is specified in terms of numbers of photons expressed in moles." label="DownwellingPhotonSphericalIrradiancePerUnitWavelengthInSeaWater" title="Downwelling Photon Spherical Irradiance Per Unit Wavelength in Sea Water" uid="downwelling_photon_spherical_irradiance_per_unit_wavelength_in_sea_water" units="mol m-2 s-1 m-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. A photon flux is specified in terms of numbers of photons expressed in moles. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwellingPhotosyntheticPhotonFluxInSeaWater" title="Downwelling Photosynthetic Photon Flux in Sea Water" uid="downwelling_photosynthetic_photon_flux_in_sea_water" units="mol m-2 s-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Photon radiance is the photon flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. A photon flux is specified in terms of numbers of photons expressed in moles." label="DownwellingPhotosyntheticPhotonRadianceInSeaWater" title="Downwelling Photosynthetic Photon Radiance in Sea Water" uid="downwelling_photosynthetic_photon_radiance_in_sea_water" units="mol m-2 s-1 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. Photon spherical irradiance is the photon flux incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. The direction (&quot;up/downwelling&quot;) is specified. Radiation incident on a 4-pi collector has a standard name referring to &quot;omnidirectional spherical irradiance&quot;. A photon flux is specified in terms of numbers of photons expressed in moles." label="DownwellingPhotosyntheticPhotonSphericalIrradianceInSeaWater" title="Downwelling Photosynthetic Photon Spherical Irradiance in Sea Water" uid="downwelling_photosynthetic_photon_spherical_irradiance_in_sea_water" units="mol m-2 s-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength." label="DownwellingPhotosyntheticRadianceInSeaWater" title="Downwelling Photosynthetic Radiance in Sea Water" uid="downwelling_photosynthetic_radiance_in_sea_water" units="W m-2 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiative flux is the sum of shortwave and longwave radiative fluxes. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwellingPhotosyntheticRadiativeFluxInSeaWater" title="Downwelling Photosynthetic Radiative Flux in Sea Water" uid="downwelling_photosynthetic_radiative_flux_in_sea_water" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. Spherical irradiance is the radiation incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. It is sometimes called &quot;scalar irradiance&quot;. The direction (up/downwelling) is specified. Radiation incident on a 4-pi collector has standard names of &quot;omnidirectional spherical irradiance&quot;." label="DownwellingPhotosyntheticSphericalIrradianceInSeaWater" title="Downwelling Photosynthetic Spherical Irradiance in Sea Water" uid="downwelling_photosynthetic_spherical_irradiance_in_sea_water" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="DownwellingRadianceInSeaWater" title="Downwelling Radiance in Sea Water" uid="downwelling_radiance_in_sea_water" units="W m-2 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="DownwellingRadiancePerUnitWavelengthInAir" title="Downwelling Radiance Per Unit Wavelength in Air" uid="downwelling_radiance_per_unit_wavelength_in_air" units="W m-2 m-1 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="DownwellingRadiancePerUnitWavelengthInSeaWater" title="Downwelling Radiance Per Unit Wavelength in Sea Water" uid="downwelling_radiance_per_unit_wavelength_in_sea_water" units="W m-2 m-1 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiative flux is the sum of shortwave and longwave radiative fluxes. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwellingRadiativeFluxInSeaWater" title="Downwelling Radiative Flux in Sea Water" uid="downwelling_radiative_flux_in_sea_water" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="DownwellingRadiativeFluxPerUnitWavelengthInAir" title="Downwelling Radiative Flux Per Unit Wavelength in Air" uid="downwelling_radiative_flux_per_unit_wavelength_in_air" units="W m-2 m-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;.  When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="DownwellingRadiativeFluxPerUnitWavelengthInSeaWater" title="Downwelling Radiative Flux Per Unit Wavelength in Sea Water" uid="downwelling_radiative_flux_per_unit_wavelength_in_sea_water" units="W m-2 m-1"/>
<item description="&quot;shortwave&quot; means shortwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="DownwellingShortwaveFluxInAir" title="Downwelling Shortwave Flux in Air" uid="downwelling_shortwave_flux_in_air" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;.  When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.  In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  A phrase assuming_condition  indicates that the named quantity is the value which would obtain if all  aspects of the system were unaltered except for the assumption of the  circumstances specified by the condition.  &quot;shortwave&quot; means shortwave radiation." label="DownwellingShortwaveFluxInAirAssumingClearSky" title="Downwelling Shortwave Flux in Air Assuming Clear Sky" uid="downwelling_shortwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;.  When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.  In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  &quot;shortwave&quot; means shortwave radiation." label="DownwellingShortwaveFluxInSeaWater" title="Downwelling Shortwave Flux in Sea Water" uid="downwelling_shortwave_flux_in_sea_water" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="DownwellingShortwaveRadianceInAir" title="Downwelling Shortwave Radiance in Air" uid="downwelling_shortwave_radiance_in_air" units="W m-2 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Spherical irradiance is the radiation incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. It is sometimes called &quot;scalar irradiance&quot;. The direction (up/downwelling) is specified. Radiation incident on a 4-pi collector has standard names of &quot;omnidirectional spherical irradiance&quot;." label="DownwellingSphericalIrradianceInSeaWater" title="Downwelling Spherical Irradiance in Sea Water" uid="downwelling_spherical_irradiance_in_sea_water" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Spherical irradiance is the radiation incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. It is sometimes called &quot;scalar irradiance&quot;. The direction (up/downwelling) is specified. Radiation incident on a 4-pi collector has standard names of &quot;omnidirectional spherical irradiance&quot;. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="DownwellingSphericalIrradiancePerUnitWavelengthInSeaWater" title="Downwelling Spherical Irradiance Per Unit Wavelength in Sea Water" uid="downwelling_spherical_irradiance_per_unit_wavelength_in_sea_water" units="W m-2 m-1"/>
<item description="Mole fraction is used in the construction &quot;mole_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The construction &quot;dry_atmosphere_mole_fraction&quot; means that the quantity refers to the whole atmospheric column and is calculated as the total number of particles of X in the column divided by the number of dry air particles in the same column, i.e. the effect of water vapor is excluded. For localized values within the atmospheric medium, standard names including &quot;in_air&quot; are used. The chemical formula for carbon dioxide is CO2." label="DryAtmosphereMoleFractionOfCarbonDioxide" title="Dry Atmosphere Mole Fraction of Carbon Dioxide" uid="dry_atmosphere_mole_fraction_of_carbon_dioxide" units="1"/>
<item description="Mole fraction is used in the construction &quot;mole_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The construction &quot;dry_atmosphere_mole_fraction&quot; means that the quantity refers to the whole atmospheric column and is calculated as the total number of particles of X in the column divided by the number of dry air particles in the same column, i.e. the effect of water vapor is excluded. For localized values within the atmospheric medium, standard names including &quot;in_air&quot; are used. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The chemical formula for methane is CH4." label="DryAtmosphereMoleFractionOfMethane" title="Dry Atmosphere Mole Fraction of Methane" uid="dry_atmosphere_mole_fraction_of_methane" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Dry energy is the sum of dry static energy and kinetic energy. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="DryEnergyContentOfAtmosphereLayer" title="Dry Energy Content of Atmosphere Layer" uid="dry_energy_content_of_atmosphere_layer" units="J m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="DryStaticEnergyContentOfAtmosphereLayer" title="Dry Static Energy Content of Atmosphere Layer" uid="dry_static_energy_content_of_atmosphere_layer" units="J m-2"/>
<item description="The WMO definition of sunshine is that the surface incident radiative flux from the solar beam (i.e. excluding diffuse skylight) exceeds 120 W m-2. &quot;Duration&quot; is the length of time for which a condition holds." label="DurationOfSunshine" title="Duration of Sunshine" uid="duration_of_sunshine" units="s"/>
<item description="&quot;Dvorak current intensity number&quot; indicates the ranking of tropical cyclone strength (ranging from 1.0 to 8.0, increasing with storm intensity). The current intensity (CI) number is derived using the Advanced Dvorak Technique based on satellite observations over time. The CI number maps to a maximum sustained 1-minute wind speed and is derived by applying a series of intensity constraints to previous Dvorak-calculated trends of the same storm. Reference: Olander, T. L., &amp; Velden, C. S., The Advanced Dvorak Technique: Continued Development of an Objective Scheme to Estimate Tropical Cyclone Intensity Using Geostationary Infrared Satellite Imagery (2007).  American Meteorological Society Weather and Forecasting, 22, 287-298." label="DvorakTropicalCycloneCurrentIntensityNumber" title="Dvorak Tropical Cyclone Current Intensity Number" uid="dvorak_tropical_cyclone_current_intensity_number" units="1"/>
<item description="The Advanced Dvorak Technique (ADT) is used to derive a set of Dvorak Tropical numbers using an objective pattern recognition algorithm to determine the intensity of a tropical cyclone by matching observed brightness temperature patterns, maximum sustained winds and minimum sea level pressure to a set of pre-defined tropical cyclone structures. Dvorak Tropical numbers range from 1.0 to 8.0, increasing with storm intensity. Reference: Olander, T. L., &amp; Velden, C. S., The Advanced Dvorak Technique: Continued Development of an Objective Scheme to Estimate Tropical Cyclone Intensity Using Geostationary Infrared Satellite Imagery (2007).  American Meterorological Society Weather and Forecasting, 22, 287-298." label="DvorakTropicalNumber" title="Dvorak Tropical Number" uid="dvorak_tropical_number" units="1"/>
<item description="The dynamical tropopause used in interpreting the dynamics of the upper troposphere and lower stratosphere.  There are various definitions of dynamical tropopause in the scientific literature." label="DynamicTropopausePotentialTemperature" title="Dynamic Tropopause Potential Temperature" uid="dynamic_tropopause_potential_temperature" units="K"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Transport across_unit_distance means expressed per unit distance normal to the direction of transport. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="EastwardAtmosphereDryStaticEnergyTransportAcrossUnitDistance" title="Eastward Atmosphere Dry Static Energy Transport Across Unit Distance" uid="eastward_atmosphere_dry_static_energy_transport_across_unit_distance" units="W m-1"/>
<item description="&quot;Water&quot; means water in all phases. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Transport across_unit_distance means expressed per unit distance normal to the direction of transport." label="EastwardAtmosphereWaterTransportAcrossUnitDistance" title="Eastward Atmosphere Water Transport Across Unit Distance" uid="eastward_atmosphere_water_transport_across_unit_distance" units="kg s-1 m-1"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Transport across_unit_distance means expressed per unit distance normal to the direction of transport." label="EastwardAtmosphereWaterVaporTransportAcrossUnitDistance" title="Eastward Atmosphere Water Vapor Transport Across Unit Distance" uid="eastward_atmosphere_water_vapor_transport_across_unit_distance" units="kg m-1 s-1"/>
<item description="A velocity is a vector quantity.  &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward).  Sea ice velocity is defined as a two-dimensional vector, with no vertical component.  &quot;component_derivative_of_X&quot; means  derivative of X with respect to distance in the component  direction, which may be northward, southward, eastward, westward, x or y. The last two indicate derivatives along the axes of the grid, in the case where they are not true longitude and latitude.  The named quantity is a component of the strain rate tensor for sea ice." label="EastwardDerivativeOfNorthwardSeaIceVelocity" title="Eastward Derivative of Northward Sea Ice Velocity" uid="eastward_derivative_of_northward_sea_ice_velocity" units="s-1"/>
<item description="A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Flood water is water that covers land which is normally not covered by water." label="EastwardFloodWaterVelocity" title="Eastward Flood Water Velocity" uid="eastward_flood_water_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Land ice velocity is defined as a two-dimensional vector, with no vertical component. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="EastwardLandIceVelocity" title="Eastward Land Ice Velocity" uid="eastward_land_ice_velocity" units="m s-1"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="EastwardMassFluxOfAir" title="Eastward Mass Flux of Air" uid="eastward_mass_flux_of_air" units="kg m-2 s-1"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Momentum flux is dimensionally equivalent to stress and pressure. It is a tensor quantity. Flux correction is also called &quot;flux adjustment&quot;. A positive flux correction is downward i.e. added to the ocean. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="EastwardMomentumFluxCorrection" title="Eastward Momentum Flux Correction" uid="eastward_momentum_flux_correction" units="Pa"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  &quot;Displacement&quot; means the change in geospatial position of an object that has moved over time. If possible, the time interval over which the motion took place should be specified using a bounds variable for the time coordinate variable.  A displacement can be represented as a vector. Such a vector should however not be interpreted as describing a rectilinear, constant speed motion but merely as an indication that the start point of the vector is found at the tip of the vector after the time interval associated with the displacement variable.  A displacement does not prescribe a trajectory. Sea ice displacement can be defined as a two-dimensional vector, with no vertical component. An eastward displacement is the distance calculated from the change in a moving object's longitude between the start and end of the time interval associated with the displacement variable." label="EastwardSeaIceDisplacement" title="Eastward Sea Ice Displacement" uid="eastward_sea_ice_displacement" units="m"/>
<item description="A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Sea ice velocity is defined as a two-dimensional vector, with no vertical component." label="EastwardSeaIceVelocity" title="Eastward Sea Ice Velocity" uid="eastward_sea_ice_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward)." label="EastwardSeaWaterVelocity" title="Eastward Sea Water Velocity" uid="eastward_sea_water_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity.  &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  A phrase assuming_condition  indicates that the named quantity is the value which would obtain if all  aspects of the system were unaltered except for the assumption of the  circumstances specified by the condition." label="EastwardSeaWaterVelocityAssumingNoTide" title="Eastward Sea Water Velocity Assuming No Tide" uid="eastward_sea_water_velocity_assuming_no_tide" units="m s-1"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward)." label="EastwardTransformedEulerianMeanAirVelocity" title="Eastward Transformed Eulerian Mean Air Velocity" uid="eastward_transformed_eulerian_mean_air_velocity" units="m s-1"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="EastwardWaterVaporFluxInAir" title="Eastward Water Vapor Flux in Air" uid="eastward_water_vapor_flux_in_air" units="kg m-2 s-1"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Transport across_unit_distance means expressed per unit distance normal to the direction of transport." label="EastwardWaterVaporTransportAcrossUnitDistanceInAtmosphereLayer" title="Eastward Water Vapor Transport Across Unit Distance in Atmosphere Layer" uid="eastward_water_vapor_transport_across_unit_distance_in_atmosphere_layer" units="kg m-1 s-1"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="EastwardWind" title="Eastward Wind" uid="eastward_wind" units="m s-1"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) Wind shear is the derivative of wind with respect to height." label="EastwardWindShear" title="Eastward Wind Shear" uid="eastward_wind_shear" units="s-1"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals,is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. &quot;cloud_top&quot; refers to the top of the  highest cloud. &quot;condensed_water&quot; means liquid and ice." label="EffectiveRadiusOfCloudCondensedWaterParticlesAtCloudTop" title="Effective Radius of Cloud Condensed Water Particles At Cloud Top" uid="effective_radius_of_cloud_condensed_water_particles_at_cloud_top" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution." label="EffectiveRadiusOfCloudLiquidWaterParticle" title="Effective Radius of Cloud Liquid Water Particle" uid="effective_radius_of_cloud_liquid_water_particle" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. cloud_top refers to the top of the highest cloud." label="EffectiveRadiusOfCloudLiquidWaterParticleAtLiquidWaterCloudTop" title="Effective Radius of Cloud Liquid Water Particle At Liquid Water Cloud Top" uid="effective_radius_of_cloud_liquid_water_particle_at_liquid_water_cloud_top" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. Convective cloud is that produced by the convection schemes in an atmosphere model." label="EffectiveRadiusOfConvectiveCloudIceParticle" title="Effective Radius of Convective Cloud Ice Particle" uid="effective_radius_of_convective_cloud_ice_particle" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. Convective cloud is that produced by the convection schemes in an atmosphere model." label="EffectiveRadiusOfConvectiveCloudLiquidWaterParticle" title="Effective Radius of Convective Cloud Liquid Water Particle" uid="effective_radius_of_convective_cloud_liquid_water_particle" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. Convective cloud is that produced by the convection schemes in an atmosphere model." label="EffectiveRadiusOfConvectiveCloudRainParticle" title="Effective Radius of Convective Cloud Rain Particle" uid="effective_radius_of_convective_cloud_rain_particle" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. Convective cloud is that produced by the convection schemes in an atmosphere model." label="EffectiveRadiusOfConvectiveCloudSnowParticle" title="Effective Radius of Convective Cloud Snow Particle" uid="effective_radius_of_convective_cloud_snow_particle" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes)." label="EffectiveRadiusOfStratiformCloudGraupelParticle" title="Effective Radius of Stratiform Cloud Graupel Particle" uid="effective_radius_of_stratiform_cloud_graupel_particle" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes)." label="EffectiveRadiusOfStratiformCloudIceParticle" title="Effective Radius of Stratiform Cloud Ice Particle" uid="effective_radius_of_stratiform_cloud_ice_particle" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes)." label="EffectiveRadiusOfStratiformCloudLiquidWaterParticle" title="Effective Radius of Stratiform Cloud Liquid Water Particle" uid="effective_radius_of_stratiform_cloud_liquid_water_particle" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes)." label="EffectiveRadiusOfStratiformCloudRainParticle" title="Effective Radius of Stratiform Cloud Rain Particle" uid="effective_radius_of_stratiform_cloud_rain_particle" units="m"/>
<item description="The effective radius of a size distribution of particles, such as aerosols, cloud droplets or ice crystals, is the area weighted mean radius of particle size. It is calculated as the ratio of the third to the second moment of the particle size distribution. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes)." label="EffectiveRadiusOfStratiformCloudSnowParticle" title="Effective Radius of Stratiform Cloud Snow Particle" uid="effective_radius_of_stratiform_cloud_snow_particle" units="m"/>
<item description="The diameter of an aerosol particle as selected by its electrical mobility." label="ElectricalMobilityParticleDiameter" title="Electrical Mobility Particle Diameter" uid="electrical_mobility_particle_diameter" units="m"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="EnthalpyContentOfAtmosphereLayer" title="Enthalpy Content of Atmosphere Layer" uid="enthalpy_content_of_atmosphere_layer" units="J m-2"/>
<item description="Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level. The equilibrium line is the locus of points on a land ice surface at which ice accumulation balances ice ablation over the year." label="EquilibriumLineAltitude" title="Equilibrium Line Altitude" uid="equilibrium_line_altitude" units="m"/>
<item description="Potential temperature is the temperature a parcel of air or sea water would have if moved adiabatically to sea level pressure." label="EquivalentPotentialTemperature" title="Equivalent Potential Temperature" uid="equivalent_potential_temperature" units="K"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The equivalent pressure of a particular constituent of the atmosphere is the surface pressure exerted by the weight of that constituent alone." label="EquivalentPressureOfAtmosphereOzoneContent" title="Equivalent Pressure of Atmosphere Ozone Content" uid="equivalent_pressure_of_atmosphere_ozone_content" units="Pa"/>
<item description="&quot;Equivalent reflectivity factor&quot;  is the radar reflectivity factor that is calculated from the measured radar return power assuming the target is composed of liquid water droplets whose diameter is less than one tenth of the radar wavelength, i.e., treating the droplets as Rayleigh scatterers.  The actual radar reflectivity factor would depend on the size distribution and composition of the particles within the target volume and these are  often unknown." label="EquivalentReflectivityFactor" title="Equivalent Reflectivity Factor" uid="equivalent_reflectivity_factor" units="dBZ"/>
<item description="" label="EquivalentTemperature" title="Equivalent Temperature" uid="equivalent_temperature" units="K"/>
<item description="&quot;stp&quot; means standard temperature (0 degC) and pressure (101325 Pa). &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The equivalent thickness at STP of a particular constituent of the atmosphere is the thickness of the layer that the gas would occupy if it was separated from the other constituents and gathered together at STP. equivalent_thickness_at_stp_of_atmosphere_ozone_content is usually measured in Dobson Units which are equivalent to 446.2 micromoles m-2 or an equivalent thickness at STP of 10 micrometers. N.B. Data variables containing column content of ozone can be given the standard name of either equivalent_thickness_at_stp_of_atmosphere_ozone_content or atmosphere_mole_content_of_ozone. The latter name is recommended for consistency with mole content names for chemical species other than ozone." label="EquivalentThicknessAtStpOfAtmosphereOzoneContent" title="Equivalent Thickness At Stp of Atmosphere Ozone Content" uid="equivalent_thickness_at_stp_of_atmosphere_ozone_content" units="m"/>
<item description="" label="ErtelPotentialVorticity" title="Ertel Potential Vorticity" uid="ertel_potential_vorticity" units="K m2 kg-1 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;soil content&quot; of a quantity refers to the vertical integral from the surface down to the bottom of the soil model. For the content between specified levels in the soil, standard names including content_of_soil_layer are used.  &quot;Soil carbon&quot; is the organic matter present in soil quantified by the mass of carbon it contains. Soil carbon is returned to the atmosphere as the organic matter decays. The decay process takes varying amounts of time depending on the composition of the organic matter, the temperature and the availability of moisture. A carbon &quot;soil pool&quot; means the carbon contained in organic matter which has a characteristic period over which it decays and releases carbon into the atmosphere. &quot;Fast soil pool&quot; refers to the decay of organic matter in soil with a characteristic period of less than ten years under reference climate conditions of a temperature of 20 degrees Celsius and no water limitations." label="FastSoilPoolCarbonContent" title="Fast Soil Pool Carbon Content" uid="fast_soil_pool_carbon_content" units="kg m-2"/>
<item description="Various stability and convective potential indices are calculated by &quot;lifting&quot; a parcel of air: moving it dry adiabatically from a starting height (often the surface) to the Lifting Condensation Level, and then wet adiabatically from there to an ending height (often the top of the data/model/atmosphere).  original_air_pressure_of_lifted_parcel and final_air_pressure_of_lifted_parcel are the pressure heights at the start and end of lifting, respectively. " label="FinalAirPressureOfLiftedParcel" title="Final Air Pressure of Lifted Parcel" uid="final_air_pressure_of_lifted_parcel" units="Pa"/>
<item description="&quot;X_area&quot; means the horizontal area occupied by X within the grid cell. The extent of an individual grid cell is defined by the horizontal coordinates and any associated coordinate bounds or by a string valued auxiliary coordinate variable with a standard name of &quot;region&quot;. &quot;Fire area&quot; means the area of detected biomass fire." label="FireArea" title="Fire Area" uid="fire_area" units="m2"/>
<item description="The product of the irradiance (the power per unit area) of a biomass fire and the corresponding fire area. A data variable containing the area affected by fire should be given the standard name fire_area." label="FireRadiativePower" title="Fire Radiative Power" uid="fire_radiative_power" units="W"/>
<item description="The overall temperature of a fire area due to contributions from smoldering and flaming biomass. A data variable containing the area affected by fire should be given the standard name fire_area." label="FireTemperature" title="Fire Temperature" uid="fire_temperature" units="K"/>
<item description="&quot;X_area&quot; means the horizontal area occupied by X within the grid cell. The extent of an individual grid cell is defined by the horizontal coordinates and any associated coordinate bounds or by a string valued auxiliary coordinate variable with a standard name of &quot;region&quot;. A &quot;floating ice shelf&quot;, sometimes called a &quot;floating ice sheet&quot;, indicates where an ice sheet extending from a land area flows over sea water." label="FloatingIceShelfArea" title="Floating Ice Shelf Area" uid="floating_ice_shelf_area" units="m2"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. A &quot;floating ice shelf&quot;, sometimes called a &quot;floating ice sheet&quot;, indicates where an ice sheet extending from a land area flows over sea water." label="FloatingIceShelfAreaFraction" title="Floating Ice Shelf Area Fraction" uid="floating_ice_shelf_area_fraction" units="1"/>
<item description="&quot;Floating ice&quot; means any ice that is floating on water, e.g. on a sea or lake surface.  &quot;Thickness&quot; means the vertical extent of the ice." label="FloatingIceThickness" title="Floating Ice Thickness" uid="floating_ice_thickness" units="m"/>
<item description="The  quantity with standard name flood_water_duration_above_threshold is the time elapsed between the instant when the flood depth first rises above a given threshold until the time falls below the same threshold for the last time at a given point in space. If a threshold is supplied, it should be specified by associating a coordinate variable or scalar coordinate variable with the data variable and giving the coordinate variable a standard name of flood_water_thickness. The values of the coordinate variable are the threshold values for the corresponding subarrays of the data variable. If no threshold is specified, its value is taken to be zero. Flood water is water that covers land which is normally not covered by water." label="FloodWaterDurationAboveThreshold" title="Flood Water Duration Above Threshold" uid="flood_water_duration_above_threshold" units="s"/>
<item description="Speed is the magnitude of velocity. Flood water is water that covers land which is normally not covered by water." label="FloodWaterSpeed" title="Flood Water Speed" uid="flood_water_speed" units="m s-1"/>
<item description="The flood_water_thickness is the vertical distance between the surface of the flood water and the surface of the solid ground, as measured at a given point in space. The standard name ground_level_altitude is used for a data variable giving the geometric height of the ground surface above the geoid. &quot;Flood water&quot; is water that covers land which is normally not covered by water." label="FloodWaterThickness" title="Flood Water Thickness" uid="flood_water_thickness" units="m"/>
<item description="Fog means water droplets or minute ice crystals close to the surface which reduce visibility in air to less than 1000m. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X." label="FogAreaFraction" title="Fog Area Fraction" uid="fog_area_fraction" units="1"/>
<item description="Forecast period is the time interval between the forecast reference time and the validity time. A period is an interval of time, or the time-period of an oscillation." label="ForecastPeriod" title="Forecast Period" uid="forecast_period" units="s"/>
<item description="The forecast reference time in NWP is the &quot;data time&quot;, the time of the analysis from which the forecast was made. It is not the time for which the forecast is valid; the standard name of time should be used for that time." label="ForecastReferenceTime" title="Forecast Reference Time" uid="forecast_reference_time" units="s"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. The quantity with standard name fraction_of_surface_downwelling_photosynthetic_radiative_flux_absorbed_by_vegetation, often called Fraction of Absorbed Photosynthetically Active Radiation (FAPAR), is the fraction of incoming solar radiation in the photosynthetically active radiation spectral region that is absorbed by a vegetation canopy. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of &quot;radiation_wavelength&quot;. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. &quot;Vegetation&quot; means any plants e.g. trees, shrubs, grass. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="FractionOfSurfaceDownwellingPhotosyntheticRadiativeFluxAbsorbedByVegetation" title="Fraction of Surface Downwelling Photosynthetic Radiative Flux Absorbed by Vegetation" uid="fraction_of_surface_downwelling_photosynthetic_radiative_flux_absorbed_by_vegetation" units="1"/>
<item description="Fractional saturation is the ratio of some measure of concentration to the saturated value of the same quantity." label="FractionalSaturationOfOxygenInSeaWater" title="Fractional Saturation of Oxygen in Sea Water" uid="fractional_saturation_of_oxygen_in_sea_water" units="1"/>
<item description="Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." label="FreezingLevelAltitude" title="Freezing Level Altitude" uid="freezing_level_altitude" units="m"/>
<item description="" label="FreezingTemperatureOfSeaWater" title="Freezing Temperature of Sea Water" uid="freezing_temperature_of_sea_water" units="K"/>
<item description="&quot;frozen_water&quot; means ice. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Quantities defined for a soil layer must have a vertical coordinate variable with boundaries indicating the extent of the layer(s)." label="FrozenWaterContentOfSoilLayer" title="Frozen Water Content of Soil Layer" uid="frozen_water_content_of_soil_layer" units="kg m-2"/>
<item description="The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. (The volume enclosed between the geoid and the sea floor equals the mean volume of water in the ocean.) In an ocean GCM the geoid is the surface of zero depth, or the rigid lid if the model uses that approximation.  A reference ellipsoid is a regular mathematical figure that approximates the irregular shape of the geoid. A number of reference ellipsoids are defined for use in the field of geodesy." label="GeoidHeightAboveReferenceEllipsoid" title="Geoid Height Above Reference Ellipsoid" uid="geoid_height_above_reference_ellipsoid" units="m"/>
<item description="Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy." label="Geopotential" title="Geopotential" uid="geopotential" units="m2 s-2"/>
<item description="Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. Geopotential height is the geopotential divided by the standard acceleration due to gravity. It is numerically similar to the altitude (or geometric height) and not to the quantity with standard name height, which is relative to the surface." label="GeopotentialHeight" title="Geopotential Height" uid="geopotential_height" units="m"/>
<item description="&quot;anomaly&quot; means difference from climatology. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. Geopotential height is the geopotential divided by the standard acceleration due to gravity. It is numerically similar to the altitude (or geometric height) and not to the quantity with standard name height, which is relative to the surface." label="GeopotentialHeightAnomaly" title="Geopotential Height Anomaly" uid="geopotential_height_anomaly" units="m"/>
<item description="Cloud_top refers to the top of the highest cloud. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. Geopotential height is the geopotential divided by the standard acceleration due to gravity. It is numerically similar to the altitude (or geometric height) and not to the quantity with standard name &quot;height&quot;, which is relative to the surface." label="GeopotentialHeightAtCloudTop" title="Geopotential Height At Cloud Top" uid="geopotential_height_at_cloud_top" units="m"/>
<item description="Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. Geopotential height is the geopotential divided by the standard acceleration due to gravity. It is numerically similar to the altitude (or geometric height) and not to the quantity with standard name &quot;height&quot;, which is relative to the surface. &quot;Volcanic_ash&quot; means the fine-grained products of explosive volcanic eruptions, such as minerals or crystals, older fragmented rock (e.g. andesite), and glass. Particles within a volcanic ash cloud have diameters less than 2 mm. &quot;Volcanic_ash&quot; does not include non-volcanic dust." label="GeopotentialHeightAtVolcanicAshCloudTop" title="Geopotential Height At Volcanic Ash Cloud Top" uid="geopotential_height_at_volcanic_ash_cloud_top" units="m"/>
<item description="A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars." label="GeostrophicEastwardSeaWaterVelocity" title="Geostrophic Eastward Sea Water Velocity" uid="geostrophic_eastward_sea_water_velocity" units="m s-1"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars." label="GeostrophicEastwardWind" title="Geostrophic Eastward Wind" uid="geostrophic_eastward_wind" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars." label="GeostrophicNorthwardSeaWaterVelocity" title="Geostrophic Northward Sea Water Velocity" uid="geostrophic_northward_sea_water_velocity" units="m s-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars." label="GeostrophicNorthwardWind" title="Geostrophic Northward Wind" uid="geostrophic_northward_wind" units="m s-1"/>
<item description="Global average sea level change is due to change in volume of the water in the ocean, caused by mass and/or density change, or to change in the volume of the ocean basins, caused by tectonics etc. It is sometimes called &quot;eustatic&quot;, which is a term that also has other definitions. It differs from the change in the global average sea surface height relative to the centre of the Earth by the global average vertical movement of the ocean floor. Zero sea level change is an arbitrary level." label="GlobalAverageSeaLevelChange" title="Global Average Sea Level Change" uid="global_average_sea_level_change" units="m"/>
<item description="Global average steric sea level change is caused by changes in sea water density due to changes in temperature (thermosteric) and salinity (halosteric). Zero sea level change is an arbitrary level." label="GlobalAverageStericSeaLevelChange" title="Global Average Steric Sea Level Change" uid="global_average_steric_sea_level_change" units="m"/>
<item description="Global average thermosteric sea level change is the part caused by change in density due to change in temperature i.e. thermal expansion. Zero sea level change is an arbitrary level." label="GlobalAverageThermostericSeaLevelChange" title="Global Average Thermosteric Sea Level Change" uid="global_average_thermosteric_sea_level_change" units="m"/>
<item description="Latitude is positive northward; its units of degree_north (or equivalent) indicate this explicitly. In a latitude-longitude system defined with respect to a rotated North Pole, the standard name of grid_latitude should be used instead of latitude. Grid latitude is positive in the grid-northward direction, but its units should be plain degree." label="GridLatitude" title="Grid Latitude" uid="grid_latitude" units="degree"/>
<item description="Longitude is positive eastward; its units of degree_east (or equivalent) indicate this explicitly. In a latitude-longitude system defined with respect to a rotated North Pole, the standard name of grid_longitude should be used instead of longitude. Grid longitude is positive in the grid-eastward direction, but its units should be plain degree." label="GridLongitude" title="Grid Longitude" uid="grid_longitude" units="degree"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Gross primary production is the rate of synthesis of biomass from inorganic precursors by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton. The producers also respire some of this biomass and the difference is &quot;net_primary_production&quot;. &quot;Productivity&quot; means production per unit area. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="GrossPrimaryProductivityOfBiomassExpressedAsCarbon" title="Gross Primary Productivity of Biomass Expressed As Carbon" uid="gross_primary_productivity_of_biomass_expressed_as_carbon" units="kg m-2 s-1"/>
<item description="The &quot;gross rate of decrease in area fraction&quot; is the fraction of a grid cell that transitions from a given area type per unit time, for example, as a result of land use changes. The quantity described by this standard name is a gross decrease because it includes only land where the use transitions away from the given area type and excludes land that transitions to that area type during the same period. The area type should be specified using a coordinate of scalar coordinate variable with standard name area_type. There is also a standard name for gross_rate_of_increase_in_area_fraction." label="GrossRateOfDecreaseInAreaFraction" title="Gross Rate of Decrease in Area Fraction" uid="gross_rate_of_decrease_in_area_fraction" units="s-1"/>
<item description="The &quot;rate of increase in area fraction&quot; is the fraction of a grid cell that transitions to a given area type per unit time, for example, as a result of land use changes. The quantity described by this standard name is a gross increase because it includes only land where the use transitions to the given area type and excludes land that transitions away from that area type during the same period. The area type should be specified using a coordinate or scalar coordinate variable with standard name area_type. There is also a standard name for gross_rate_of_decrease_in_area_fraction." label="GrossRateOfIncreaseInAreaFraction" title="Gross Rate of Increase in Area Fraction" uid="gross_rate_of_increase_in_area_fraction" units="s-1"/>
<item description="The ground_level_altitude is the geometric height of the upper boundary of the solid Earth above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." label="GroundLevelAltitude" title="Ground Level Altitude" uid="ground_level_altitude" units="m"/>
<item description="&quot;X_area&quot; means the horizontal area occupied by X within the grid cell. The extent of an individual grid cell is defined by the horizontal coordinates and any associated coordinate bounds or by a string valued auxiliary coordinate variable with a standard name of &quot;region&quot;. &quot;Grounded ice sheet&quot; indicates where the ice sheet rests over bedrock and is thus grounded. It excludes ice-caps, glaciers and floating ice shelves." label="GroundedIceSheetArea" title="Grounded Ice Sheet Area" uid="grounded_ice_sheet_area" units="m2"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;Grounded ice sheet&quot; indicates where the ice sheet rests over bedrock and is thus grounded. It excludes ice-caps, glaciers and floating ice shelves." label="GroundedIceSheetAreaFraction" title="Grounded Ice Sheet Area Fraction" uid="grounded_ice_sheet_area_fraction" units="1"/>
<item description="&quot;Calcareous phytoplankton&quot; are phytoplankton that produce calcite.  Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Irradiance&quot; means the power per unit area (called radiative flux in other standard names), the area being normal to the direction of flow of the radiant energy. Solar irradiance is essential to the photosynthesis reaction and its presence promotes the growth of phytoplankton populations. &quot;Growth limitation due to solar irradiance&quot; means the ratio of the growth rate of a species population in the environment (where the amount of sunlight reaching a location may be limited) to the theoretical growth rate if there were no such limit on solar irradiance." label="GrowthLimitationOfCalcareousPhytoplanktonDueToSolarIrradiance" title="Growth Limitation of Calcareous Phytoplankton Due To Solar Irradiance" uid="growth_limitation_of_calcareous_phytoplankton_due_to_solar_irradiance" units="1"/>
<item description="Diatoms are phytoplankton with an external skeleton made of silica. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Irradiance&quot; means the power per unit area (called radiative flux in other standard names), the area being normal to the direction of flow of the radiant energy. Solar irradiance is essential to the photosynthesis reaction and its presence promotes the growth of phytoplankton populations. &quot;Growth limitation due to solar irradiance&quot; means the ratio of the growth rate of a species population in the environment (where the amount of sunlight reaching a location may be limited) to the theoretical growth rate if there were no such limit on solar irradiance." label="GrowthLimitationOfDiatomsDueToSolarIrradiance" title="Growth Limitation of Diatoms Due To Solar Irradiance" uid="growth_limitation_of_diatoms_due_to_solar_irradiance" units="1"/>
<item description="In ocean modelling, diazotrophs are phytoplankton of the phylum cyanobacteria distinct from other phytoplankton groups in their ability to fix nitrogen gas in addition to nitrate and ammonium. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Irradiance&quot; means the power per unit area (called radiative flux in other standard names), the area being normal to the direction of flow of the radiant energy. Solar irradiance is essential to the photosynthesis reaction and its presence promotes the growth of phytoplankton populations. &quot;Growth limitation due to solar irradiance&quot; means the ratio of the growth rate of a species population in the environment (where the amount of sunlight reaching a location may be limited) to the theoretical growth rate if there were no such limit on solar irradiance." label="GrowthLimitationOfDiazotrophsDueToSolarIrradiance" title="Growth Limitation of Diazotrophs Due To Solar Irradiance" uid="growth_limitation_of_diazotrophs_due_to_solar_irradiance" units="1"/>
<item description="Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Miscellaneous phytoplankton&quot; are all those phytoplankton that are not diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton or other separately named components of the phytoplankton population. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Irradiance&quot; means the power per unit area (called radiative flux in other standard names), the area being normal to the direction of flow of the radiant energy. Solar irradiance is essential to the photosynthesis reaction and its presence promotes the growth of phytoplankton populations. &quot;Growth limitation due to solar irradiance&quot; means the ratio of the growth rate of a species population in the environment (where the amount of sunlight reaching a location may be limited) to the theoretical growth rate if there were no such limit on solar irradiance." label="GrowthLimitationOfMiscellaneousPhytoplanktonDueToSolarIrradiance" title="Growth Limitation of Miscellaneous Phytoplankton Due To Solar Irradiance" uid="growth_limitation_of_miscellaneous_phytoplankton_due_to_solar_irradiance" units="1"/>
<item description="Picophytoplankton are phytoplankton of less than 2 micrometers in size. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Irradiance&quot; means the power per unit area (called radiative flux in other standard names), the area being normal to the direction of flow of the radiant energy. Solar irradiance is essential to the photosynthesis reaction and its presence promotes the growth of phytoplankton populations. &quot;Growth limitation due to solar irradiance&quot; means the ratio of the growth rate of a species population in the environment (where the amount of sunlight reaching a location may be limited) to the theoretical growth rate if there were no such limit on solar irradiance." label="GrowthLimitationOfPicophytoplanktonDueToSolarIrradiance" title="Growth Limitation of Picophytoplankton Due To Solar Irradiance" uid="growth_limitation_of_picophytoplankton_due_to_solar_irradiance" units="1"/>
<item description="A period is an interval of time, or the time-period of an oscillation." label="HarmonicPeriod" title="Harmonic Period" uid="harmonic_period" units="s"/>
<item description="Flux correction is also called &quot;flux adjustment&quot;. A positive flux correction is downward i.e. added to the ocean. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="HeatFluxCorrection" title="Heat Flux Correction" uid="heat_flux_correction" units="W m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Frazil&quot; consists of needle like crystals of ice, typically between three and four millimeters in diameter, which form as sea water begins to freeze. Salt is expelled during the freezing process and frazil ice consists of nearly pure fresh water." label="HeatFluxIntoSeaWaterDueToFreezingOfFrazilIce" title="Heat Flux Into Sea Water Due To Freezing of Frazil Ice" uid="heat_flux_into_sea_water_due_to_freezing_of_frazil_ice" units="W m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot; Iceberg thermodynamics&quot; refers to the addition or subtraction of mass due to surface and basal fluxes, i.e., due to melting, sublimation and fusion." label="HeatFluxIntoSeaWaterDueToIcebergThermodynamics" title="Heat Flux Into Sea Water Due To Iceberg Thermodynamics" uid="heat_flux_into_sea_water_due_to_iceberg_thermodynamics" units="W m-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  The heat_flux_into_sea_water_due_to_newtonian_relaxation is the heat flux resulting from the Newtonian relaxation of the sea surface temperature. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="HeatFluxIntoSeaWaterDueToNewtonianRelaxation" title="Heat Flux Into Sea Water Due To Newtonian Relaxation" uid="heat_flux_into_sea_water_due_to_newtonian_relaxation" units="W m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;Sea ice thermodynamics&quot; refers to the addition or subtraction of mass due to surface and basal fluxes, i.e., due to melting, sublimation and fusion." label="HeatFluxIntoSeaWaterDueToSeaIceThermodynamics" title="Heat Flux Into Sea Water Due To Sea Ice Thermodynamics" uid="heat_flux_into_sea_water_due_to_sea_ice_thermodynamics" units="W m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;Snow thermodynamics&quot; refers to the addition or subtraction of mass due to surface and basal fluxes, i.e., due to melting, sublimation and fusion." label="HeatFluxIntoSeaWaterDueToSnowThermodynamics" title="Heat Flux Into Sea Water Due To Snow Thermodynamics" uid="heat_flux_into_sea_water_due_to_snow_thermodynamics" units="W m-2"/>
<item description="Height is the vertical distance above the surface." label="Height" title="Height" uid="height" units="m"/>
<item description="Height is the vertical distance above a surface. A reference ellipsoid is a mathematical figure that approximates the geoid. The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. The ellipsoid is an approximation because the geoid is an irregular shape. A number of reference ellipsoids are defined for use in the field of geodesy." label="HeightAboveReferenceEllipsoid" title="Height Above Reference Ellipsoid" uid="height_above_reference_ellipsoid" units="m"/>
<item description="" label="HeightAboveSeaFloor" title="Height Above Sea Floor" uid="height_above_sea_floor" units="m"/>
<item description="cloud_top refers to the top of the highest cloud. Height is the vertical distance above the surface." label="HeightAtCloudTop" title="Height At Cloud Top" uid="height_at_cloud_top" units="m"/>
<item description="The &quot;effective cloud top defined by infrared radiation&quot; is (approximately) the geometric height above the surface that is one optical depth at infrared wavelengths (in the region of 11 micrometers) below the cloud top that would be detected by visible and lidar techniques. Reference: Minnis, P. et al 2011 CERES Edition-2 Cloud Property Retrievals Using TRMM VIRS and Terra and Aqua MODIS Data x2014; Part I: Algorithms IEEE Transactions on Geoscience and Remote Sensing, 49(11), 4374-4400. doi: http://dx.doi.org/10.1109/TGRS.2011.2144601." label="HeightAtEffectiveCloudTopDefinedByInfraredRadiation" title="Height At Effective Cloud Top Defined by Infrared Radiation" uid="height_at_effective_cloud_top_defined_by_infrared_radiation" units="m"/>
<item description="&quot;Respiration carbon&quot; refers to the rate at which biomass is respired expressed as the mass of carbon which it contains. Heterotrophic respiration is respiration by heterotrophs (&quot;consumers&quot;), which are organisms (including animals and decomposers) that consume other organisms or dead organic material, rather than synthesising organic material from inorganic precursors using energy from the environment (especially sunlight) as autotrophs (&quot;producers&quot;) do. Heterotrophic respiration goes on both above and within the soil. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="HeterotrophicRespirationCarbonFlux" title="Heterotrophic Respiration Carbon Flux" uid="heterotrophic_respiration_carbon_flux" units="kg m-2 s-1"/>
<item description="High type clouds are: Cirrus, Cirrostratus, Cirrocumulus. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. X_type_cloud_area_fraction is generally determined on the basis of cloud type, though Numerical Weather Prediction (NWP) models often calculate them based on the vertical location of the cloud." label="HighTypeCloudAreaFraction" title="High Type Cloud Area Fraction" uid="high_type_cloud_area_fraction" units="1"/>
<item description="Scattering of radiation is its deflection from its incident path without loss of energy.  Backwards scattering refers to the sum of scattering into all backward angles i.e. scattering_angle exceeding pi/2 radians. A scattering_angle should not be specified with this quantity.  &quot;Backscattering ratio&quot; is the ratio of the  quantity with standard name volume_attenuated_backwards_scattering_function_in_air to the quantity with standard name volume_attenuated_backwards_scattering_function_in_air_assuming_no_aerosol_or_cloud. &quot;histogram_of_X[_over_Z]&quot; means histogram (i.e. number of counts for each  range of X) of variations (over Z) of X.   The data variable should have an  axis for X." label="HistogramOfBackscatteringRatioOverHeightAboveReferenceEllipsoid" title="Histogram of Backscattering Ratio Over Height Above Reference Ellipsoid" uid="histogram_of_backscattering_ratio_over_height_above_reference_ellipsoid" units="1"/>
<item description="&quot;Equivalent reflectivity factor&quot;  is the radar reflectivity factor that is calculated from the measured radar return power assuming the target is composed of liquid water droplets whose diameter is less than one tenth of the radar wavelength, i.e., treating the droplets as Rayleigh scatterers.  The actual radar reflectivity factor would depend on the size distribution and composition of the particles within the target volume and these are  often unknown. &quot;histogram_of_X[_over_Z]&quot; means histogram (i.e. number of counts for each  range of X) of variations (over Z) of X.   The data variable should have an  axis for X.  A reference ellipsoid is a regular mathematical figure that approximates the irregular shape of the geoid. A number of reference ellipsoids are defined for use in the field of geodesy." label="HistogramOfEquivalentReflectivityFactorOverHeightAboveReferenceEllipsoid" title="Histogram of Equivalent Reflectivity Factor Over Height Above Reference Ellipsoid" uid="histogram_of_equivalent_reflectivity_factor_over_height_above_reference_ellipsoid" units="1"/>
<item description="Dry energy is the sum of dry static energy and kinetic energy. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="HorizontalAtmosphereDryEnergyTransport" title="Horizontal Atmosphere Dry Energy Transport" uid="horizontal_atmosphere_dry_energy_transport" units="W m-2"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Dry energy is the sum of dry static energy and kinetic energy. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="HorizontalDryEnergyTransportInAtmosphereLayer" title="Horizontal Dry Energy Transport in Atmosphere Layer" uid="horizontal_dry_energy_transport_in_atmosphere_layer" units="W m-2"/>
<item description="Humidity mixing ratio of a parcel of moist air is the ratio of the mass of water vapor to the mass of dry air." label="HumidityMixingRatio" title="Humidity Mixing Ratio" uid="humidity_mixing_ratio" units="1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. The cloud area fraction is for the whole atmosphere column, as seen from the surface or the top of the atmosphere. The cloud area fraction in a layer of the atmosphere has the standard name cloud_area_fraction_in_atmosphere_layer." label="IceCloudAreaFraction" title="Ice Cloud Area Fraction" uid="ice_cloud_area_fraction" units="1"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be &quot;model_level_number&quot;, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;." label="IceCloudAreaFractionInAtmosphereLayer" title="Ice Cloud Area Fraction in Atmosphere Layer" uid="ice_cloud_area_fraction_in_atmosphere_layer" units="1"/>
<item description="An auxiliary coordinate variable with a standard name of institution contains string values which specify where the original data, with which the coordinate variable is associated, were produced. The use of institution as the standard name for an auxiliary coordinate variable permits the aggregation of data from multiple institutions within a single data file." label="Institution" title="Institution" uid="institution" units=""/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to. Air temperature is the bulk temperature of the air, not the surface (skin) temperature. The air temperature deficit is the air temperature threshold minus the air temperature, where only positive values are included in the integral. Its integral with respect to time is often called after its units of &quot;degree-days&quot;. The air_temperature variable, which is the data variable of the integral should have a scalar coordinate variable or a size-one coordinate variable with the standard name of air_temperature_threshold, to indicate the threshold." label="IntegralOfAirTemperatureDeficitWrtTime" title="Integral of Air Temperature Deficit Wrt Time" uid="integral_of_air_temperature_deficit_wrt_time" units="K s"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to. Air temperature is the bulk temperature of the air, not the surface (skin) temperature. The air temperature excess is the air temperature minus the air temperature threshold, where only positive values are included in the integral. Its integral with respect to time is often called after its units of &quot;degree-days&quot;. The air_temperature variable, which is the data variable of the integral should have a scalar coordinate variable or a size-one coordinate variable with the standard name of air_temperature_threshold, to indicate the threshold." label="IntegralOfAirTemperatureExcessWrtTime" title="Integral of Air Temperature Excess Wrt Time" uid="integral_of_air_temperature_excess_wrt_time" units="K s"/>
<item description="The phrase &quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. The phrase &quot;wrt&quot; means &quot;with respect to&quot;. Height is the vertical distance above the surface. The phrase &quot;product_of_X_and_Y&quot; means X*Y. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name &quot;upward_air_velocity&quot;.) &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Specific humidity is the mass fraction of water vapor in (moist) air." label="IntegralOfProductOfEastwardWindAndSpecificHumidityWrtHeight" title="Integral of Product of Eastward Wind And Specific Humidity Wrt Height" uid="integral_of_product_of_eastward_wind_and_specific_humidity_wrt_height" units="m2 s-1"/>
<item description="The phrase &quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. The phrase &quot;wrt&quot; means &quot;with respect to&quot;. Height is the vertical distance above the surface. The phrase &quot;product_of_X_and_Y&quot; means X*Y. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name &quot;upward_air_velocity&quot;.) &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Specific humidity is the mass fraction of water vapor in (moist) air." label="IntegralOfProductOfNorthwardWindAndSpecificHumidityWrtHeight" title="Integral of Product of Northward Wind And Specific Humidity Wrt Height" uid="integral_of_product_of_northward_wind_and_specific_humidity_wrt_height" units="m2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  Depth is the vertical distance below the surface.  The quantity with standard name integral_of_sea_ice_temperature_wrt_depth_expressed_as_heat_content is calculated relative to the heat content of ice at zero degrees Celsius, which is assumed to have a heat content of zero Joules. &quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds.  &quot;wrt&quot; means with respect to." label="IntegralOfSeaIceTemperatureWrtDepthExpressedAsHeatContent" title="Integral of Sea Ice Temperature Wrt Depth Expressed As Heat Content" uid="integral_of_sea_ice_temperature_wrt_depth_expressed_as_heat_content" units="J m-2"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds.  &quot;wrt&quot; means with respect to. &quot;expressed_as_heat_content&quot; means that this quantity is calculated as the (assumed constant) specific heat capacity times density of sea water multiplied by the integral, over the specified layer of the ocean, of the sea water potential temperature wrt depth." label="IntegralOfSeaWaterPotentialTemperatureWrtDepthExpressedAsHeatContent" title="Integral of Sea Water Potential Temperature Wrt Depth Expressed As Heat Content" uid="integral_of_sea_water_potential_temperature_wrt_depth_expressed_as_heat_content" units="J m-2"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Depth is the vertical distance below the surface. Sea water temperature is the in situ temperature of the sea water. For observed data, depending on the period during which the observation was made, the measured in situ temperature was recorded against standard &quot;scales&quot;. These historical scales include the International Practical Temperature Scale of 1948 (IPTS-48; 1948-1967), the International Practical Temperature Scale of 1968 (IPTS-68, Barber, 1969; 1968-1989) and the International Temperature Scale of 1990 (ITS-90, Saunders 1990; 1990 onwards). Conversion of data between these scales follows t68 = t48 - (4.4 x 10e-6) * t48(100 - t - 48); t90 = 0.99976 * t68. Observations made prior to 1948 (IPTS-48) have not been documented and therefore a conversion cannot be certain. Differences between t90 and t68 can be up to 0.01 at temperatures of 40 C and above; differences of 0.002-0.007 occur across the standard range of ocean temperatures (-10 - 30 C). The International Equation of State of Seawater 1980 (EOS-80, UNESCO, 1981) and the Practical Salinity Scale (PSS-78) were both based on IPTS-68, while the Thermodynamic Equation of Seawater 2010 (TEOS-10) is based on ITS-90. References: Barber, 1969, doi: 10.1088/0026-1394/5/2/001; UNESCO, 1981; Saunders, 1990, WOCE Newsletter, 10, September 1990." label="IntegralOfSeaWaterTemperatureWrtDepthInOceanLayer" title="Integral of Sea Water Temperature Wrt Depth in Ocean Layer" uid="integral_of_sea_water_temperature_wrt_depth_in_ocean_layer" units="K m"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). &quot;Downward eastward&quot; indicates the ZX component of a tensor. A downward eastward stress is a downward flux of eastward momentum, which accelerates the lower medium eastward and the upper medium westward. The surface downward stress is the windstress on the surface." label="IntegralOfSurfaceDownwardEastwardStressWrtTime" title="Integral of Surface Downward Eastward Stress Wrt Time" uid="integral_of_surface_downward_eastward_stress_wrt_time" units="Pa s"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). The surface latent heat flux is the exchange of heat between the surface and the air on account of evaporation (including sublimation). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="IntegralOfSurfaceDownwardLatentHeatFluxWrtTime" title="Integral of Surface Downward Latent Heat Flux Wrt Time" uid="integral_of_surface_downward_latent_heat_flux_wrt_time" units="W s m-2"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). &quot;Downward northward&quot; indicates the ZY component of a tensor. A downward northward stress is a downward flux of northward momentum, which accelerates the lower medium northward and the upper medium southward. The surface downward stress is the windstress on the surface." label="IntegralOfSurfaceDownwardNorthwardStressWrtTime" title="Integral of Surface Downward Northward Stress Wrt Time" uid="integral_of_surface_downward_northward_stress_wrt_time" units="Pa s"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  The surface sensible heat flux, also called &quot;turbulent&quot; heat flux, is the exchange of heat between the surface and the air by motion of air. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="IntegralOfSurfaceDownwardSensibleHeatFluxWrtTime" title="Integral of Surface Downward Sensible Heat Flux Wrt Time" uid="integral_of_surface_downward_sensible_heat_flux_wrt_time" units="W s m-2"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;longwave&quot; means longwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="IntegralOfSurfaceDownwellingLongwaveFluxInAirWrtTime" title="Integral of Surface Downwelling Longwave Flux in Air Wrt Time" uid="integral_of_surface_downwelling_longwave_flux_in_air_wrt_time" units="W s m-2"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;shortwave&quot; means shortwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Surface downwelling shortwave is the sum of direct and diffuse solar radiation incident on the surface, and is sometimes called &quot;global radiation&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="IntegralOfSurfaceDownwellingShortwaveFluxInAirWrtTime" title="Integral of Surface Downwelling Shortwave Flux in Air Wrt Time" uid="integral_of_surface_downwelling_shortwave_flux_in_air_wrt_time" units="W s m-2"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). &quot;Longwave&quot; means longwave radiation.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="IntegralOfSurfaceNetDownwardLongwaveFluxWrtTime" title="Integral of Surface Net Downward Longwave Flux Wrt Time" uid="integral_of_surface_net_downward_longwave_flux_wrt_time" units="W s m-2"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). &quot;Shortwave&quot; means shortwave radiation.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="IntegralOfSurfaceNetDownwardShortwaveFluxWrtTime" title="Integral of Surface Net Downward Shortwave Flux Wrt Time" uid="integral_of_surface_net_downward_shortwave_flux_wrt_time" units="W s m-2"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to.  &quot;toa&quot; means top of atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling).  &quot;Shortwave&quot; means shortwave radiation.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="IntegralOfToaNetDownwardShortwaveFluxWrtTime" title="Integral of Toa Net Downward Shortwave Flux Wrt Time" uid="integral_of_toa_net_downward_shortwave_flux_wrt_time" units="W s m-2"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to.  &quot;toa&quot; means top of atmosphere.  &quot;Longwave&quot; means longwave radiation.  The TOA outgoing longwave flux is the upwelling thermal radiative flux, often called the &quot;outgoing longwave radiation&quot; or &quot;OLR&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="IntegralOfToaOutgoingLongwaveFluxWrtTime" title="Integral of Toa Outgoing Longwave Flux Wrt Time" uid="integral_of_toa_outgoing_longwave_flux_wrt_time" units="W s m-2"/>
<item description="Depth is the vertical distance below the surface.   'sea_water_alkalinity_expressed_as_mole_equivalent' is the total alkalinity equivalent concentration (including carbonate, nitrogen, silicate, and borate components). &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;wrt&quot; means with respect to." label="IntegralWrtDepthOfTendencyOfSeaWaterAlkalinityExpressedAsMoleEquivalent" title="Integral Wrt Depth of Tendency of Sea Water Alkalinity Expressed As Mole Equivalent" uid="integral_wrt_depth_of_tendency_of_sea_water_alkalinity_expressed_as_mole_equivalent" units="mol m-2 s-1"/>
<item description="Depth is the vertical distance below the surface.   'sea_water_alkalinity_expressed_as_mole_equivalent' is the total alkalinity equivalent concentration (including carbonate, nitrogen, silicate, and borate components). The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;wrt&quot; means with respect to." label="IntegralWrtDepthOfTendencyOfSeaWaterAlkalinityExpressedAsMoleEquivalentDueToBiologicalProcesses" title="Integral Wrt Depth of Tendency of Sea Water Alkalinity Expressed As Mole Equivalent Due To Biological Processes" uid="integral_wrt_depth_of_tendency_of_sea_water_alkalinity_expressed_as_mole_equivalent_due_to_biological_processes" units="mol m-2 s-1"/>
<item description="&quot;Calcareous phytoplankton&quot; are phytoplankton that produce calcite. Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Iron growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of iron) to the theoretical growth rate if there were no such limit on iron availability." label="IronGrowthLimitationOfCalcareousPhytoplankton" title="Iron Growth Limitation of Calcareous Phytoplankton" uid="iron_growth_limitation_of_calcareous_phytoplankton" units="1"/>
<item description="Diatoms are phytoplankton with an external skeleton made of silica. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Iron growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of iron) to the theoretical growth rate if there were no such limit on iron availability." label="IronGrowthLimitationOfDiatoms" title="Iron Growth Limitation of Diatoms" uid="iron_growth_limitation_of_diatoms" units="1"/>
<item description="In ocean modelling, diazotrophs are phytoplankton of the phylum cyanobacteria distinct from other phytoplankton groups in their ability to fix nitrogen gas in addition to nitrate and ammonium. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Iron growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of iron) to the theoretical growth rate if there were no such limit on iron availability." label="IronGrowthLimitationOfDiazotrophs" title="Iron Growth Limitation of Diazotrophs" uid="iron_growth_limitation_of_diazotrophs" units="1"/>
<item description="Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Miscellaneous phytoplankton&quot; are all those phytoplankton that are not diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton or other separately named components of the phytoplankton population. &quot;Iron growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of iron) to the theoretical growth rate if there were no such limit on iron availability." label="IronGrowthLimitationOfMiscellaneousPhytoplankton" title="Iron Growth Limitation of Miscellaneous Phytoplankton" uid="iron_growth_limitation_of_miscellaneous_phytoplankton" units="1"/>
<item description="Picophytoplankton are phytoplankton of less than 2 micrometers in size. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Iron growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of iron) to the theoretical growth rate if there were no such limit on iron availability." label="IronGrowthLimitationOfPicophytoplankton" title="Iron Growth Limitation of Picophytoplankton" uid="iron_growth_limitation_of_picophytoplankton" units="1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. The cloud area fraction is for the whole atmosphere column, as seen from the surface or the top of the atmosphere. The cloud area fraction in a layer of the atmosphere has the standard name cloud_area_fraction_in_atmosphere_layer. The ISCCP cloud area fraction is diagnosed from atmosphere model output by the ISCCP simulator software in such a way as to be comparable with the observational diagnostics of ISCCP (the International Satellite Cloud Climatology Project)." label="IsccpCloudAreaFraction" title="Isccp Cloud Area Fraction" uid="isccp_cloud_area_fraction" units="1"/>
<item description="&quot;longwave&quot; means longwave radiation. Radiance is the radiative flux in a particular direction, per unit of solid angle. If radiation is isotropic, the radiance is independent of direction, so the direction should not be specified. If the radiation is directionally dependent, a standard name of upwelling or downwelling radiance should be chosen instead." label="IsotropicLongwaveRadianceInAir" title="Isotropic Longwave Radiance in Air" uid="isotropic_longwave_radiance_in_air" units="W m-2 sr-1"/>
<item description="Radiance is the radiative flux in a particular direction, per unit of solid angle. If radiation is isotropic, the radiance is independent of direction, so the direction should not be specified. If the radiation is directionally dependent, a standard name of upwelling or downwelling radiance should be chosen instead. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="IsotropicRadiancePerUnitWavelengthInAir" title="Isotropic Radiance Per Unit Wavelength in Air" uid="isotropic_radiance_per_unit_wavelength_in_air" units="W m-2 m-1 sr-1"/>
<item description="&quot;shortwave&quot; means shortwave radiation. Radiance is the radiative flux in a particular direction, per unit of solid angle. If radiation is isotropic, the radiance is independent of direction, so the direction should not be specified. If the radiation is directionally dependent, a standard name of upwelling or downwelling radiance should be chosen instead." label="IsotropicShortwaveRadianceInAir" title="Isotropic Shortwave Radiance in Air" uid="isotropic_shortwave_radiance_in_air" units="W m-2 sr-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="KineticEnergyContentOfAtmosphereLayer" title="Kinetic Energy Content of Atmosphere Layer" uid="kinetic_energy_content_of_atmosphere_layer" units="J m-2"/>
<item description="" label="KineticEnergyDissipationInAtmosphereBoundaryLayer" title="Kinetic Energy Dissipation in Atmosphere Boundary Layer" uid="kinetic_energy_dissipation_in_atmosphere_boundary_layer" units="W m-2"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. The Lagrangian tendency of a quantity is its rate of change following the motion of the fluid, also called the &quot;material derivative&quot; or &quot;convective derivative&quot;. The Lagrangian tendency of air pressure, often called &quot;omega&quot;, plays the role of the upward component of air velocity when air pressure is being used as the vertical coordinate. If the vertical air velocity is upwards, it is negative when expressed as a tendency of air pressure; downwards is positive." label="LagrangianTendencyOfAirPressure" title="Lagrangian Tendency of Air Pressure" uid="lagrangian_tendency_of_air_pressure" units="Pa s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. The Lagrangian tendency of a quantity is its rate of change following the motion of the fluid, also called the &quot;material derivative&quot; or &quot;convective derivative&quot;. The Lagrangian tendency of sigma plays the role of the upward component of air velocity when the atmosphere sigma coordinate (a dimensionless atmosphere vertical coordinate) is being used as the vertical coordinate. If the vertical air velocity is upwards, it is negative when expressed as a tendency of sigma; downwards is positive. See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="LagrangianTendencyOfAtmosphereSigmaCoordinate" title="Lagrangian Tendency of Atmosphere Sigma Coordinate" uid="lagrangian_tendency_of_atmosphere_sigma_coordinate" units="s-1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell." label="LandAreaFraction" title="Land Area Fraction" uid="land_area_fraction" units="1"/>
<item description="X_binary_mask has 1 where condition X is met, 0 elsewhere. 1 = land, 0 = sea." label="LandBinaryMask" title="Land Binary Mask" uid="land_binary_mask" units="1"/>
<item description="A variable with the standard name of land_cover_sccs contains strings which indicate the nature of the surface, e.g. cropland_..., tree_... . These strings are standardised. Values must be combinations of classifiers from the Land Cover Classification System (LCCS; Di Gregorio A., 2005, UN Land Cover Classification System (LCCS) - Classification concepts and user manual for Software version 2; available at www.fao.org/DOCREP/003/X0596E/X0596e00.htm)." label="LandCoverLccs" title="Land Cover Lccs" uid="land_cover_lccs" units=""/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X.  &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="LandIceAreaFraction" title="Land Ice Area Fraction" uid="land_ice_area_fraction" units="1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves.  The land ice basal melt rate is the rate at which ice is lost per unit area at the base of the ice." label="LandIceBasalMeltRate" title="Land Ice Basal Melt Rate" uid="land_ice_basal_melt_rate" units="m s-1"/>
<item description="'Land ice' means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. &quot;Specific mass balance&quot; means the net rate at which ice is added per unit area. A negative value means loss of ice. For an area-average, the cell_methods attribute should be used to specify whether the average is over the area of the whole grid cell or the area of land ice only. &quot;Basal specific mass balance&quot; means the net rate at which ice is added per unit area at the land ice base." label="LandIceBasalSpecificMassBalanceFlux" title="Land Ice Basal Specific Mass Balance Flux" uid="land_ice_basal_specific_mass_balance_flux" units="kg m-2 s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward)." label="LandIceBasalUpwardVelocity" title="Land Ice Basal Upward Velocity" uid="land_ice_basal_upward_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="LandIceBasalXVelocity" title="Land Ice Basal X Velocity" uid="land_ice_basal_x_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="LandIceBasalYVelocity" title="Land Ice Basal Y Velocity" uid="land_ice_basal_y_velocity" units="m s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. The land ice calving rate is the rate at which ice is lost per unit area through calving into the ocean." label="LandIceCalvingRate" title="Land Ice Calving Rate" uid="land_ice_calving_rate" units="m s-1"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. The land ice basal melt rate is the rate at which ice is lost per unit area at the base of the ice." label="LandIceLweBasalMeltRate" title="Land Ice Lwe Basal Melt Rate" uid="land_ice_lwe_basal_melt_rate" units="m s-1"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. The land ice calving rate is the rate at which ice is lost per unit area through calving into the ocean." label="LandIceLweCalvingRate" title="Land Ice Lwe Calving Rate" uid="land_ice_lwe_calving_rate" units="m s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. &quot;lwe&quot; means liquid water equivalent. Specific mass balance means the net rate at which ice is added per unit area at the land ice surface due to all processes of surface accumulation and ablation. A negative value means loss of ice." label="LandIceLweSurfaceSpecificMassBalanceRate" title="Land Ice Lwe Surface Specific Mass Balance Rate" uid="land_ice_lwe_surface_specific_mass_balance_rate" units="m s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage. Runoff flux over land ice is the difference between any available liquid water in the snowpack due to rainfall and melting minus any refreezing and liquid water retained in the snowpack. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="LandIceRunoffFlux" title="Land Ice Runoff Flux" uid="land_ice_runoff_flux" units="kg m-2 s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="LandIceSigmaCoordinate" title="Land Ice Sigma Coordinate" uid="land_ice_sigma_coordinate" units="1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. &quot;Specific mass flux due to calving&quot; means the change in land ice mass per unit area resulting from iceberg calving. A negative value means loss of ice. For an area-average, the cell_methods attribute should be used to specify whether the average is over the area of the whole grid cell or the area of land ice only. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="LandIceSpecificMassFluxDueToCalving" title="Land Ice Specific Mass Flux Due To Calving" uid="land_ice_specific_mass_flux_due_to_calving" units="kg m-2 s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. &quot;Specific mass flux due to calving and ice front melting&quot; means the change in land ice mass per unit area resulting from iceberg calving and melting on the vertical ice front. A negative value means loss of ice. For an area-average, the cell_methods attribute should be used to specify whether the average is over the area of the whole grid cell or the area of land ice only. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="LandIceSpecificMassFluxDueToCalvingAndIceFrontMelting" title="Land Ice Specific Mass Flux Due To Calving And Ice Front Melting" uid="land_ice_specific_mass_flux_due_to_calving_and_ice_front_melting" units="kg m-2 s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The land_ice_surface_melt_flux is the loss of ice mass resulting from surface melting. For an area-average, the cell_methods attribute should be used to specify whether the average is over the area of the whole grid cell or the area of land ice only. There is also a standard name for the quantity surface_snow_and_ice_melt_flux." label="LandIceSurfaceMeltFlux" title="Land Ice Surface Melt Flux" uid="land_ice_surface_melt_flux" units="kg m-2 s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. &quot;Specific mass balance&quot; means the net rate at which ice is added per unit area. A negative value means loss of ice. For an area-average, the cell_methods attribute should be used to specify whether the average is over the area of the whole grid cell or the area of land ice only. &quot;Surface specific mass balance&quot; means the net rate at which ice is added per unit area at the land ice surface due to all processes of surface accumulation and ablation." label="LandIceSurfaceSpecificMassBalanceFlux" title="Land Ice Surface Specific Mass Balance Flux" uid="land_ice_surface_specific_mass_balance_flux" units="kg m-2 s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. Specific mass balance means the net rate at which ice is added at the land ice surface due to all processes of surface accumulation and ablation. A negative value means loss of ice." label="LandIceSurfaceSpecificMassBalanceRate" title="Land Ice Surface Specific Mass Balance Rate" uid="land_ice_surface_specific_mass_balance_rate" units="m s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="LandIceSurfaceUpwardVelocity" title="Land Ice Surface Upward Velocity" uid="land_ice_surface_upward_velocity" units="m s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="LandIceSurfaceXVelocity" title="Land Ice Surface X Velocity" uid="land_ice_surface_x_velocity" units="m s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="LandIceSurfaceYVelocity" title="Land Ice Surface Y Velocity" uid="land_ice_surface_y_velocity" units="m s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="LandIceTemperature" title="Land Ice Temperature" uid="land_ice_temperature" units="K"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. &quot;Thickness&quot; means the vertical extent of a layer." label="LandIceThickness" title="Land Ice Thickness" uid="land_ice_thickness" units="m"/>
<item description="A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. The vertical mean land ice velocity is the average from the bedrock to the surface of the ice." label="LandIceVerticalMeanXVelocity" title="Land Ice Vertical Mean X Velocity" uid="land_ice_vertical_mean_x_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. The vertical mean land ice velocity is the average from the bedrock to the surface of the ice." label="LandIceVerticalMeanYVelocity" title="Land Ice Vertical Mean Y Velocity" uid="land_ice_vertical_mean_y_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="LandIceXVelocity" title="Land Ice X Velocity" uid="land_ice_x_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="LandIceYVelocity" title="Land Ice Y Velocity" uid="land_ice_y_velocity" units="m s-1"/>
<item description="Latitude is positive northward; its units of degree_north (or equivalent) indicate this explicitly. In a latitude-longitude system defined with respect to a rotated North Pole, the standard name of grid_latitude should be used instead of latitude. Grid latitude is positive in the grid-northward direction, but its units should be plain degree." label="Latitude" title="Latitude" uid="latitude" units="degree_north"/>
<item description="&quot;X_area&quot; means the horizontal area occupied by X within the grid cell." label="LeafAreaIndex" title="Leaf Area Index" uid="leaf_area_index" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area." label="LeafCarbonContent" title="Leaf Carbon Content" uid="leaf_carbon_content" units="kg m-2"/>
<item description="The standard name &quot;lightning radiant energy&quot; means the energy emitted as electromagnetic radiation due to lightning. A coordinate variable of radiation_wavelength, radiation_frequency, or sensor_band_central_wavelength may be specified to indicate that the lightning_radiant_energy applies at specific wavelengths or frequencies. Bounds of the time and spatial coordinates may be specified to indicate the time interval and spatial extent over which the energy is emitted." label="LightningRadiantEnergy" title="Lightning Radiant Energy" uid="lightning_radiant_energy" units="J"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. The cloud area fraction is for the whole atmosphere column, as seen from the surface or the top of the atmosphere. The cloud area fraction in a layer of the atmosphere has the standard name cloud_area_fraction_in_atmosphere_layer. The chemical formula for water is H2O." label="LiquidWaterCloudAreaFraction" title="Liquid Water Cloud Area Fraction" uid="liquid_water_cloud_area_fraction" units="1"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be &quot;model_level_number&quot;, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. The chemical formula for water is H2O." label="LiquidWaterCloudAreaFractionInAtmosphereLayer" title="Liquid Water Cloud Area Fraction in Atmosphere Layer" uid="liquid_water_cloud_area_fraction_in_atmosphere_layer" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  Permafrost is soil or rock that has remained at a temperature at or below zero degrees Celsius throughout the seasonal cycle for two or more years." label="LiquidWaterContentOfPermafrostLayer" title="Liquid Water Content of Permafrost Layer" uid="liquid_water_content_of_permafrost_layer" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Quantities defined for a soil layer must have a vertical coordinate variable with boundaries indicating the extent of the layer(s)." label="LiquidWaterContentOfSoilLayer" title="Liquid Water Content of Soil Layer" uid="liquid_water_content_of_soil_layer" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="LiquidWaterContentOfSurfaceSnow" title="Liquid Water Content of Surface Snow" uid="liquid_water_content_of_surface_snow" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Litter carbon&quot; is dead inorganic material in or above the soil quantified as the mass of carbon which it contains." label="LitterCarbonContent" title="Litter Carbon Content" uid="litter_carbon_content" units="kg m-2"/>
<item description="&quot;Litter carbon&quot; is dead inorganic material in or above the soil quantified as the mass of carbon which it contains. The litter carbon flux is the rate of production of litter. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="LitterCarbonFlux" title="Litter Carbon Flux" uid="litter_carbon_flux" units="kg m-2 s-1"/>
<item description="The cloud condensation nuclei number size distribution is the number concentration of aerosol particles, normalised to the decadal logarithmic size interval the concentration applies to, as a function of particle diameter, where the particle acts as condensation nucleus for liquid-phase clouds. A coordinate variable with the standard name of relative_humidity should be specified to indicate that the property refers to a specific supersaturation with respect to liquid water. A coordinate variable with the standard name of electrical_mobility_particle_diameter should be specified to indicate that the property applies at specific mobility particle sizes. To specify the relative humidity at which the particle sizes were selected, provide a scalar coordinate variable with the standard name of relative_humidity_for_aerosol_particle_size_selection. The ability of a particle to act as a condensation nucleus is determined by its size, chemical composition, and morphology. &quot;log10_X&quot; means common logarithm (i.e. base 10) of X. &quot;stp&quot; means standard temperature (0 degC) and pressure (101325 Pa)." label="Log10SizeIntervalBasedNumberSizeDistributionOfCloudCondensationNucleiAtStpInAir" title="Log10 Size Interval Based Number Size Distribution of Cloud Condensation Nuclei At Stp in Air" uid="log10_size_interval_based_number_size_distribution_of_cloud_condensation_nuclei_at_stp_in_air" units="m-3"/>
<item description="Longitude is positive eastward; its units of degree_east (or equivalent) indicate this explicitly. In a latitude-longitude system defined with respect to a rotated North Pole, the standard name of grid_longitude should be used instead of longitude. Grid longitude is positive in the grid-eastward direction, but its units should be plain degree." label="Longitude" title="Longitude" uid="longitude" units="degree_east"/>
<item description="Low type clouds are: Stratus, Stratocumulus, Cumulus, Cumulonimbus. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. X_type_cloud_area_fraction is generally determined on the basis of cloud type, though Numerical Weather Prediction (NWP) models often calculate them based on the vertical location of the cloud." label="LowTypeCloudAreaFraction" title="Low Type Cloud Area Fraction" uid="low_type_cloud_area_fraction" units="1"/>
<item description="&quot;lwe&quot; means liquid water equivalent." label="LweConvectivePrecipitationRate" title="Lwe Convective Precipitation Rate" uid="lwe_convective_precipitation_rate" units="m s-1"/>
<item description="&quot;lwe&quot; means liquid water equivalent." label="LweConvectiveSnowfallRate" title="Lwe Convective Snowfall Rate" uid="lwe_convective_snowfall_rate" units="m s-1"/>
<item description="&quot;lwe&quot; means liquid water equivalent." label="LwePrecipitationRate" title="Lwe Precipitation Rate" uid="lwe_precipitation_rate" units="m s-1"/>
<item description="&quot;lwe&quot; means liquid water equivalent." label="LweSnowfallRate" title="Lwe Snowfall Rate" uid="lwe_snowfall_rate" units="m s-1"/>
<item description="Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud.  &quot;lwe&quot; means liquid water equivalent." label="LweStratiformPrecipitationRate" title="Lwe Stratiform Precipitation Rate" uid="lwe_stratiform_precipitation_rate" units="m s-1"/>
<item description="Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud.  &quot;lwe&quot; means liquid water equivalent." label="LweStratiformSnowfallRate" title="Lwe Stratiform Snowfall Rate" uid="lwe_stratiform_snowfall_rate" units="m s-1"/>
<item description="&quot;lwe&quot; means liquid water equivalent. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Atmosphere water vapor content is sometimes referred to as &quot;precipitable water&quot;, although this term does not imply the water could all be precipitated." label="LweThicknessOfAtmosphereMassContentOfWaterVapor" title="Lwe Thickness of Atmosphere Mass Content of Water Vapor" uid="lwe_thickness_of_atmosphere_mass_content_of_water_vapor" units="m"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;Amount&quot; means mass per unit area. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. &quot;Canopy&quot; means the plant or vegetation canopy. The canopy water is the water on the canopy." label="LweThicknessOfCanopyWaterAmount" title="Lwe Thickness of Canopy Water Amount" uid="lwe_thickness_of_canopy_water_amount" units="m"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;Amount&quot; means mass per unit area. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area." label="LweThicknessOfConvectivePrecipitationAmount" title="Lwe Thickness of Convective Precipitation Amount" uid="lwe_thickness_of_convective_precipitation_amount" units="m"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;Amount&quot; means mass per unit area. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area." label="LweThicknessOfConvectiveSnowfallAmount" title="Lwe Thickness of Convective Snowfall Amount" uid="lwe_thickness_of_convective_snowfall_amount" units="m"/>
<item description="&quot;frozen_water&quot; means ice. &quot;lwe&quot; means liquid water equivalent. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Quantities defined for a soil layer must have a vertical coordinate variable with boundaries indicating the extent of the layer(s)." label="LweThicknessOfFrozenWaterContentOfSoilLayer" title="Lwe Thickness of Frozen Water Content of Soil Layer" uid="lwe_thickness_of_frozen_water_content_of_soil_layer" units="m"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;moisture&quot; means water in all phases contained in soil. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Quantities defined for a soil layer must have a vertical coordinate variable with boundaries indicating the extent of the layer(s)." label="LweThicknessOfMoistureContentOfSoilLayer" title="Lwe Thickness of Moisture Content of Soil Layer" uid="lwe_thickness_of_moisture_content_of_soil_layer" units="m"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;Amount&quot; means mass per unit area. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area." label="LweThicknessOfPrecipitationAmount" title="Lwe Thickness of Precipitation Amount" uid="lwe_thickness_of_precipitation_amount" units="m"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;Amount&quot; means mass per unit area. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area." label="LweThicknessOfSnowfallAmount" title="Lwe Thickness of Snowfall Amount" uid="lwe_thickness_of_snowfall_amount" units="m"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;moisture&quot; means water in all phases contained in soil. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area. &quot;Content&quot; indicates a quantity per unit area. The &quot;soil content&quot; of a quantity refers to the vertical integral from the surface down to the bottom of the soil model. For the content between specified levels in the soil, standard names including content_of_soil_layer are used." label="LweThicknessOfSoilMoistureContent" title="Lwe Thickness of Soil Moisture Content" uid="lwe_thickness_of_soil_moisture_content" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area.  &quot;lwe&quot; means liquid water equivalent. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="LweThicknessOfStratiformPrecipitationAmount" title="Lwe Thickness of Stratiform Precipitation Amount" uid="lwe_thickness_of_stratiform_precipitation_amount" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area.  &quot;lwe&quot; means liquid water equivalent.  The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="LweThicknessOfStratiformSnowfallAmount" title="Lwe Thickness of Stratiform Snowfall Amount" uid="lwe_thickness_of_stratiform_snowfall_amount" units="m"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;lwe&quot; means liquid water equivalent. &quot;Amount&quot; means mass per unit area. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area. Surface amount refers to the amount on the ground, excluding that on the plant or vegetation canopy." label="LweThicknessOfSurfaceSnowAmount" title="Lwe Thickness of Surface Snow Amount" uid="lwe_thickness_of_surface_snow_amount" units="m"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;Amount&quot; means mass per unit area. The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area. &quot;Water&quot; means water in all phases. Evaporation is the conversion of liquid or solid into vapor. (The conversion of solid alone into vapor is called &quot;sublimation&quot;.)" label="LweThicknessOfWaterEvaporationAmount" title="Lwe Thickness of Water Evaporation Amount" uid="lwe_thickness_of_water_evaporation_amount" units="m"/>
<item description="&quot;lwe&quot; means liquid water equivalent. &quot;Water&quot; means water in all phases. Evaporation is the conversion of liquid or solid into vapor. (The conversion of solid alone into vapor is called &quot;sublimation&quot;.)" label="LweWaterEvaporationRate" title="Lwe Water Evaporation Rate" uid="lwe_water_evaporation_rate" units="m s-1"/>
<item description="The quantity with standard name magnitude_of_derivative_of_position_wrt_model_level_number (known in differential geometry as a &quot;scale factor&quot;) is | (dr/dk)ij|, where r(i,j,k) is the vector 3D position of the point with coordinate indices (i,j,k). It is a measure of the gridblock spacing in the z-direction." label="MagnitudeOfDerivativeOfPositionWrtModelLevelNumber" title="Magnitude of Derivative of Position Wrt Model Level Number" uid="magnitude_of_derivative_of_position_wrt_model_level_number" units="m"/>
<item description="The quantity with standard name magnitude_of_derivative_of_position_wrt_x_coordinate_index (known in differential geometry as a &quot;scale factor&quot;) is | (dr/di)jk|, where r(i,j,k) is the vector 3D position of the point with coordinate indices (i,j,k). It is a measure of the gridblock spacing in the x-direction." label="MagnitudeOfDerivativeOfPositionWrtXCoordinateIndex" title="Magnitude of Derivative of Position Wrt X Coordinate Index" uid="magnitude_of_derivative_of_position_wrt_x_coordinate_index" units="m"/>
<item description="The quantity with standard name magnitude_of_derivative_of_position_wrt_y_coordinate_index (known in differential geometry as a &quot;scale factor&quot;) is | (dr/dj)ik|, where r(i,j,k) is the vector 3D position of the point with coordinate indices (i,j,k). It is a measure of the gridblock spacing in the y-direction." label="MagnitudeOfDerivativeOfPositionWrtYCoordinateIndex" title="Magnitude of Derivative of Position Wrt Y Coordinate Index" uid="magnitude_of_derivative_of_position_wrt_y_coordinate_index" units="m"/>
<item description="&quot;magnitude_of_X&quot; means magnitude of a vector X. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="MagnitudeOfHeatFluxInSeaWaterDueToAdvection" title="Magnitude of Heat Flux in Sea Water Due To Advection" uid="magnitude_of_heat_flux_in_sea_water_due_to_advection" units="W m-2"/>
<item description="&quot;magnitude_of_X&quot; means magnitude of a vector X.   'Displacement' means the change in geospatial position of an object that has moved over time. If possible, the time interval over which the motion took place should be specified using a bounds variable for the time coordinate variable.  A displacement can be represented as a vector. Such a vector should however not be interpreted as describing a rectilinear, constant speed motion but merely as an indication that the start point of the vector is found at the tip of the vector after the time interval associated with the displacement variable.  A displacement does not prescribe a trajectory. Sea ice displacement can be defined as a two-dimensional vector, with no vertical component." label="MagnitudeOfSeaIceDisplacement" title="Magnitude of Sea Ice Displacement" uid="magnitude_of_sea_ice_displacement" units="m"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;magnitude_of_X&quot; means magnitude of a vector X. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward)." label="MagnitudeOfSurfaceDownwardStress" title="Magnitude of Surface Downward Stress" uid="magnitude_of_surface_downward_stress" units="Pa"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for acetic_acid is CH3COOH. The IUPAC name for acetic acid is ethanoic acid." label="MassConcentrationOfAceticAcidInAir" title="Mass Concentration of Acetic Acid in Air" uid="mass_concentration_of_acetic_acid_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for aceto-nitrile is CH3CN. The IUPAC name for aceto-nitrile is ethanenitrile." label="MassConcentrationOfAcetoNitrileInAir" title="Mass Concentration of Aceto Nitrile in Air" uid="mass_concentration_of_aceto_nitrile_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Alkanes are saturated hydrocarbons, i.e. they do not contain any chemical double bonds.  Alkanes contain only hydrogen and carbon combined in the general proportions C(n)H(2n+2); &quot;alkanes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkane species, e.g., methane and ethane." label="MassConcentrationOfAlkanesInAir" title="Mass Concentration of Alkanes in Air" uid="mass_concentration_of_alkanes_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Alkenes are unsaturated hydrocarbons as they contain chemical double bonds between adjacent carbon atoms.  Alkenes contain only hydrogen and carbon combined in the general proportions C(n)H(2n); &quot;alkenes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkene species, e.g., ethene and propene." label="MassConcentrationOfAlkenesInAir" title="Mass Concentration of Alkenes in Air" uid="mass_concentration_of_alkenes_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for alpha_hexachlorocyclohexane is C6H6Cl6." label="MassConcentrationOfAlphaHexachlorocyclohexaneInAir" title="Mass Concentration of Alpha Hexachlorocyclohexane in Air" uid="mass_concentration_of_alpha_hexachlorocyclohexane_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for alpha_pinene is C10H16. The IUPAC name for alpha-pinene is (1S,5S)-2,6,6-trimethylbicyclo[3.1.1]hept-2-ene." label="MassConcentrationOfAlphaPineneInAir" title="Mass Concentration of Alpha Pinene in Air" uid="mass_concentration_of_alpha_pinene_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ammonia is NH3." label="MassConcentrationOfAmmoniaInAir" title="Mass Concentration of Ammonia in Air" uid="mass_concentration_of_ammonia_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for ammonium is NH4." label="MassConcentrationOfAmmoniumDryAerosolParticlesInAir" title="Mass Concentration of Ammonium Dry Aerosol Particles in Air" uid="mass_concentration_of_ammonium_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity." label="MassConcentrationOfAnthropogenicNmvocExpressedAsCarbonInAir" title="Mass Concentration of Anthropogenic Nmvoc Expressed As Carbon in Air" uid="mass_concentration_of_anthropogenic_nmvoc_expressed_as_carbon_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Aromatic compounds in organic chemistry are compounds that contain at least one benzene ring of six carbon atoms joined by alternating single and double covalent bonds.  The simplest aromatic compound is benzene itself.  In standard names &quot;aromatic_compounds&quot; is the term used to describe the group of aromatic chemical species that  are represented within a given model.  The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.  Standard names exist for some individual aromatic species, e.g. benzene and xylene." label="MassConcentrationOfAromaticCompoundsInAir" title="Mass Concentration of Aromatic Compounds in Air" uid="mass_concentration_of_aromatic_compounds_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for atomic bromine is Br." label="MassConcentrationOfAtomicBromineInAir" title="Mass Concentration of Atomic Bromine in Air" uid="mass_concentration_of_atomic_bromine_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for atomic chlorine is Cl." label="MassConcentrationOfAtomicChlorineInAir" title="Mass Concentration of Atomic Chlorine in Air" uid="mass_concentration_of_atomic_chlorine_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for atomic nitrogen is N." label="MassConcentrationOfAtomicNitrogenInAir" title="Mass Concentration of Atomic Nitrogen in Air" uid="mass_concentration_of_atomic_nitrogen_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for benzene is C6H6.  Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="MassConcentrationOfBenzeneInAir" title="Mass Concentration of Benzene in Air" uid="mass_concentration_of_benzene_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for beta_pinene is C10H16.  The IUPAC name for beta-pinene is (1S,5S)-6,6-dimethyl-2-methylenebicyclo[3.1.1]heptane." label="MassConcentrationOfBetaPineneInAir" title="Mass Concentration of Beta Pinene in Air" uid="mass_concentration_of_beta_pinene_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Biogenic&quot; means influenced, caused, or created by natural processes." label="MassConcentrationOfBiogenicNmvocExpressedAsCarbonInAir" title="Mass Concentration of Biogenic Nmvoc Expressed As Carbon in Air" uid="mass_concentration_of_biogenic_nmvoc_expressed_as_carbon_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassConcentrationOfBiomassBurningDryAerosolInAir" title="Mass Concentration of Biomass Burning Dry Aerosol in Air" uid="mass_concentration_of_biomass_burning_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for bromine chloride is BrCl." label="MassConcentrationOfBromineChlorideInAir" title="Mass Concentration of Bromine Chloride in Air" uid="mass_concentration_of_bromine_chloride_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for bromine monoxide is BrO." label="MassConcentrationOfBromineMonoxideInAir" title="Mass Concentration of Bromine Monoxide in Air" uid="mass_concentration_of_bromine_monoxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for bromine nitrate is BrONO2." label="MassConcentrationOfBromineNitrateInAir" title="Mass Concentration of Bromine Nitrate in Air" uid="mass_concentration_of_bromine_nitrate_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Brox&quot;  describes a family of chemical species consisting of inorganic bromine compounds with the exception of  hydrogen bromide (HBr) and bromine nitrate (BrONO2). &quot;Brox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols.  Standard names that use the term &quot;inorganic_bromine&quot; are used for quantities that contain all inorganic bromine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MassConcentrationOfBroxExpressedAsBromineInAir" title="Mass Concentration of Brox Expressed As Bromine in Air" uid="mass_concentration_of_brox_expressed_as_bromine_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MassConcentrationOfButaneInAir" title="Mass Concentration of Butane in Air" uid="mass_concentration_of_butane_in_air" units="kg m-3"/>
<item description="'Mass concentration' means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Chlorophylls are the green pigments found in most plants, algae and cyanobacteria; their presence is essential for photosynthesis to take place. There are several different forms of chlorophyll that occur naturally. All contain a chlorin ring (chemical formula C20H16N4) which gives the green pigment and a side chain whose structure varies. The naturally occurring forms of chlorophyll contain between 35 and 55 carbon atoms. 'Calcareous phytoplankton' are phytoplankton that produce calcite. Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MassConcentrationOfCalcareousPhytoplanktonExpressedAsChlorophyllInSeaWater" title="Mass Concentration of Calcareous Phytoplankton Expressed As Chlorophyll in Sea Water" uid="mass_concentration_of_calcareous_phytoplankton_expressed_as_chlorophyll_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for carbon dioxide is CO2." label="MassConcentrationOfCarbonDioxideInAir" title="Mass Concentration of Carbon Dioxide in Air" uid="mass_concentration_of_carbon_dioxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of carbon monoxide is CO." label="MassConcentrationOfCarbonMonoxideInAir" title="Mass Concentration of Carbon Monoxide in Air" uid="mass_concentration_of_carbon_monoxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of carbon tetrachloride is CCl4." label="MassConcentrationOfCarbonTetrachlorideInAir" title="Mass Concentration of Carbon Tetrachloride in Air" uid="mass_concentration_of_carbon_tetrachloride_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC113 is CCl2FCClF2. The IUPAC name for CFC113 is 1,1,2-trichloro-1,2,2-trifluoro-ethane." label="MassConcentrationOfCfc113InAir" title="Mass Concentration of Cfc113 in Air" uid="mass_concentration_of_cfc113_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC113a CCl3CF3.  The IUPAC name for CFC113a is 1,1,1-trichloro-2,2,2-trifluoro-ethane." label="MassConcentrationOfCfc113aInAir" title="Mass Concentration of Cfc113a in Air" uid="mass_concentration_of_cfc113a_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC114 is CClF2CClF2. The IUPAC name for CFC114 is 1,2-dichloro-1,1,2,2-tetrafluoro-ethane." label="MassConcentrationOfCfc114InAir" title="Mass Concentration of Cfc114 in Air" uid="mass_concentration_of_cfc114_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC115 is CClF2CF3. The IUPAC name for CFC115 is 1-chloro-1,1,2,2,2-pentafluoro-ethane." label="MassConcentrationOfCfc115InAir" title="Mass Concentration of Cfc115 in Air" uid="mass_concentration_of_cfc115_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="MassConcentrationOfCfc11InAir" title="Mass Concentration of Cfc11 in Air" uid="mass_concentration_of_cfc11_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for CFC12 is CF2Cl2.  The IUPAC name for CFC12 is dichloro-difluoro-methane." label="MassConcentrationOfCfc12InAir" title="Mass Concentration of Cfc12 in Air" uid="mass_concentration_of_cfc12_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for chlorine dioxide is OClO." label="MassConcentrationOfChlorineDioxideInAir" title="Mass Concentration of Chlorine Dioxide in Air" uid="mass_concentration_of_chlorine_dioxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for chlorine monoxide is ClO." label="MassConcentrationOfChlorineMonoxideInAir" title="Mass Concentration of Chlorine Monoxide in Air" uid="mass_concentration_of_chlorine_monoxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for chlorine nitrate is ClONO2." label="MassConcentrationOfChlorineNitrateInAir" title="Mass Concentration of Chlorine Nitrate in Air" uid="mass_concentration_of_chlorine_nitrate_in_air" units="kg m-3"/>
<item description="'Mass concentration' means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Chlorophylls are the green pigments found in most plants, algae and cyanobacteria; their presence is essential for photosynthesis to take place. There are several different forms of chlorophyll that occur naturally. All contain a chlorin ring (chemical formula C20H16N4) which gives the green pigment and a side chain whose structure varies. The naturally occurring forms of chlorophyll contain between 35 and 55 carbon atoms. Chlorophyll-a is the most commonly occurring form of natural chlorophyll. The chemical formula of chlorophyll-a is C55H72O5N4Mg." label="MassConcentrationOfChlorophyllAInSeaWater" title="Mass Concentration of Chlorophyll A in Sea Water" uid="mass_concentration_of_chlorophyll_a_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Chlorophylls are the green pigments found in most plants, algae and cyanobacteria; their presence is essential for photosynthesis to take place. There are several different forms of chlorophyll that occur naturally. All contain a chlorin ring (chemical formula C20H16N4) which gives the green pigment and a side chain whose structure varies. The naturally occurring forms of chlorophyll contain between 35 and 55 carbon atoms. " label="MassConcentrationOfChlorophyllInSeaWater" title="Mass Concentration of Chlorophyll in Sea Water" uid="mass_concentration_of_chlorophyll_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction &quot;mass_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. Cloud droplets are spherical and typically a few micrometers to a few tens of micrometers in diameter. An upper limit of 0.2 mm diameter is sometimes used to distinguish between cloud droplets and drizzle drops, but in active cumulus clouds strong updrafts can maintain much larger cloud droplets." label="MassConcentrationOfCloudLiquidWaterInAir" title="Mass Concentration of Cloud Liquid Water in Air" uid="mass_concentration_of_cloud_liquid_water_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Clox&quot; describes a family of chemical species consisting of inorganic chlorine compounds with the exception of  hydrogen chloride (HCl) and chlorine nitrate (ClONO2). &quot;Clox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols.   Standard names that use the term &quot;inorganic_chlorine&quot; are used for quantities that contain all inorganic chlorine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MassConcentrationOfCloxExpressedAsChlorineInAir" title="Mass Concentration of Clox Expressed As Chlorine in Air" uid="mass_concentration_of_clox_expressed_as_chlorine_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. Coarse mode aerosol particles have a diameter of more than 1 micrometer." label="MassConcentrationOfCoarseModeAmbientAerosolParticlesInAir" title="Mass Concentration of Coarse Mode Ambient Aerosol Particles in Air" uid="mass_concentration_of_coarse_mode_ambient_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  Condensed water means liquid and ice." label="MassConcentrationOfCondensedWaterInSoil" title="Mass Concentration of Condensed Water in Soil" uid="mass_concentration_of_condensed_water_in_soil" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Diatoms are single-celled phytoplankton with an external skeleton made of silica. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MassConcentrationOfDiatomsExpressedAsCarbonInSeaWater" title="Mass Concentration of Diatoms Expressed As Carbon in Sea Water" uid="mass_concentration_of_diatoms_expressed_as_carbon_in_sea_water" units="kg m-3"/>
<item description="'Mass concentration' means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B containedin A, neglecting all other chemical constituents of A. Chlorophylls are the green pigments found in most plants, algae and cyanobacteria; their presence is essential for photosynthesis to take place. There are several different forms of chlorophyll that occur naturally. All contain a chlorin ring (chemical formula C20H16N4) which gives the green pigment and a side chain whose structure varies. The naturally occurring forms of chlorophyll contain between 35 and 55 carbon atoms. Diatoms are single-celled phytoplankton with an external skeleton made of silica. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MassConcentrationOfDiatomsExpressedAsChlorophyllInSeaWater" title="Mass Concentration of Diatoms Expressed As Chlorophyll in Sea Water" uid="mass_concentration_of_diatoms_expressed_as_chlorophyll_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Diatoms are single-celled phytoplankton with an external skeleton made of silica. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MassConcentrationOfDiatomsExpressedAsNitrogenInSeaWater" title="Mass Concentration of Diatoms Expressed As Nitrogen in Sea Water" uid="mass_concentration_of_diatoms_expressed_as_nitrogen_in_sea_water" units="kg m-3"/>
<item description="'Mass concentration' means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Chlorophylls are the green pigments found in most plants, algae and cyanobacteria; their presence is essential for photosynthesis to take place. There are several different forms of chlorophyll that occur naturally. All contain a chlorin ring (chemical formula C20H16N4) which gives the green pigment and a side chain whose structure varies. The naturally occurring forms of chlorophyll contain between 35 and 55 carbon atoms.  In ocean modelling, diazotrophs are phytoplankton of the phylum cyanobacteria distinct from other phytoplankton groups in their ability to fix nitrogen gas in addition to nitrate and ammonium. Phytoplankton are autotrophic prokaryotic or eukaryotic organisms that live near the water surface where there is sufficient light to support photosynthesis." label="MassConcentrationOfDiazotrophsExpressedAsChlorophyllInSeaWater" title="Mass Concentration of Diazotrophs Expressed As Chlorophyll in Sea Water" uid="mass_concentration_of_diazotrophs_expressed_as_chlorophyll_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for dichlorine peroxide is Cl2O2." label="MassConcentrationOfDichlorinePeroxideInAir" title="Mass Concentration of Dichlorine Peroxide in Air" uid="mass_concentration_of_dichlorine_peroxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for dimethyl sulfide is (CH3)2S.  Dimethyl sulfide is sometimes referred to as DMS." label="MassConcentrationOfDimethylSulfideInAir" title="Mass Concentration of Dimethyl Sulfide in Air" uid="mass_concentration_of_dimethyl_sulfide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for dinitrogen pentoxide is N2O5." label="MassConcentrationOfDinitrogenPentoxideInAir" title="Mass Concentration of Dinitrogen Pentoxide in Air" uid="mass_concentration_of_dinitrogen_pentoxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction &quot;mass_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Drizzle&quot; means drops of water falling through the atmosphere that have a diameter typically in the range 0.2-0.5 mm." label="MassConcentrationOfDrizzleInAir" title="Mass Concentration of Drizzle in Air" uid="mass_concentration_of_drizzle_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassConcentrationOfDustDryAerosolParticlesInAir" title="Mass Concentration of Dust Dry Aerosol Particles in Air" uid="mass_concentration_of_dust_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="MassConcentrationOfElementalCarbonDryAerosolParticlesInAir" title="Mass Concentration of Elemental Carbon Dry Aerosol Particles in Air" uid="mass_concentration_of_elemental_carbon_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MassConcentrationOfEthaneInAir" title="Mass Concentration of Ethane in Air" uid="mass_concentration_of_ethane_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethanol is C2H5OH." label="MassConcentrationOfEthanolInAir" title="Mass Concentration of Ethanol in Air" uid="mass_concentration_of_ethanol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="MassConcentrationOfEtheneInAir" title="Mass Concentration of Ethene in Air" uid="mass_concentration_of_ethene_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethyne is HC2H.  Ethyne is the IUPAC name for this species, which is also commonly known as acetylene." label="MassConcentrationOfEthyneInAir" title="Mass Concentration of Ethyne in Air" uid="mass_concentration_of_ethyne_in_air" units="kg m-3"/>
<item description="'Mass concentration' means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. 'Flagellates' are a class of single celled organisms that use a flagellum (whip-like structure) for feeding and locomotion. Some flagellates can photosynthesize and others feed on bacteria, with a few flagellatescapable of both." label="MassConcentrationOfFlagellatesExpressedAsCarbonInSeaWater" title="Mass Concentration of Flagellates Expressed As Carbon in Sea Water" uid="mass_concentration_of_flagellates_expressed_as_carbon_in_sea_water" units="kg m-3"/>
<item description="'Mass concentration' means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. 'Flagellates' are a class of single celled organisms that use a flagellum (whip-like structure) for feeding and locomotion. Some flagellates can photosynthesize and others feed on bacteria, with a few flagellatescapable of both." label="MassConcentrationOfFlagellatesExpressedAsNitrogenInSeaWater" title="Mass Concentration of Flagellates Expressed As Nitrogen in Sea Water" uid="mass_concentration_of_flagellates_expressed_as_nitrogen_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="MassConcentrationOfFormaldehydeInAir" title="Mass Concentration of Formaldehyde in Air" uid="mass_concentration_of_formaldehyde_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for formic acid is HCOOH.  The IUPAC name for formic acid is methanoic acid." label="MassConcentrationOfFormicAcidInAir" title="Mass Concentration of Formic Acid in Air" uid="mass_concentration_of_formic_acid_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s) in a salt or to other atom(s) in a molecule." label="MassConcentrationOfGaseousDivalentMercuryInAir" title="Mass Concentration of Gaseous Divalent Mercury in Air" uid="mass_concentration_of_gaseous_divalent_mercury_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for mercury is Hg." label="MassConcentrationOfGaseousElementalMercuryInAir" title="Mass Concentration of Gaseous Elemental Mercury in Air" uid="mass_concentration_of_gaseous_elemental_mercury_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halon1202 is CBr2F2. The IUPAC name for halon1202 is dibromo-difluoro-methane." label="MassConcentrationOfHalon1202InAir" title="Mass Concentration of Halon1202 in Air" uid="mass_concentration_of_halon1202_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halon1211 is CBrClF2. The IUPAC name for halon1211 is bromo-chloro-difluoro-methane." label="MassConcentrationOfHalon1211InAir" title="Mass Concentration of Halon1211 in Air" uid="mass_concentration_of_halon1211_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halon1301 is CBrF3. The IUPAC name for halon1301 is bromo-trifluoro-methane." label="MassConcentrationOfHalon1301InAir" title="Mass Concentration of Halon1301 in Air" uid="mass_concentration_of_halon1301_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halo2402 is C2Br2F4. The IUPAC name for halon2402 is 1,2-dibromo-1,1,2,2-tetrafluoro-ethane." label="MassConcentrationOfHalon2402InAir" title="Mass Concentration of Halon2402 in Air" uid="mass_concentration_of_halon2402_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hcc140a is CH3CCl3. The IUPAC name for hcc140a is 1,1,1-trichloro-ethane." label="MassConcentrationOfHcc140aInAir" title="Mass Concentration of Hcc140a in Air" uid="mass_concentration_of_hcc140a_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for HCFC141b is CH3CCl2F. The IUPAC name for HCFC141b is 1,1-dichloro-1-fluoroethane." label="MassConcentrationOfHcfc141bInAir" title="Mass Concentration of Hcfc141b in Air" uid="mass_concentration_of_hcfc141b_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for HCFC142b is CH3CClF2. The IUPAC name for HCFC142b is 1-chloro-1,1-difluoroethane." label="MassConcentrationOfHcfc142bInAir" title="Mass Concentration of Hcfc142b in Air" uid="mass_concentration_of_hcfc142b_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for HCFC22 is CHClF2.  The IUPAC name for HCFC22 is chloro-difluoro-methane." label="MassConcentrationOfHcfc22InAir" title="Mass Concentration of Hcfc22 in Air" uid="mass_concentration_of_hcfc22_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hexachlorobiphenyl is C12H4Cl6.  This structure of this species consists of two linked benzene rings, each of which is additionally bonded to three chlorine atoms." label="MassConcentrationOfHexachlorobiphenylInAir" title="Mass Concentration of Hexachlorobiphenyl in Air" uid="mass_concentration_of_hexachlorobiphenyl_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;HOx&quot; means a combination of two radical species containing hydrogen and oxygen: OH and HO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MassConcentrationOfHoxExpressedAsHydrogenInAir" title="Mass Concentration of Hox Expressed As Hydrogen in Air" uid="mass_concentration_of_hox_expressed_as_hydrogen_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen bromide is HBr." label="MassConcentrationOfHydrogenBromideInAir" title="Mass Concentration of Hydrogen Bromide in Air" uid="mass_concentration_of_hydrogen_bromide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen chloride is HCl." label="MassConcentrationOfHydrogenChlorideInAir" title="Mass Concentration of Hydrogen Chloride in Air" uid="mass_concentration_of_hydrogen_chloride_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen cyanide is HCN." label="MassConcentrationOfHydrogenCyanideInAir" title="Mass Concentration of Hydrogen Cyanide in Air" uid="mass_concentration_of_hydrogen_cyanide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen peroxide is H2O2." label="MassConcentrationOfHydrogenPeroxideInAir" title="Mass Concentration of Hydrogen Peroxide in Air" uid="mass_concentration_of_hydrogen_peroxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for the hydroperoxyl radical is HO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassConcentrationOfHydroperoxylRadicalInAir" title="Mass Concentration of Hydroperoxyl Radical in Air" uid="mass_concentration_of_hydroperoxyl_radical_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for the hydroxyl radical is OH. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassConcentrationOfHydroxylRadicalInAir" title="Mass Concentration of Hydroxyl Radical in Air" uid="mass_concentration_of_hydroxyl_radical_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hypobromous acid is HOBr." label="MassConcentrationOfHypobromousAcidInAir" title="Mass Concentration of Hypobromous Acid in Air" uid="mass_concentration_of_hypobromous_acid_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hypochlorous acid is HOCl." label="MassConcentrationOfHypochlorousAcidInAir" title="Mass Concentration of Hypochlorous Acid in Air" uid="mass_concentration_of_hypochlorous_acid_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols. &quot;Inorganic bromine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;brox&quot; are used for quantities that contain all inorganic bromine species except HBr and BrONO2." label="MassConcentrationOfInorganicBromineInAir" title="Mass Concentration of Inorganic Bromine in Air" uid="mass_concentration_of_inorganic_bromine_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols. &quot;Inorganic chlorine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;clox&quot; are used for quantities that contain all inorganic chlorine species except HCl and ClONO2." label="MassConcentrationOfInorganicChlorineInAir" title="Mass Concentration of Inorganic Chlorine in Air" uid="mass_concentration_of_inorganic_chlorine_in_air" units="kg m-3"/>
<item description="'Mass concentration' means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. 'Inorganic nitrogen' describes a family of chemical species which, in an ocean model, usually includes nitrite, nitrate and ammonium which act as nitrogen nutrients. 'Inorganic nitrogen' is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="MassConcentrationOfInorganicNitrogenInSeaWater" title="Mass Concentration of Inorganic Nitrogen in Sea Water" uid="mass_concentration_of_inorganic_nitrogen_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for isoprene is CH2=C(CH3)CH=CH2. The IUPAC name for isoprene is 2-methyl-buta-1,3-diene. Isoprene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="MassConcentrationOfIsopreneInAir" title="Mass Concentration of Isoprene in Air" uid="mass_concentration_of_isoprene_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for limonene is C10H16. The IUPAC name for limonene is 1-methyl-4-prop-1-en-2-yl-cyclohexene. Limonene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="MassConcentrationOfLimoneneInAir" title="Mass Concentration of Limonene in Air" uid="mass_concentration_of_limonene_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction &quot;mass_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The mass concentration of liquid water takes into account all cloud droplets and liquid precipitation regardless of drop size or fall speed." label="MassConcentrationOfLiquidWaterInAir" title="Mass Concentration of Liquid Water in Air" uid="mass_concentration_of_liquid_water_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassConcentrationOfMercuryDryAerosolParticlesInAir" title="Mass Concentration of Mercury Dry Aerosol Particles in Air" uid="mass_concentration_of_mercury_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MassConcentrationOfMethaneInAir" title="Mass Concentration of Methane in Air" uid="mass_concentration_of_methane_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methanol is CH3OH." label="MassConcentrationOfMethanolInAir" title="Mass Concentration of Methanol in Air" uid="mass_concentration_of_methanol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl bromide is CH3Br. The IUPAC name for methyl bromide is bromomethane." label="MassConcentrationOfMethylBromideInAir" title="Mass Concentration of Methyl Bromide in Air" uid="mass_concentration_of_methyl_bromide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl chloride is CH3Cl. The IUPAC name for methyl chloride is chloromethane." label="MassConcentrationOfMethylChlorideInAir" title="Mass Concentration of Methyl Chloride in Air" uid="mass_concentration_of_methyl_chloride_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl hydroperoxide is CH3OOH." label="MassConcentrationOfMethylHydroperoxideInAir" title="Mass Concentration of Methyl Hydroperoxide in Air" uid="mass_concentration_of_methyl_hydroperoxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl_peroxy_radical is CH3O2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassConcentrationOfMethylPeroxyRadicalInAir" title="Mass Concentration of Methyl Peroxy Radical in Air" uid="mass_concentration_of_methyl_peroxy_radical_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Chlorophylls are the green pigments found in most plants, algae and cyanobacteria; their presence is essential for photosynthesis to take place. There are several different forms of chlorophyll that occur naturally. All contain a chlorin ring (chemical formula C20H16N4) which gives the green pigment and a side chain whose structure varies. The naturally occurring forms of chlorophyll contain between 35 and 55 carbon atoms. 'Miscellaneous phytoplankton' are all those phytoplankton that are not diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton or other seperately named components of the phytoplankton population. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MassConcentrationOfMiscellaneousPhytoplanktonExpressedAsChlorophyllInSeaWater" title="Mass Concentration of Miscellaneous Phytoplankton Expressed As Chlorophyll in Sea Water" uid="mass_concentration_of_miscellaneous_phytoplankton_expressed_as_chlorophyll_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for molecular hydrogen is H2." label="MassConcentrationOfMolecularHydrogenInAir" title="Mass Concentration of Molecular Hydrogen in Air" uid="mass_concentration_of_molecular_hydrogen_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for the nitrate anion is NO3-." label="MassConcentrationOfNitrateDryAerosolParticlesInAir" title="Mass Concentration of Nitrate Dry Aerosol Particles in Air" uid="mass_concentration_of_nitrate_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassConcentrationOfNitrateRadicalInAir" title="Mass Concentration of Nitrate Radical in Air" uid="mass_concentration_of_nitrate_radical_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitric acid is HNO3." label="MassConcentrationOfNitricAcidInAir" title="Mass Concentration of Nitric Acid in Air" uid="mass_concentration_of_nitric_acid_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The chemical formula for nitric acid is HNO3. Nitric acid trihydrate, sometimes referred to as NAT, is a stable crystalline substance consisting of three molecules of water to one molecule of nitric acid." label="MassConcentrationOfNitricAcidTrihydrateAmbientAerosolParticlesInAir" title="Mass Concentration of Nitric Acid Trihydrate Ambient Aerosol Particles in Air" uid="mass_concentration_of_nitric_acid_trihydrate_ambient_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrogen dioxide is NO2." label="MassConcentrationOfNitrogenDioxideInAir" title="Mass Concentration of Nitrogen Dioxide in Air" uid="mass_concentration_of_nitrogen_dioxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrogen monoxide is NO." label="MassConcentrationOfNitrogenMonoxideInAir" title="Mass Concentration of Nitrogen Monoxide in Air" uid="mass_concentration_of_nitrogen_monoxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrous acid is HNO2." label="MassConcentrationOfNitrousAcidInAir" title="Mass Concentration of Nitrous Acid in Air" uid="mass_concentration_of_nitrous_acid_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrous oxide is N2O." label="MassConcentrationOfNitrousOxideInAir" title="Mass Concentration of Nitrous Oxide in Air" uid="mass_concentration_of_nitrous_oxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="MassConcentrationOfNmvocExpressedAsCarbonInAir" title="Mass Concentration of Nmvoc Expressed As Carbon in Air" uid="mass_concentration_of_nmvoc_expressed_as_carbon_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MassConcentrationOfNoxExpressedAsNitrogenInAir" title="Mass Concentration of Nox Expressed As Nitrogen in Air" uid="mass_concentration_of_nox_expressed_as_nitrogen_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2) , chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MassConcentrationOfNoyExpressedAsNitrogenInAir" title="Mass Concentration of Noy Expressed As Nitrogen in Air" uid="mass_concentration_of_noy_expressed_as_nitrogen_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Organic detritus are particles of debris from decaying plants and animals." label="MassConcentrationOfOrganicDetritusExpressedAsCarbonInSeaWater" title="Mass Concentration of Organic Detritus Expressed As Carbon in Sea Water" uid="mass_concentration_of_organic_detritus_expressed_as_carbon_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Organic detritus are particles of debris from decaying plants and animals." label="MassConcentrationOfOrganicDetritusExpressedAsNitrogenInSeaWater" title="Mass Concentration of Organic Detritus Expressed As Nitrogen in Sea Water" uid="mass_concentration_of_organic_detritus_expressed_as_nitrogen_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y." label="MassConcentrationOfOxygenInSeaWater" title="Mass Concentration of Oxygen in Sea Water" uid="mass_concentration_of_oxygen_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.  &quot;Oxygenated&quot; means containing oxygen. &quot;Hydrocarbon&quot; means a compound containing hydrogen and carbon." label="MassConcentrationOfOxygenatedHydrocarbonsInAir" title="Mass Concentration of Oxygenated Hydrocarbons in Air" uid="mass_concentration_of_oxygenated_hydrocarbons_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ozone is O3." label="MassConcentrationOfOzoneInAir" title="Mass Concentration of Ozone in Air" uid="mass_concentration_of_ozone_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="MassConcentrationOfParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Concentration of Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_concentration_of_particulate_organic_matter_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The term &quot;peroxy_radicals&quot; means all organic and inorganic peroxy radicals. This includes HO2 and all organic peroxy radicals, sometimes referred to as RO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassConcentrationOfPeroxyRadicalsInAir" title="Mass Concentration of Peroxy Radicals in Air" uid="mass_concentration_of_peroxy_radicals_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for peroxyacetyl nitrate, sometimes referred to as PAN, is CH3COO2NO2.  The IUPAC name for peroxyacetyl_nitrate is nitroethaneperoxoate." label="MassConcentrationOfPeroxyacetylNitrateInAir" title="Mass Concentration of Peroxyacetyl Nitrate in Air" uid="mass_concentration_of_peroxyacetyl_nitrate_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for peroxynitric acid, sometimes referred to as PNA, is HO2NO2." label="MassConcentrationOfPeroxynitricAcidInAir" title="Mass Concentration of Peroxynitric Acid in Air" uid="mass_concentration_of_peroxynitric_acid_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. Petroleum hydrocarbons are compounds containing just carbon and hydrogen originating from the fossil fuel crude oil." label="MassConcentrationOfPetroleumHydrocarbonsInSeaWater" title="Mass Concentration of Petroleum Hydrocarbons in Sea Water" uid="mass_concentration_of_petroleum_hydrocarbons_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'." label="MassConcentrationOfPhosphateInSeaWater" title="Mass Concentration of Phosphate in Sea Water" uid="mass_concentration_of_phosphate_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction &quot;mass_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. Standard names also exist for the mass concentration of a number of components that make up the total phytoplankton population, such as diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton and miscellaneous phytoplankton. Chlorophylls are the green pigments found in most plants, algae and cyanobacteria; their presence is essential for photosynthesis to take place. There are several different forms of chlorophyll that occur naturally. All contain a chlorin ring (chemical formula C20H16N4) which gives the green pigment and a side chain whose structure varies. The naturally occurring forms of chlorophyll contain between 35 and 55 carbon atoms. " label="MassConcentrationOfPhytoplanktonExpressedAsChlorophyllInSeaWater" title="Mass Concentration of Phytoplankton Expressed As Chlorophyll in Sea Water" uid="mass_concentration_of_phytoplankton_expressed_as_chlorophyll_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Chlorophylls are the green pigments found in most plants, algae and cyanobacteria; their presence is essential for photosynthesis to take place. There are several different forms of chlorophyll that occur naturally. All contain a chlorin ring (chemical formula C20H16N4) which gives the green pigment and a side chain whose structure varies. The naturally occurring forms of chlorophyll contain between 35 and 55 carbon atoms. Picophytoplankton are phytoplankton of less than 2 micrometers in size. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MassConcentrationOfPicophytoplanktonExpressedAsChlorophyllInSeaWater" title="Mass Concentration of Picophytoplankton Expressed As Chlorophyll in Sea Water" uid="mass_concentration_of_picophytoplankton_expressed_as_chlorophyll_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. To specify the relative humidity and temperature at which the particle size applies, provide scalar coordinate variables with the standard names of, respectively, &quot;relative_humidity&quot; and &quot;air_temperature.&quot;" label="MassConcentrationOfPm10AmbientAerosolParticlesInAir" title="Mass Concentration of Pm10 Ambient Aerosol Particles in Air" uid="mass_concentration_of_pm10_ambient_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm1 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 1 micrometer. To specify the relative humidity and temperature at which the particle size applies, provide scalar coordinate variables with the standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="MassConcentrationOfPm1AmbientAerosolParticlesInAir" title="Mass Concentration of Pm1 Ambient Aerosol Particles in Air" uid="mass_concentration_of_pm1_ambient_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. To specify the relative humidity and temperature at which the particle size applies, provide scalar coordinate variables with the standard names of &quot;relative_humidity&quot; and &quot;air_temperature.&quot;" label="MassConcentrationOfPm2p5AmbientAerosolParticlesInAir" title="Mass Concentration of Pm2p5 Ambient Aerosol Particles in Air" uid="mass_concentration_of_pm2p5_ambient_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="MassConcentrationOfPrimaryParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Concentration of Primary Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_concentration_of_primary_particulate_organic_matter_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MassConcentrationOfPropaneInAir" title="Mass Concentration of Propane in Air" uid="mass_concentration_of_propane_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="MassConcentrationOfPropeneInAir" title="Mass Concentration of Propene in Air" uid="mass_concentration_of_propene_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for radon is Rn." label="MassConcentrationOfRadonInAir" title="Mass Concentration of Radon in Air" uid="mass_concentration_of_radon_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction &quot;mass_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Rain&quot; means drops of water falling through the atmosphere that have a diameter greater than 0.5 mm." label="MassConcentrationOfRainInAir" title="Mass Concentration of Rain in Air" uid="mass_concentration_of_rain_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassConcentrationOfSeasaltDryAerosolParticlesInAir" title="Mass Concentration of Seasalt Dry Aerosol Particles in Air" uid="mass_concentration_of_seasalt_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter&quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="MassConcentrationOfSecondaryParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Concentration of Secondary Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_concentration_of_secondary_particulate_organic_matter_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'." label="MassConcentrationOfSilicateInSeaWater" title="Mass Concentration of Silicate in Sea Water" uid="mass_concentration_of_silicate_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="MassConcentrationOfSulfateAmbientAerosolParticlesInAir" title="Mass Concentration of Sulfate Ambient Aerosol Particles in Air" uid="mass_concentration_of_sulfate_ambient_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for the sulfate anion is SO4(2-)." label="MassConcentrationOfSulfateDryAerosolParticlesInAir" title="Mass Concentration of Sulfate Dry Aerosol Particles in Air" uid="mass_concentration_of_sulfate_dry_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for sulfur dioxide is SO2." label="MassConcentrationOfSulfurDioxideInAir" title="Mass Concentration of Sulfur Dioxide in Air" uid="mass_concentration_of_sulfur_dioxide_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'." label="MassConcentrationOfSuspendedMatterInSeaWater" title="Mass Concentration of Suspended Matter in Sea Water" uid="mass_concentration_of_suspended_matter_in_sea_water" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Terpenes are hydrocarbons, that is, they contain only hydrogen and carbon combined in the general proportions (C5H8)n where n is an integer greater than on equal to one. The term &quot;terpenes&quot; is used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.  Standard names exist for some individual terpene species, e.g., isoprene and limonene." label="MassConcentrationOfTerpenesInAir" title="Mass Concentration of Terpenes in Air" uid="mass_concentration_of_terpenes_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for toluene is C6H5CH3.  Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group.  The systematic name for toluene is methylbenzene." label="MassConcentrationOfTolueneInAir" title="Mass Concentration of Toluene in Air" uid="mass_concentration_of_toluene_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles." label="MassConcentrationOfWaterInAmbientAerosolParticlesInAir" title="Mass Concentration of Water in Ambient Aerosol Particles in Air" uid="mass_concentration_of_water_in_ambient_aerosol_particles_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'." label="MassConcentrationOfWaterVaporInAir" title="Mass Concentration of Water Vapor in Air" uid="mass_concentration_of_water_vapor_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="MassConcentrationOfXyleneInAir" title="Mass Concentration of Xylene in Air" uid="mass_concentration_of_xylene_in_air" units="kg m-3"/>
<item description="&quot;condensed_water&quot; means liquid and ice. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="MassContentOfCloudCondensedWaterInAtmosphereLayer" title="Mass Content of Cloud Condensed Water in Atmosphere Layer" uid="mass_content_of_cloud_condensed_water_in_atmosphere_layer" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="MassContentOfCloudIceInAtmosphereLayer" title="Mass Content of Cloud Ice in Atmosphere Layer" uid="mass_content_of_cloud_ice_in_atmosphere_layer" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="MassContentOfCloudLiquidWaterInAtmosphereLayer" title="Mass Content of Cloud Liquid Water in Atmosphere Layer" uid="mass_content_of_cloud_liquid_water_in_atmosphere_layer" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. &quot;Water&quot; means water in all phases." label="MassContentOfWaterInAtmosphereLayer" title="Mass Content of Water in Atmosphere Layer" uid="mass_content_of_water_in_atmosphere_layer" units="kg m-2"/>
<item description="&quot;Water&quot; means water in all phases. &quot;Content&quot; indicates a quantity per unit area. The mass content of water in soil refers to the vertical integral from the surface down to the bottom of the soil model. For the content between specified levels in the soil, standard names including &quot;content_of_soil_layer&quot; are used." label="MassContentOfWaterInSoil" title="Mass Content of Water in Soil" uid="mass_content_of_water_in_soil" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Water&quot; means water in all phases. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be &quot;model_level_number&quot;, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Quantities defined for a soil layer must have a vertical coordinate variable with boundaries indicating the extent of the layer(s)." label="MassContentOfWaterInSoilLayer" title="Mass Content of Water in Soil Layer" uid="mass_content_of_water_in_soil_layer" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="MassContentOfWaterVaporInAtmosphereLayer" title="Mass Content of Water Vapor in Atmosphere Layer" uid="mass_content_of_water_vapor_in_atmosphere_layer" units="kg m-2"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for acetic_acid is CH3COOH. The IUPAC name for acetic acid is ethanoic acid." label="MassFractionOfAceticAcidInAir" title="Mass Fraction of Acetic Acid in Air" uid="mass_fraction_of_acetic_acid_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for aceto-nitrile is CH3CN. The IUPAC name for aceto-nitrile is ethanenitrile." label="MassFractionOfAcetoNitrileInAir" title="Mass Fraction of Aceto Nitrile in Air" uid="mass_fraction_of_aceto_nitrile_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Alkanes are saturated hydrocarbons, i.e. they do not contain any chemical double bonds.  Alkanes contain only hydrogen and carbon combined in the general proportions C(n)H(2n+2); &quot;alkanes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkane species, e.g., methane and ethane." label="MassFractionOfAlkanesInAir" title="Mass Fraction of Alkanes in Air" uid="mass_fraction_of_alkanes_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Alkenes are unsaturated hydrocarbons as they contain chemical double bonds between adjacent carbon atoms.  Alkenes contain only hydrogen and carbon combined in the general proportions C(n)H(2n); &quot;alkenes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkene species, e.g., ethene and propene." label="MassFractionOfAlkenesInAir" title="Mass Fraction of Alkenes in Air" uid="mass_fraction_of_alkenes_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for alpha_hexachlorocyclohexane is C6H6Cl6." label="MassFractionOfAlphaHexachlorocyclohexaneInAir" title="Mass Fraction of Alpha Hexachlorocyclohexane in Air" uid="mass_fraction_of_alpha_hexachlorocyclohexane_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for alpha_pinene is C10H16. The IUPAC name for alpha-pinene is (1S,5S)-2,6,6-trimethylbicyclo[3.1.1]hept-2-ene." label="MassFractionOfAlphaPineneInAir" title="Mass Fraction of Alpha Pinene in Air" uid="mass_fraction_of_alpha_pinene_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ammonia is NH3." label="MassFractionOfAmmoniaInAir" title="Mass Fraction of Ammonia in Air" uid="mass_fraction_of_ammonia_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  &quot;Mass_fraction_of_ammonium&quot; means that the mass is expressed as mass of NH4. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfAmmoniumDryAerosolParticlesInAir" title="Mass Fraction of Ammonium Dry Aerosol Particles in Air" uid="mass_fraction_of_ammonium_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity." label="MassFractionOfAnthropogenicNmvocExpressedAsCarbonInAir" title="Mass Fraction of Anthropogenic Nmvoc Expressed As Carbon in Air" uid="mass_fraction_of_anthropogenic_nmvoc_expressed_as_carbon_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Aromatic compounds in organic chemistry are compounds that contain at least one benzene ring of six carbon atoms joined by alternating single and double covalent bonds.  The simplest aromatic compound is benzene itself.  In standard names &quot;aromatic_compounds&quot; is the term used to describe the group of aromatic chemical species that  are represented within a given model.  The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.  Standard names exist for some individual aromatic species, e.g. benzene and xylene." label="MassFractionOfAromaticCompoundsInAir" title="Mass Fraction of Aromatic Compounds in Air" uid="mass_fraction_of_aromatic_compounds_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for atomic bromine is Br." label="MassFractionOfAtomicBromineInAir" title="Mass Fraction of Atomic Bromine in Air" uid="mass_fraction_of_atomic_bromine_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for atomic chlorine is Cl." label="MassFractionOfAtomicChlorineInAir" title="Mass Fraction of Atomic Chlorine in Air" uid="mass_fraction_of_atomic_chlorine_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for atomic nitrogen is N." label="MassFractionOfAtomicNitrogenInAir" title="Mass Fraction of Atomic Nitrogen in Air" uid="mass_fraction_of_atomic_nitrogen_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for benzene is C6H6.  Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="MassFractionOfBenzeneInAir" title="Mass Fraction of Benzene in Air" uid="mass_fraction_of_benzene_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for beta_pinene is C10H16.  The IUPAC name for beta-pinene is (1S,5S)-6,6-dimethyl-2-methylenebicyclo[3.1.1]heptane." label="MassFractionOfBetaPineneInAir" title="Mass Fraction of Beta Pinene in Air" uid="mass_fraction_of_beta_pinene_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Biogenic&quot; means influenced, caused, or created by natural processes." label="MassFractionOfBiogenicNmvocExpressedAsCarbonInAir" title="Mass Fraction of Biogenic Nmvoc Expressed As Carbon in Air" uid="mass_fraction_of_biogenic_nmvoc_expressed_as_carbon_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for bromine chloride is BrCl." label="MassFractionOfBromineChlorideInAir" title="Mass Fraction of Bromine Chloride in Air" uid="mass_fraction_of_bromine_chloride_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for bromine monoxide is BrO." label="MassFractionOfBromineMonoxideInAir" title="Mass Fraction of Bromine Monoxide in Air" uid="mass_fraction_of_bromine_monoxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for bromine nitrate is BrONO2." label="MassFractionOfBromineNitrateInAir" title="Mass Fraction of Bromine Nitrate in Air" uid="mass_fraction_of_bromine_nitrate_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Brox&quot;  describes a family of chemical species consisting of inorganic bromine compounds with the exception of  hydrogen bromide (HBr) and bromine nitrate (BrONO2). &quot;Brox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompaniedby a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols.  Standard names that use the term &quot;inorganic_bromine&quot; are usedfor quantities that contain all inorganic bromine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MassFractionOfBroxExpressedAsBromineInAir" title="Mass Fraction of Brox Expressed As Bromine in Air" uid="mass_fraction_of_brox_expressed_as_bromine_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MassFractionOfButaneInAir" title="Mass Fraction of Butane in Air" uid="mass_fraction_of_butane_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for carbon dioxide is CO2." label="MassFractionOfCarbonDioxideInAir" title="Mass Fraction of Carbon Dioxide in Air" uid="mass_fraction_of_carbon_dioxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of carbon monoxide is CO." label="MassFractionOfCarbonMonoxideInAir" title="Mass Fraction of Carbon Monoxide in Air" uid="mass_fraction_of_carbon_monoxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of carbon tetrachloride is CCl4." label="MassFractionOfCarbonTetrachlorideInAir" title="Mass Fraction of Carbon Tetrachloride in Air" uid="mass_fraction_of_carbon_tetrachloride_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC113 is CCl2FCClF2. The IUPAC name for CFC113 is 1,1,2-trichloro-1,2,2-trifluoro-ethane." label="MassFractionOfCfc113InAir" title="Mass Fraction of Cfc113 in Air" uid="mass_fraction_of_cfc113_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC113a CCl3CF3.  The IUPAC name for CFC113a is 1,1,1-trichloro-2,2,2-trifluoro-ethane." label="MassFractionOfCfc113aInAir" title="Mass Fraction of Cfc113a in Air" uid="mass_fraction_of_cfc113a_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC114 is CClF2CClF2. The IUPAC name for CFC114 is 1,2-dichloro-1,1,2,2-tetrafluoro-ethane." label="MassFractionOfCfc114InAir" title="Mass Fraction of Cfc114 in Air" uid="mass_fraction_of_cfc114_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC115 is CClF2CF3. The IUPAC name for CFC115 is 1-chloro-1,1,2,2,2-pentafluoro-ethane." label="MassFractionOfCfc115InAir" title="Mass Fraction of Cfc115 in Air" uid="mass_fraction_of_cfc115_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="MassFractionOfCfc11InAir" title="Mass Fraction of Cfc11 in Air" uid="mass_fraction_of_cfc11_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for CFC12 is CF2Cl2.  The IUPAC name for CFC12 is dichloro-difluoro-methane." label="MassFractionOfCfc12InAir" title="Mass Fraction of Cfc12 in Air" uid="mass_fraction_of_cfc12_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for chlorine dioxide is OClO." label="MassFractionOfChlorineDioxideInAir" title="Mass Fraction of Chlorine Dioxide in Air" uid="mass_fraction_of_chlorine_dioxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for chlorine monoxide is ClO." label="MassFractionOfChlorineMonoxideInAir" title="Mass Fraction of Chlorine Monoxide in Air" uid="mass_fraction_of_chlorine_monoxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for chlorine nitrate is ClONO2." label="MassFractionOfChlorineNitrateInAir" title="Mass Fraction of Chlorine Nitrate in Air" uid="mass_fraction_of_chlorine_nitrate_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Chlorophylls are the green pigments found in most plants, algae and cyanobacteria; their presence is essential for photosynthesis to take place. There are several different forms of chlorophyll that occur naturally; all contain a chlorin ring which gives the green pigment and a side chain whose structure varies. Chlorophyll-a is the most commonly occurring form of natural chlorophyll." label="MassFractionOfChlorophyllAInSeaWater" title="Mass Fraction of Chlorophyll A in Sea Water" uid="mass_fraction_of_chlorophyll_a_in_sea_water" units="1"/>
<item description="&quot;condensed_water&quot; means liquid and ice. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfCloudCondensedWaterInAir" title="Mass Fraction of Cloud Condensed Water in Air" uid="mass_fraction_of_cloud_condensed_water_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfCloudIceInAir" title="Mass Fraction of Cloud Ice in Air" uid="mass_fraction_of_cloud_ice_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfCloudLiquidWaterInAir" title="Mass Fraction of Cloud Liquid Water in Air" uid="mass_fraction_of_cloud_liquid_water_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Clox&quot; describes a familyof chemical species consisting of inorganic chlorine compounds with the exception of  hydrogen chloride (HCl) and chlorine nitrate (ClONO2). &quot;Clox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols.   Standard names that use the term &quot;inorganic_chlorine&quot; are used for quantitiesthat contain all inorganic chlorine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A.It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MassFractionOfCloxExpressedAsChlorineInAir" title="Mass Fraction of Clox Expressed As Chlorine in Air" uid="mass_fraction_of_clox_expressed_as_chlorine_in_air" units="1"/>
<item description="&quot;condensed_water&quot; means liquid and ice. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfConvectiveCloudCondensedWaterInAir" title="Mass Fraction of Convective Cloud Condensed Water in Air" uid="mass_fraction_of_convective_cloud_condensed_water_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). Convective cloud is that produced by the convection schemes in an atmosphere model." label="MassFractionOfConvectiveCloudIceInAir" title="Mass Fraction of Convective Cloud Ice in Air" uid="mass_fraction_of_convective_cloud_ice_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). Convective cloud is that produced by the convection schemes in an atmosphere model." label="MassFractionOfConvectiveCloudLiquidWaterInAir" title="Mass Fraction of Convective Cloud Liquid Water in Air" uid="mass_fraction_of_convective_cloud_liquid_water_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for dichlorineperoxide is Cl2O2." label="MassFractionOfDichlorinePeroxideInAir" title="Mass Fraction of Dichlorine Peroxide in Air" uid="mass_fraction_of_dichlorine_peroxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfDimethylSulfideInAir" title="Mass Fraction of Dimethyl Sulfide in Air" uid="mass_fraction_of_dimethyl_sulfide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for dinitrogenpentoxide is N2O5." label="MassFractionOfDinitrogenPentoxideInAir" title="Mass Fraction of Dinitrogen Pentoxide in Air" uid="mass_fraction_of_dinitrogen_pentoxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfDustDryAerosolParticlesInAir" title="Mass Fraction of Dust Dry Aerosol Particles in Air" uid="mass_fraction_of_dust_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="MassFractionOfElementalCarbonDryAerosolParticlesInAir" title="Mass Fraction of Elemental Carbon Dry Aerosol Particles in Air" uid="mass_fraction_of_elemental_carbon_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes.  There are standardnames for the alkane group as well as for some of the individual species." label="MassFractionOfEthaneInAir" title="Mass Fraction of Ethane in Air" uid="mass_fraction_of_ethane_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethanol isC2H5OH." label="MassFractionOfEthanolInAir" title="Mass Fraction of Ethanol in Air" uid="mass_fraction_of_ethanol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes.  There are standardnames for the alkene group as well as for some of the individual species." label="MassFractionOfEtheneInAir" title="Mass Fraction of Ethene in Air" uid="mass_fraction_of_ethene_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethyne is HC2H.  Ethyne is the IUPAC name for this species, which is also commonly known as acetylene." label="MassFractionOfEthyneInAir" title="Mass Fraction of Ethyne in Air" uid="mass_fraction_of_ethyne_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="MassFractionOfFormaldehydeInAir" title="Mass Fraction of Formaldehyde in Air" uid="mass_fraction_of_formaldehyde_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for formic acid is HCOOH.  The IUPAC name for formic acid is methanoic acid." label="MassFractionOfFormicAcidInAir" title="Mass Fraction of Formic Acid in Air" uid="mass_fraction_of_formic_acid_in_air" units="1"/>
<item description="&quot;frozen_water&quot; means ice. &quot;moisture&quot; means water in all phases contained in soil. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfFrozenWaterInSoilMoisture" title="Mass Fraction of Frozen Water in Soil Moisture" uid="mass_fraction_of_frozen_water_in_soil_moisture" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s) in a salt or to other atom(s) in a molecule." label="MassFractionOfGaseousDivalentMercuryInAir" title="Mass Fraction of Gaseous Divalent Mercury in Air" uid="mass_fraction_of_gaseous_divalent_mercury_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for mercury is Hg." label="MassFractionOfGaseousElementalMercuryInAir" title="Mass Fraction of Gaseous Elemental Mercury in Air" uid="mass_fraction_of_gaseous_elemental_mercury_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfGraupelInAir" title="Mass Fraction of Graupel in Air" uid="mass_fraction_of_graupel_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halon1202 is CBr2F2. The IUPAC name for halon1202 is dibromo-difluoro-methane." label="MassFractionOfHalon1202InAir" title="Mass Fraction of Halon1202 in Air" uid="mass_fraction_of_halon1202_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halon1211 is CBrClF2. The IUPAC name for halon1211 is bromo-chloro-difluoro-methane." label="MassFractionOfHalon1211InAir" title="Mass Fraction of Halon1211 in Air" uid="mass_fraction_of_halon1211_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halon1301 is CBrF3. The IUPAC name for halon1301 is bromo-trifluoro-methane." label="MassFractionOfHalon1301InAir" title="Mass Fraction of Halon1301 in Air" uid="mass_fraction_of_halon1301_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halo2402 is C2Br2F4. The IUPAC name for halon2402 is 1,2-dibromo-1,1,2,2-tetrafluoro-ethane." label="MassFractionOfHalon2402InAir" title="Mass Fraction of Halon2402 in Air" uid="mass_fraction_of_halon2402_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hcc140a isCH3CCl3. The IUPAC name for hcc140a is 1,1,1-trichloro-ethane." label="MassFractionOfHcc140aInAir" title="Mass Fraction of Hcc140a in Air" uid="mass_fraction_of_hcc140a_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for HCFC141b is CH3CCl2F. The IUPAC name for HCFC141b is 1,1-dichloro-1-fluoroethane." label="MassFractionOfHcfc141bInAir" title="Mass Fraction of Hcfc141b in Air" uid="mass_fraction_of_hcfc141b_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for HCFC142b is CH3CClF2. The IUPAC name for HCFC142b is 1-chloro-1,1-difluoroethane." label="MassFractionOfHcfc142bInAir" title="Mass Fraction of Hcfc142b in Air" uid="mass_fraction_of_hcfc142b_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for HCFC22 is CHClF2.  The IUPAC name for HCFC22 is chloro-difluoro-methane." label="MassFractionOfHcfc22InAir" title="Mass Fraction of Hcfc22 in Air" uid="mass_fraction_of_hcfc22_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hexachlorobiphenyl is C12H4Cl6.  This structure of this species consists of two linked benzene rings,each of which is additionally bonded to three chlorine atoms." label="MassFractionOfHexachlorobiphenylInAir" title="Mass Fraction of Hexachlorobiphenyl in Air" uid="mass_fraction_of_hexachlorobiphenyl_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;HOx&quot; means a combination of two radical species containing hydrogen and oxygen: OH and HO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MassFractionOfHoxExpressedAsHydrogenInAir" title="Mass Fraction of Hox Expressed As Hydrogen in Air" uid="mass_fraction_of_hox_expressed_as_hydrogen_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen bromide is HBr." label="MassFractionOfHydrogenBromideInAir" title="Mass Fraction of Hydrogen Bromide in Air" uid="mass_fraction_of_hydrogen_bromide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen chloride is HCl." label="MassFractionOfHydrogenChlorideInAir" title="Mass Fraction of Hydrogen Chloride in Air" uid="mass_fraction_of_hydrogen_chloride_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen cyanide is HCN." label="MassFractionOfHydrogenCyanideInAir" title="Mass Fraction of Hydrogen Cyanide in Air" uid="mass_fraction_of_hydrogen_cyanide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen peroxide is H2O2." label="MassFractionOfHydrogenPeroxideInAir" title="Mass Fraction of Hydrogen Peroxide in Air" uid="mass_fraction_of_hydrogen_peroxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for the hydroperoxyl radical is HO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassFractionOfHydroperoxylRadicalInAir" title="Mass Fraction of Hydroperoxyl Radical in Air" uid="mass_fraction_of_hydroperoxyl_radical_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for the hydroxyl radical is OH. In chemistry, a 'radical' is a highly reactive, and therefore shortlived,species." label="MassFractionOfHydroxylRadicalInAir" title="Mass Fraction of Hydroxyl Radical in Air" uid="mass_fraction_of_hydroxyl_radical_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hypobromous acid is HOBr." label="MassFractionOfHypobromousAcidInAir" title="Mass Fraction of Hypobromous Acid in Air" uid="mass_fraction_of_hypobromous_acid_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hypochlorous acid is HOCl." label="MassFractionOfHypochlorousAcidInAir" title="Mass Fraction of Hypochlorous Acid in Air" uid="mass_fraction_of_hypochlorous_acid_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols. &quot;Inorganic bromine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;brox&quot; are used for quantities that contain all inorganic bromine species except HBr and BrONO2." label="MassFractionOfInorganicBromineInAir" title="Mass Fraction of Inorganic Bromine in Air" uid="mass_fraction_of_inorganic_bromine_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols. &quot;Inorganic chlorine&quot; is the termused in standard names for all species belonging to the family that are represented withina given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;clox&quot; are used for quantities that contain all inorganic chlorine species except HCl and ClONO2." label="MassFractionOfInorganicChlorineInAir" title="Mass Fraction of Inorganic Chlorine in Air" uid="mass_fraction_of_inorganic_chlorine_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for isoprene is CH2=C(CH3)CH=CH2. The IUPAC name for isoprene is 2-methyl-buta-1,3-diene. Isoprene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="MassFractionOfIsopreneInAir" title="Mass Fraction of Isoprene in Air" uid="mass_fraction_of_isoprene_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for limonene is C10H16. The IUPAC name for limonene is 1-methyl-4-prop-1-en-2-yl-cyclohexene. Limonene is a  member of the group of hydrocarbons known as terpenes.  There are standard names for theterpene group as well as for some of the individual species." label="MassFractionOfLimoneneInAir" title="Mass Fraction of Limonene in Air" uid="mass_fraction_of_limonene_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfMercuryDryAerosolInAir" title="Mass Fraction of Mercury Dry Aerosol in Air" uid="mass_fraction_of_mercury_dry_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methane isCH4. Methane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MassFractionOfMethaneInAir" title="Mass Fraction of Methane in Air" uid="mass_fraction_of_methane_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for methanesulfonic acid is CH3SO3H." label="MassFractionOfMethanesulfonicAcidDryAerosolParticlesInAir" title="Mass Fraction of Methanesulfonic Acid Dry Aerosol Particles in Air" uid="mass_fraction_of_methanesulfonic_acid_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethanol isC2H5OH. The chemical formula for methanol is CH3OH." label="MassFractionOfMethanolInAir" title="Mass Fraction of Methanol in Air" uid="mass_fraction_of_methanol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl bromide is CH3Br. The IUPAC name for methyl bromide is bromomethane." label="MassFractionOfMethylBromideInAir" title="Mass Fraction of Methyl Bromide in Air" uid="mass_fraction_of_methyl_bromide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl chloride is CH3Cl. The IUPAC name for methyl chloride is chloromethane." label="MassFractionOfMethylChlorideInAir" title="Mass Fraction of Methyl Chloride in Air" uid="mass_fraction_of_methyl_chloride_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl hydroperoxide is CH3OOH." label="MassFractionOfMethylHydroperoxideInAir" title="Mass Fraction of Methyl Hydroperoxide in Air" uid="mass_fraction_of_methyl_hydroperoxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl_peroxy_radical is CH3O2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassFractionOfMethylPeroxyRadicalInAir" title="Mass Fraction of Methyl Peroxy Radical in Air" uid="mass_fraction_of_methyl_peroxy_radical_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for molecular hydrogen is H2." label="MassFractionOfMolecularHydrogenInAir" title="Mass Fraction of Molecular Hydrogen in Air" uid="mass_fraction_of_molecular_hydrogen_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Mass_fraction_of_nitrate&quot; means that the mass is expressed as mass of NO3. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfNitrateDryAerosolParticlesInAir" title="Mass Fraction of Nitrate Dry Aerosol Particles in Air" uid="mass_fraction_of_nitrate_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassFractionOfNitrateRadicalInAir" title="Mass Fraction of Nitrate Radical in Air" uid="mass_fraction_of_nitrate_radical_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitric acid is HNO3." label="MassFractionOfNitricAcidInAir" title="Mass Fraction of Nitric Acid in Air" uid="mass_fraction_of_nitric_acid_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The chemical formula for nitric acid is HNO3. Nitric acid trihydrate, sometimes referred to as NAT, is a stable crystalline substance consisting of three molecules of water to one molecule of nitric acid." label="MassFractionOfNitricAcidTrihydrateAmbientAerosolParticlesInAir" title="Mass Fraction of Nitric Acid Trihydrate Ambient Aerosol Particles in Air" uid="mass_fraction_of_nitric_acid_trihydrate_ambient_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrogen dioxide is NO2." label="MassFractionOfNitrogenDioxideInAir" title="Mass Fraction of Nitrogen Dioxide in Air" uid="mass_fraction_of_nitrogen_dioxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrogen monoxide is NO." label="MassFractionOfNitrogenMonoxideInAir" title="Mass Fraction of Nitrogen Monoxide in Air" uid="mass_fraction_of_nitrogen_monoxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrous acid is HNO2." label="MassFractionOfNitrousAcidInAir" title="Mass Fraction of Nitrous Acid in Air" uid="mass_fraction_of_nitrous_acid_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrous oxide is N2O." label="MassFractionOfNitrousOxideInAir" title="Mass Fraction of Nitrous Oxide in Air" uid="mass_fraction_of_nitrous_oxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="MassFractionOfNmvocExpressedAsCarbonInAir" title="Mass Fraction of Nmvoc Expressed As Carbon in Air" uid="mass_fraction_of_nmvoc_expressed_as_carbon_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The term &quot;peroxy_radicals&quot; means all organic and inorganic peroxy radicals. This includes HO2 and all organic peroxyradicals, sometimes referred to as RO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassFractionOfNoxExpressedAsNitrogenInAir" title="Mass Fraction of Nox Expressed As Nitrogen in Air" uid="mass_fraction_of_nox_expressed_as_nitrogen_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2) , chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MassFractionOfNoyExpressedAsNitrogenInAir" title="Mass Fraction of Noy Expressed As Nitrogen in Air" uid="mass_fraction_of_noy_expressed_as_nitrogen_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.  &quot;Oxygenated&quot; means containing oxygen. &quot;Hydrocarbon&quot; means a compound containing hydrogen and carbon." label="MassFractionOfOxygenatedHydrocarbonsInAir" title="Mass Fraction of Oxygenated Hydrocarbons in Air" uid="mass_fraction_of_oxygenated_hydrocarbons_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfOzoneInAir" title="Mass Fraction of Ozone in Air" uid="mass_fraction_of_ozone_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="MassFractionOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonInAir" title="Mass Fraction of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon in Air" uid="mass_fraction_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon.  It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="MassFractionOfParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Fraction of Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_fraction_of_particulate_organic_matter_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The term &quot;peroxy_radicals&quot; means all organic and inorganic peroxy radicals. This includes HO2 and all organic peroxyradicals, sometimes referred to as RO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MassFractionOfPeroxyRadicalsInAir" title="Mass Fraction of Peroxy Radicals in Air" uid="mass_fraction_of_peroxy_radicals_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for peroxyacetyl nitrate, sometimes referred to as PAN, is CH3COO2NO2.  The IUPAC name for peroxyacetyl_nitrate is nitroethaneperoxoate." label="MassFractionOfPeroxyacetylNitrateInAir" title="Mass Fraction of Peroxyacetyl Nitrate in Air" uid="mass_fraction_of_peroxyacetyl_nitrate_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for peroxynitric acid, sometimes referred to as PNA, is HO2NO2." label="MassFractionOfPeroxynitricAcidInAir" title="Mass Fraction of Peroxynitric Acid in Air" uid="mass_fraction_of_peroxynitric_acid_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. To specify the relative humidity and temperature at which the particle size applies, provide scalar coordinate variables with the standard names of &quot;relative_humidity&quot; and &quot;air_temperature.&quot;" label="MassFractionOfPm10AmbientAerosolParticlesInAir" title="Mass Fraction of Pm10 Ambient Aerosol Particles in Air" uid="mass_fraction_of_pm10_ambient_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. The chemical formula for ammonium is NH4." label="MassFractionOfPm10AmmoniumDryAerosolParticlesInAir" title="Mass Fraction of Pm10 Ammonium Dry Aerosol Particles in Air" uid="mass_fraction_of_pm10_ammonium_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers." label="MassFractionOfPm10DryAerosolParticlesInAir" title="Mass Fraction of Pm10 Dry Aerosol Particles in Air" uid="mass_fraction_of_pm10_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers." label="MassFractionOfPm10DustDryAerosolParticlesInAir" title="Mass Fraction of Pm10 Dust Dry Aerosol Particles in Air" uid="mass_fraction_of_pm10_dust_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="MassFractionOfPm10ElementalCarbonDryAerosolParticlesInAir" title="Mass Fraction of Pm10 Elemental Carbon Dry Aerosol Particles in Air" uid="mass_fraction_of_pm10_elemental_carbon_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. The chemical formula for the nitrate anion is NO3-." label="MassFractionOfPm10NitrateDryAerosolParticlesInAir" title="Mass Fraction of Pm10 Nitrate Dry Aerosol Particles in Air" uid="mass_fraction_of_pm10_nitrate_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="MassFractionOfPm10ParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonInAir" title="Mass Fraction of Pm10 Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon in Air" uid="mass_fraction_of_pm10_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="MassFractionOfPm10ParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Fraction of Pm10 Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_fraction_of_pm10_particulate_organic_matter_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. &quot;Primary particulate organic matter&quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="MassFractionOfPm10PrimaryParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Fraction of Pm10 Primary Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_fraction_of_pm10_primary_particulate_organic_matter_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers." label="MassFractionOfPm10SeaSaltDryAerosolParticlesInAir" title="Mass Fraction of Pm10 Sea Salt Dry Aerosol Particles in Air" uid="mass_fraction_of_pm10_sea_salt_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. The chemical formula for the sulfate anion is SO4(2-)." label="MassFractionOfPm10SulfateDryAerosolParticlesInAir" title="Mass Fraction of Pm10 Sulfate Dry Aerosol Particles in Air" uid="mass_fraction_of_pm10_sulfate_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm1 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 1 micrometer. To specify the relative humidity and temperature at which the particle size applies, provide scalar coordinate variables with the standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="MassFractionOfPm1AmbientAerosolParticlesInAir" title="Mass Fraction of Pm1 Ambient Aerosol Particles in Air" uid="mass_fraction_of_pm1_ambient_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm1 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 1 micrometer." label="MassFractionOfPm1DryAerosolParticlesInAir" title="Mass Fraction of Pm1 Dry Aerosol Particles in Air" uid="mass_fraction_of_pm1_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. To specify the relative humidity and temperature at which the particle size applies, provide scalar coordinate variables with the standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="MassFractionOfPm2p5AmbientAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Ambient Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_ambient_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The chemical formula for ammonium is NH4." label="MassFractionOfPm2p5AmmoniumDryAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Ammonium Dry Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_ammonium_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers." label="MassFractionOfPm2p5DryAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Dry Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers." label="MassFractionOfPm2p5DustDryAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Dust Dry Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_dust_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="MassFractionOfPm2p5ElementalCarbonDryAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Elemental Carbon Dry Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_elemental_carbon_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The chemical formula for the nitrate anion is NO3-." label="MassFractionOfPm2p5NitrateDryAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Nitrate Dry Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_nitrate_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="MassFractionOfPm2p5ParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonInAir" title="Mass Fraction of Pm2p5 Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon in Air" uid="mass_fraction_of_pm2p5_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="MassFractionOfPm2p5ParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_particulate_organic_matter_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. &quot;Primary particulate organic matter&quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="MassFractionOfPm2p5PrimaryParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Primary Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_primary_particulate_organic_matter_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers." label="MassFractionOfPm2p5SeaSaltDryAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Sea Salt Dry Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_sea_salt_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The chemical formula for the sulfate anion is SO4(2-)." label="MassFractionOfPm2p5SulfateDryAerosolParticlesInAir" title="Mass Fraction of Pm2p5 Sulfate Dry Aerosol Particles in Air" uid="mass_fraction_of_pm2p5_sulfate_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfPrecipitationInAir" title="Mass Fraction of Precipitation in Air" uid="mass_fraction_of_precipitation_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="MassFractionOfPrimaryParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Fraction of Primary Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_fraction_of_primary_particulate_organic_matter_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for propane isC3H8. Propane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MassFractionOfPropaneInAir" title="Mass Fraction of Propane in Air" uid="mass_fraction_of_propane_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for propene isC3H6. Propene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="MassFractionOfPropeneInAir" title="Mass Fraction of Propene in Air" uid="mass_fraction_of_propene_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for radon is Rn." label="MassFractionOfRadonInAir" title="Mass Fraction of Radon in Air" uid="mass_fraction_of_radon_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfRainInAir" title="Mass Fraction of Rain in Air" uid="mass_fraction_of_rain_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfSeasaltDryAerosolParticlesInAir" title="Mass Fraction of Seasalt Dry Aerosol Particles in Air" uid="mass_fraction_of_seasalt_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter&quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="MassFractionOfSecondaryParticulateOrganicMatterDryAerosolParticlesInAir" title="Mass Fraction of Secondary Particulate Organic Matter Dry Aerosol Particles in Air" uid="mass_fraction_of_secondary_particulate_organic_matter_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfSnowInAir" title="Mass Fraction of Snow in Air" uid="mass_fraction_of_snow_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes)." label="MassFractionOfStratiformCloudIceInAir" title="Mass Fraction of Stratiform Cloud Ice in Air" uid="mass_fraction_of_stratiform_cloud_ice_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes)." label="MassFractionOfStratiformCloudLiquidWaterInAir" title="Mass Fraction of Stratiform Cloud Liquid Water in Air" uid="mass_fraction_of_stratiform_cloud_liquid_water_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  &quot;Mass_fraction_of_sulfate&quot; means that the mass is expressed as mass of SO4. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfSulfateDryAerosolParticlesInAir" title="Mass Fraction of Sulfate Dry Aerosol Particles in Air" uid="mass_fraction_of_sulfate_dry_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfSulfurDioxideInAir" title="Mass Fraction of Sulfur Dioxide in Air" uid="mass_fraction_of_sulfur_dioxide_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'." label="MassFractionOfSulfuricAcidInAir" title="Mass Fraction of Sulfuric Acid in Air" uid="mass_fraction_of_sulfuric_acid_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Terpenes are hydrocarbons, that is,they contain only hydrogen and carbon combined in the general proportions (C5H8)n where n is an integer greater than on equal to one. The term &quot;terpenes&quot; is used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.  Standard names exist for some individual terpene species, e.g., isoprene and limonene." label="MassFractionOfTerpenesInAir" title="Mass Fraction of Terpenes in Air" uid="mass_fraction_of_terpenes_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for toluene isC6H5CH3.  Toluene has the same structure as benzene, except that one of the hydrogen atomsis replaced by a methyl group.  The systematic name for toluene is methylbenzene." label="MassFractionOfTolueneInAir" title="Mass Fraction of Toluene in Air" uid="mass_fraction_of_toluene_in_air" units="1"/>
<item description="&quot;moisture&quot; means water in all phases contained in soil. &quot;unfrozen_water&quot; means liquid and vapour. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfUnfrozenWaterInSoilMoisture" title="Mass Fraction of Unfrozen Water in Soil Moisture" uid="mass_fraction_of_unfrozen_water_in_soil_moisture" units="1"/>
<item description="&quot;Water&quot; means water in all phases. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="MassFractionOfWaterInAir" title="Mass Fraction of Water in Air" uid="mass_fraction_of_water_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles." label="MassFractionOfWaterInAmbientAerosolParticlesInAir" title="Mass Fraction of Water in Ambient Aerosol Particles in Air" uid="mass_fraction_of_water_in_ambient_aerosol_particles_in_air" units="1"/>
<item description="&quot;Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers." label="MassFractionOfWaterInPm10AmbientAerosolParticlesInAir" title="Mass Fraction of Water in Pm10 Ambient Aerosol Particles in Air" uid="mass_fraction_of_water_in_pm10_ambient_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction &quot;mass_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers." label="MassFractionOfWaterInPm2p5AmbientAerosolParticlesInAir" title="Mass Fraction of Water in Pm2p5 Ambient Aerosol Particles in Air" uid="mass_fraction_of_water_in_pm2p5_ambient_aerosol_particles_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer toaromatic_compounds as a group, as well as those for individual species." label="MassFractionOfXyleneInAir" title="Mass Fraction of Xylene in Air" uid="mass_fraction_of_xylene_in_air" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;soil content&quot; of a quantity refers to the vertical integral from the surface down to the bottom of the soil model. For the content between specified levels in the soil, standard names including content_of_soil_layer are used.  &quot;Soil carbon&quot; is the organic matter present in soil quantified by the mass of carbon it contains. Soil carbon is returned to the atmosphere as the organic matter decays. The decay process takes varying amounts of time depending on the composition of the organic matter, the temperature and the availability of moisture. A carbon &quot;soil pool&quot; means the carbon contained in organic matter which has a characteristic period over which it decays and releases carbon into the atmosphere. &quot;Medium soil pool&quot; refers to the decay of organic matter in soil with a characteristic period of between ten and one hundred years under reference climate conditions of a temperature of 20 degrees Celsius and no water limitations." label="MediumSoilPoolCarbonContent" title="Medium Soil Pool Carbon Content" uid="medium_soil_pool_carbon_content" units="kg m-2"/>
<item description="Middle type clouds are: Altostratus, Altocumulus, Nimbostratus. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. X_type_cloud_area_fraction is generally determined on the basis of cloud type, though Numerical Weather Prediction (NWP) models often calculate them based on the vertical location of the cloud." label="MediumTypeCloudAreaFraction" title="Medium Type Cloud Area Fraction" uid="medium_type_cloud_area_fraction" units="1"/>
<item description="Depth is the vertical distance below the surface.   'Undersaturation' means that a solution is unsaturated with respect to a solute. Aragonite is a mineral that is a polymorph of calcium carbonate. The chemical formula of aragonite is CaCO3. Standard names also exist for calcite, another polymorph of calcium carbonate. The &quot;minimum depth of undersaturation&quot;, sometimes called the &quot;saturation horizon&quot;, is the shallowest depth at which a body of water is an undersaturated solution of a named solute." label="MinimumDepthOfAragoniteUndersaturationInSeaWater" title="Minimum Depth of Aragonite Undersaturation in Sea Water" uid="minimum_depth_of_aragonite_undersaturation_in_sea_water" units="m"/>
<item description="Depth is the vertical distance below the surface.   'Undersaturation' means that a solution is unsaturated with respect to a solute. Calcite is a mineral that is a  polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate. The &quot;minimum depth of undersaturation&quot;, sometimes called the &quot;saturation horizon&quot;, is the shallowest depth at which a body of water is an undersaturated solution of a named solute." label="MinimumDepthOfCalciteUndersaturationInSeaWater" title="Minimum Depth of Calcite Undersaturation in Sea Water" uid="minimum_depth_of_calcite_undersaturation_in_sea_water" units="m"/>
<item description="&quot;Minus one times&quot; means that the quantity described takes the opposite sign convention  to that for the quantity which has the same standard name apart from this phrase, i.e. the two quantities differ from one another by a factor of -1. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;longwave&quot; means longwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="MinusOneTimesSurfaceUpwellingLongwaveFluxInAir" title="Minus One Times Surface Upwelling Longwave Flux in Air" uid="minus_one_times_surface_upwelling_longwave_flux_in_air" units="W m-2"/>
<item description="&quot;Minus one times&quot; means that the quantity described takes the opposite sign convention  to that for the quantity which has the same standard name apart from this phrase, i.e. the two quantities differ from one another by a factor of -1. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;shortwave&quot; means shortwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="MinusOneTimesSurfaceUpwellingShortwaveFluxInAir" title="Minus One Times Surface Upwelling Shortwave Flux in Air" uid="minus_one_times_surface_upwelling_shortwave_flux_in_air" units="W m-2"/>
<item description="&quot;Minus one times&quot; means that the quantity described takes the opposite sign convention  to that for the quantity which has the same standard name apart from this phrase, i.e. the two quantities differ from one another by a factor of -1.  Shortwave means shortwave radiation. &quot;toa&quot; means top of atmosphere. The TOA outgoing shortwave flux is the reflected and scattered solar radiative flux i.e. the &quot;upwelling&quot; TOA shortwave flux, sometimes called the &quot;outgoing shortwave radiation&quot; or &quot;OSR&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="MinusOneTimesToaOutgoingShortwaveFlux" title="Minus One Times Toa Outgoing Shortwave Flux" uid="minus_one_times_toa_outgoing_shortwave_flux" units="W m-2"/>
<item description="The quantity minus_one_times_water_flux_into_sea_water_from_rivers is the quantity with standard name water_flux_into_sea_water_from_rivers multiplied by -1. &quot;Water&quot; means water in all phases. The water flux or volume transport into sea water from rivers is the inflow to the ocean, often applied to the surface in ocean models. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="MinusOneTimesWaterFluxIntoSeaWaterFromRivers" title="Minus One Times Water Flux Into Sea Water From Rivers" uid="minus_one_times_water_flux_into_sea_water_from_rivers" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  &quot;Miscellaneous living matter&quot; means all those parts of living vegetation that are not leaf, wood, root or other separately named components." label="MiscellaneousLivingMatterCarbonContent" title="Miscellaneous Living Matter Carbon Content" uid="miscellaneous_living_matter_carbon_content" units="kg m-2"/>
<item description="Model level number should be understood as equivalent to layer number." label="ModelLevelNumber" title="Model Level Number" uid="model_level_number" units="1"/>
<item description="The ocean mixed layer is the upper part of the ocean, regarded as being well-mixed. The base of the mixed layer defined by temperature, sigma, sigma_theta or vertical diffusivity is the level at which the quantity indicated differs from its surface value by a certain amount. The amount by which the quantity differs can be specified by a scalar coordinate variable. The quantity model_level_number_at_base_of_ocean_mixed_layer_defined_by_sigma_theta is sometimes referred to as the &quot;bowl index&quot;." label="ModelLevelNumberAtBaseOfOceanMixedLayerDefinedBySigmaTheta" title="Model Level Number At Base of Ocean Mixed Layer Defined by Sigma Theta" uid="model_level_number_at_base_of_ocean_mixed_layer_defined_by_sigma_theta" units="1"/>
<item description="cloud_base refers to the base of the lowest cloud. Model level number should be understood as equivalent to layer number. Convective cloud is that produced by the convection schemes in an atmosphere model." label="ModelLevelNumberAtConvectiveCloudBase" title="Model Level Number At Convective Cloud Base" uid="model_level_number_at_convective_cloud_base" units="1"/>
<item description="cloud_top refers to the top of the highest cloud. Model level number should be understood as equivalent to layer number. Convective cloud is that produced by the convection schemes in an atmosphere model." label="ModelLevelNumberAtConvectiveCloudTop" title="Model Level Number At Convective Cloud Top" uid="model_level_number_at_convective_cloud_top" units="1"/>
<item description="The quantity with standard name model_level_number_at_sea_floor is the depth of the ocean expressed in model levels. This could be a non-integer value because some ocean models use partial cells close to the sea floor.  For example, if this field were 23.4 at some location, it would mean the water column at that point comprised 23 full model levels plus 40% occupancy of the lowest (24th) gridcell." label="ModelLevelNumberAtSeaFloor" title="Model Level Number At Sea Floor" uid="model_level_number_at_sea_floor" units="1"/>
<item description="Model level number should be understood as equivalent to layer number." label="ModelLevelNumberAtTopOfAtmosphereBoundaryLayer" title="Model Level Number At Top of Atmosphere Boundary Layer" uid="model_level_number_at_top_of_atmosphere_boundary_layer" units="1"/>
<item description="&quot;moisture&quot; means water in all phases contained in soil. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Quantities defined for a soil layer must have a vertical coordinate variable with boundaries indicating the extent of the layer(s)." label="MoistureContentOfSoilLayer" title="Moisture Content of Soil Layer" uid="moisture_content_of_soil_layer" units="kg m-2"/>
<item description="&quot;moisture&quot; means water in all phases contained in soil. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Quantities defined for a soil layer must have a vertical coordinate variable with boundaries indicating the extent of the layer(s). The field capacity of soil is the maximum content of water it can retain against gravitational drainage." label="MoistureContentOfSoilLayerAtFieldCapacity" title="Moisture Content of Soil Layer At Field Capacity" uid="moisture_content_of_soil_layer_at_field_capacity" units="kg m-2"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for acetic_acid is CH3COOH. The IUPAC name for acetic acid is ethanoic acid." label="MoleConcentrationOfAceticAcidInAir" title="Mole Concentration of Acetic Acid in Air" uid="mole_concentration_of_acetic_acid_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for aceto-nitrile is CH3CN. The IUPAC name for aceto-nitrile is ethanenitrile." label="MoleConcentrationOfAcetoNitrileInAir" title="Mole Concentration of Aceto Nitrile in Air" uid="mole_concentration_of_aceto_nitrile_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for alpha_hexachlorocyclohexane is C6H6Cl6." label="MoleConcentrationOfAlphaHexachlorocyclohexaneInAir" title="Mole Concentration of Alpha Hexachlorocyclohexane in Air" uid="mole_concentration_of_alpha_hexachlorocyclohexane_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for alpha_pinene is C10H16. The IUPAC name for alpha-pinene is (1S,5S)-2,6,6-trimethylbicyclo[3.1.1]hept-2-ene." label="MoleConcentrationOfAlphaPineneInAir" title="Mole Concentration of Alpha Pinene in Air" uid="mole_concentration_of_alpha_pinene_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ammonia is NH3." label="MoleConcentrationOfAmmoniaInAir" title="Mole Concentration of Ammonia in Air" uid="mole_concentration_of_ammonia_in_air" units="mol m-3"/>
<item description="Mole concentration means moles (amount of substance) per unit volume and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y." label="MoleConcentrationOfAmmoniumInSeaWater" title="Mole Concentration of Ammonium in Sea Water" uid="mole_concentration_of_ammonium_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituentsof A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Anthropogenic&quot; means influenced,caused, or created by human activity." label="MoleConcentrationOfAnthropogenicNmvocExpressedAsCarbonInAir" title="Mole Concentration of Anthropogenic Nmvoc Expressed As Carbon in Air" uid="mole_concentration_of_anthropogenic_nmvoc_expressed_as_carbon_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Aragonite is a mineral that is a polymorph of calcium carbonate. The chemical formula of aragonite is CaCO3. Standard names also exist for calcite, another polymorph of calcium carbonate." label="MoleConcentrationOfAragoniteExpressedAsCarbonInSeaWater" title="Mole Concentration of Aragonite Expressed As Carbon in Sea Water" uid="mole_concentration_of_aragonite_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Mole concentration at saturation means the mole concentration in a saturated solution.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Aragonite is a mineral that is a polymorph of calcium carbonate. The chemical formula of aragonite is CaCO3. Standard names also exist for calcite, another polymorph of calcium carbonate." label="MoleConcentrationOfAragoniteExpressedAsCarbonInSeaWaterAtSaturation" title="Mole Concentration of Aragonite Expressed As Carbon in Sea Water At Saturation" uid="mole_concentration_of_aragonite_expressed_as_carbon_in_sea_water_at_saturation" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for atomic bromine is Br." label="MoleConcentrationOfAtomicBromineInAir" title="Mole Concentration of Atomic Bromine in Air" uid="mole_concentration_of_atomic_bromine_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for atomic chlorine is Cl." label="MoleConcentrationOfAtomicChlorineInAir" title="Mole Concentration of Atomic Chlorine in Air" uid="mole_concentration_of_atomic_chlorine_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for atomic nitrogen is N." label="MoleConcentrationOfAtomicNitrogenInAir" title="Mole Concentration of Atomic Nitrogen in Air" uid="mole_concentration_of_atomic_nitrogen_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfBacteriaExpressedAsCarbonInSeaWater" title="Mole Concentration of Bacteria Expressed As Carbon in Sea Water" uid="mole_concentration_of_bacteria_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for benzene is C6H6.  Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="MoleConcentrationOfBenzeneInAir" title="Mole Concentration of Benzene in Air" uid="mole_concentration_of_benzene_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for beta_pinene is C10H16.  The IUPAC name for beta-pinene is (1S,5S)-6,6-dimethyl-2-methylenebicyclo[3.1.1]heptane." label="MoleConcentrationOfBetaPineneInAir" title="Mole Concentration of Beta Pinene in Air" uid="mole_concentration_of_beta_pinene_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Biogenic&quot; means influenced, caused, or created by natural processes." label="MoleConcentrationOfBiogenicNmvocExpressedAsCarbonInAir" title="Mole Concentration of Biogenic Nmvoc Expressed As Carbon in Air" uid="mole_concentration_of_biogenic_nmvoc_expressed_as_carbon_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for bromine chloride is BrCl." label="MoleConcentrationOfBromineChlorideInAir" title="Mole Concentration of Bromine Chloride in Air" uid="mole_concentration_of_bromine_chloride_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for bromine monoxide is BrO." label="MoleConcentrationOfBromineMonoxideInAir" title="Mole Concentration of Bromine Monoxide in Air" uid="mole_concentration_of_bromine_monoxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for bromine nitrate is BrONO2." label="MoleConcentrationOfBromineNitrateInAir" title="Mole Concentration of Bromine Nitrate in Air" uid="mole_concentration_of_bromine_nitrate_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Brox&quot; describes a family of chemical species consisting of inorganic bromine compounds with theexception of  hydrogen bromide (HBr) and bromine nitrate (BrONO2). &quot;Brox&quot; is theterm used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols.  Standard names that use the term &quot;inorganic_bromine&quot; are used for quantities that contain all inorganic bromine species including HCland ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard nameis calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfBroxExpressedAsBromineInAir" title="Mole Concentration of Brox Expressed As Bromine in Air" uid="mole_concentration_of_brox_expressed_as_bromine_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species." label="MoleConcentrationOfButaneInAir" title="Mole Concentration of Butane in Air" uid="mole_concentration_of_butane_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. 'Calcareous phytoplankton' are phytoplankton that produce calcite. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. Calcite is a mineral that is a polymorphof calcium carbonate. The chemical formula of calcite is CaCO3. Standard names also existfor aragonite, another polymorph of calcium carbonate." label="MoleConcentrationOfCalcareousPhytoplanktonExpressedAsCarbonInSeaWater" title="Mole Concentration of Calcareous Phytoplankton Expressed As Carbon in Sea Water" uid="mole_concentration_of_calcareous_phytoplankton_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate." label="MoleConcentrationOfCalciteExpressedAsCarbonInSeaWater" title="Mole Concentration of Calcite Expressed As Carbon in Sea Water" uid="mole_concentration_of_calcite_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Mole concentration at saturation means the mole concentration in a saturated solution.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate." label="MoleConcentrationOfCalciteExpressedAsCarbonInSeaWaterAtSaturation" title="Mole Concentration of Calcite Expressed As Carbon in Sea Water At Saturation" uid="mole_concentration_of_calcite_expressed_as_carbon_in_sea_water_at_saturation" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for carbon dioxide is CO2." label="MoleConcentrationOfCarbonDioxideInAir" title="Mole Concentration of Carbon Dioxide in Air" uid="mole_concentration_of_carbon_dioxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of carbon monoxide is CO." label="MoleConcentrationOfCarbonMonoxideInAir" title="Mole Concentration of Carbon Monoxide in Air" uid="mole_concentration_of_carbon_monoxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of carbon tetrachloride is CCl4." label="MoleConcentrationOfCarbonTetrachlorideInAir" title="Mole Concentration of Carbon Tetrachloride in Air" uid="mole_concentration_of_carbon_tetrachloride_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. In ocean biogeochemistry models, an &quot;abiotic analogue&quot; is used to simulate the effect on a modelled variable when biological effects on ocean carbon concentration and alkalinity are ignored. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The chemical formula of the carbonate anion is CO3 with an electrical charge of minus two." label="MoleConcentrationOfCarbonateAbioticAnalogueExpressedAsCarbonInSeaWater" title="Mole Concentration of Carbonate Abiotic Analogue Expressed As Carbon in Sea Water" uid="mole_concentration_of_carbonate_abiotic_analogue_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The chemical formula of the carbonate anion is CO3 with a charge of minus two." label="MoleConcentrationOfCarbonateExpressedAsCarbonInSeaWater" title="Mole Concentration of Carbonate Expressed As Carbon in Sea Water" uid="mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. In ocean biogeochemistry models, a &quot;natural analogue&quot; is used to simulate the effect on a modelled variable of imposing preindustrial atmospheric carbon dioxide concentrations, even when the model as a whole may be subjected to varying forcings. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The chemical formula of the carbonate anion is CO3 with an electrical charge of minus two." label="MoleConcentrationOfCarbonateNaturalAnalogueExpressedAsCarbonInSeaWater" title="Mole Concentration of Carbonate Natural Analogue Expressed As Carbon in Sea Water" uid="mole_concentration_of_carbonate_natural_analogue_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC113 is CCl2FCClF2. The IUPAC name for CFC113 is 1,1,2-trichloro-1,2,2-trifluoro-ethane." label="MoleConcentrationOfCfc113InAir" title="Mole Concentration of Cfc113 in Air" uid="mole_concentration_of_cfc113_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC113a CCl3CF3.  The IUPAC name for CFC113a is 1,1,1-trichloro-2,2,2-trifluoro-ethane." label="MoleConcentrationOfCfc113aInAir" title="Mole Concentration of Cfc113a in Air" uid="mole_concentration_of_cfc113a_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC114 is CClF2CClF2. The IUPAC name for CFC114 is 1,2-dichloro-1,1,2,2-tetrafluoro-ethane." label="MoleConcentrationOfCfc114InAir" title="Mole Concentration of Cfc114 in Air" uid="mole_concentration_of_cfc114_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC115 is CClF2CF3. The IUPAC name for CFC115 is 1-chloro-1,1,2,2,2-pentafluoro-ethane." label="MoleConcentrationOfCfc115InAir" title="Mole Concentration of Cfc115 in Air" uid="mole_concentration_of_cfc115_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="MoleConcentrationOfCfc11InAir" title="Mole Concentration of Cfc11 in Air" uid="mole_concentration_of_cfc11_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The chemical formula of CFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="MoleConcentrationOfCfc11InSeaWater" title="Mole Concentration of Cfc11 in Sea Water" uid="mole_concentration_of_cfc11_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for CFC12 is CF2Cl2.  The IUPAC name for CFC12 is dichloro-difluoro-methane." label="MoleConcentrationOfCfc12InAir" title="Mole Concentration of Cfc12 in Air" uid="mole_concentration_of_cfc12_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The chemical formula for CFC12 is CF2Cl2. The IUPAC name for CFC12 is dichloro-difluoro-methane." label="MoleConcentrationOfCfc12InSeaWater" title="Mole Concentration of Cfc12 in Sea Water" uid="mole_concentration_of_cfc12_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for chlorine dioxide is OClO." label="MoleConcentrationOfChlorineDioxideInAir" title="Mole Concentration of Chlorine Dioxide in Air" uid="mole_concentration_of_chlorine_dioxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for chlorine monoxide is ClO." label="MoleConcentrationOfChlorineMonoxideInAir" title="Mole Concentration of Chlorine Monoxide in Air" uid="mole_concentration_of_chlorine_monoxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for chlorine nitrate is ClONO2." label="MoleConcentrationOfChlorineNitrateInAir" title="Mole Concentration of Chlorine Nitrate in Air" uid="mole_concentration_of_chlorine_nitrate_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Clox&quot;describes a family of chemical species consisting of inorganic chlorine compounds with theexception of  hydrogen chloride (HCl) and chlorine nitrate (ClONO2). &quot;Clox&quot; is the term used in standard names for all species belonging to the family that are representedwithin a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, byusing a comment attribute. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasaltand other aerosols.   Standard names that use the term &quot;inorganic_chlorine&quot; are used for quantities that contain all inorganic chlorine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculatedsolely with respect to the B contained in A, neglecting all other chemical constituents ofA." label="MoleConcentrationOfCloxExpressedAsChlorineInAir" title="Mole Concentration of Clox Expressed As Chlorine in Air" uid="mole_concentration_of_clox_expressed_as_chlorine_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Diatoms are single-celled phytoplankton with an external skeleton made of silica.Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MoleConcentrationOfDiatomsExpressedAsCarbonInSeaWater" title="Mole Concentration of Diatoms Expressed As Carbon in Sea Water" uid="mole_concentration_of_diatoms_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated in terms of B alone, neglecting all other chemical constituents of A." label="MoleConcentrationOfDiatomsExpressedAsNitrogenInSeaWater" title="Mole Concentration of Diatoms Expressed As Nitrogen in Sea Water" uid="mole_concentration_of_diatoms_expressed_as_nitrogen_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. In ocean modelling, diazotrophs are phytoplankton of the phylum cyanobacteria distinct from other phytoplankton groups in their ability to fix nitrogen gas in addition to nitrate and ammonium. Phytoplankton are autotrophic prokaryotic or eukaryotic organisms that live near the water surface where there is sufficient light to support photosynthesis." label="MoleConcentrationOfDiazotrophsExpressedAsCarbonInSeaWater" title="Mole Concentration of Diazotrophs Expressed As Carbon in Sea Water" uid="mole_concentration_of_diazotrophs_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for dichlorine peroxide is Cl2O2." label="MoleConcentrationOfDichlorinePeroxideInAir" title="Mole Concentration of Dichlorine Peroxide in Air" uid="mole_concentration_of_dichlorine_peroxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for dimethyl sulfide is (CH3)2S.  Dimethyl sulfide is sometimes referred to as DMS." label="MoleConcentrationOfDimethylSulfideInAir" title="Mole Concentration of Dimethyl Sulfide in Air" uid="mole_concentration_of_dimethyl_sulfide_in_air" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for dimethyl sulfide is (CH3)2S.  Dimethyl sulfide is sometimes referred to as DMS." label="MoleConcentrationOfDimethylSulfideInSeaWater" title="Mole Concentration of Dimethyl Sulfide in Sea Water" uid="mole_concentration_of_dimethyl_sulfide_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for dinitrogen pentoxide is N2O5." label="MoleConcentrationOfDinitrogenPentoxideInAir" title="Mole Concentration of Dinitrogen Pentoxide in Air" uid="mole_concentration_of_dinitrogen_pentoxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Dissolved inorganic carbon&quot; describes a family of chemical species in solution, including carbon dioxide, carbonic acid and the carbonate and bicarbonate anions. &quot;Dissolved inorganic carbon&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Carbon13 is a stable isotope of carbon having six protons and seven neutrons." label="MoleConcentrationOfDissolvedInorganicCarbon13InSeaWater" title="Mole Concentration of Dissolved Inorganic Carbon13 in Sea Water" uid="mole_concentration_of_dissolved_inorganic_carbon13_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Dissolved inorganic carbon&quot; describes a family of chemical species in solution, including carbon dioxide, carbonic acid and the carbonate and bicarbonate anions. &quot;Dissolved inorganic carbon&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Carbon14 is a radioactive isotope of carbon having six protons and eight neutrons, used in radiocarbon dating." label="MoleConcentrationOfDissolvedInorganicCarbon14InSeaWater" title="Mole Concentration of Dissolved Inorganic Carbon14 in Sea Water" uid="mole_concentration_of_dissolved_inorganic_carbon14_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. In ocean biogeochemistry models, an &quot;abiotic analogue&quot; is used to simulate the effect on a modelled variable when biological effects on ocean carbon concentration and alkalinity are ignored. &quot;Dissolved inorganic carbon&quot; describes a family of chemical species in solution, including carbon dioxide, carbonic acid and the carbonate and bicarbonate anions. &quot;Dissolved inorganic carbon&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="MoleConcentrationOfDissolvedInorganicCarbonAbioticAnalogueInSeaWater" title="Mole Concentration of Dissolved Inorganic Carbon Abiotic Analogue in Sea Water" uid="mole_concentration_of_dissolved_inorganic_carbon_abiotic_analogue_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Dissolved inorganic carbon&quot; describes a family of chemical species in solution, including carbon dioxide, carbonic acid and the carbonate and bicarbonate anions. &quot;Dissolved inorganic carbon&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the speciesrepresented, for example, by using a comment attribute." label="MoleConcentrationOfDissolvedInorganicCarbonInSeaWater" title="Mole Concentration of Dissolved Inorganic Carbon in Sea Water" uid="mole_concentration_of_dissolved_inorganic_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. In ocean biogeochemistry models, a &quot;natural analogue&quot; is used to simulate the effect on a modelled variable of imposing preindustrial atmospheric carbon dioxide concentrations, even when the model as a whole may be subjected to varying forcings. &quot;Dissolved inorganic carbon&quot; describes a family of chemical species in solution, including carbon dioxide, carbonic acid and the carbonate and bicarbonate anions. &quot;Dissolved inorganic carbon&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="MoleConcentrationOfDissolvedInorganicCarbonNaturalAnalogueInSeaWater" title="Mole Concentration of Dissolved Inorganic Carbon Natural Analogue in Sea Water" uid="mole_concentration_of_dissolved_inorganic_carbon_natural_analogue_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Dissolved inorganic phosphorus&quot; means phosphate ions in solution." label="MoleConcentrationOfDissolvedInorganicPhosphorusInSeaWater" title="Mole Concentration of Dissolved Inorganic Phosphorus in Sea Water" uid="mole_concentration_of_dissolved_inorganic_phosphorus_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Dissolved inorganic silicon&quot; means silicate ions in solution." label="MoleConcentrationOfDissolvedInorganicSiliconInSeaWater" title="Mole Concentration of Dissolved Inorganic Silicon in Sea Water" uid="mole_concentration_of_dissolved_inorganic_silicon_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'." label="MoleConcentrationOfDissolvedIronInSeaWater" title="Mole Concentration of Dissolved Iron in Sea Water" uid="mole_concentration_of_dissolved_iron_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'." label="MoleConcentrationOfDissolvedMolecularOxygenInSeaWater" title="Mole Concentration of Dissolved Molecular Oxygen in Sea Water" uid="mole_concentration_of_dissolved_molecular_oxygen_in_sea_water" units="mol m-3"/>
<item description="&quot;Mole concentration at saturation&quot; means the mole concentration in a saturated solution. Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;." label="MoleConcentrationOfDissolvedMolecularOxygenInSeaWaterAtSaturation" title="Mole Concentration of Dissolved Molecular Oxygen in Sea Water At Saturation" uid="mole_concentration_of_dissolved_molecular_oxygen_in_sea_water_at_saturation" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The concentration of any chemical species, whether particulate or dissolved, may vary with depth in the ocean.  A depth profile may go through one or more local minima in concentration. The mole_concentration_of_molecular_oxygen_in_sea_water_at_shallowest_local_minimum_in_vertical_profile is the mole concentration of oxygen at the local minimum in the concentration profile that occurs closest to the sea surface." label="MoleConcentrationOfDissolvedMolecularOxygenInSeaWaterAtShallowestLocalMinimumInVerticalProfile" title="Mole Concentration of Dissolved Molecular Oxygen in Sea Water At Shallowest Local Minimum in Vertical Profile" uid="mole_concentration_of_dissolved_molecular_oxygen_in_sea_water_at_shallowest_local_minimum_in_vertical_profile" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where Xis a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Organic carbon describes a family of chemical species and is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a completedescription of the species represented, for example, by using a comment attribute." label="MoleConcentrationOfDissolvedOrganicCarbonInSeaWater" title="Mole Concentration of Dissolved Organic Carbon in Sea Water" uid="mole_concentration_of_dissolved_organic_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes.There are standard names for the alkane group as well as for some of the individual species." label="MoleConcentrationOfEthaneInAir" title="Mole Concentration of Ethane in Air" uid="mole_concentration_of_ethane_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethanol is C2H5OH." label="MoleConcentrationOfEthanolInAir" title="Mole Concentration of Ethanol in Air" uid="mole_concentration_of_ethanol_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes.There are standard names for the alkene group as well as for some of the individual species." label="MoleConcentrationOfEtheneInAir" title="Mole Concentration of Ethene in Air" uid="mole_concentration_of_ethene_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ethyne is HC2H.  Ethyne is the IUPAC name for this species, which is also commonlyknown as acetylene." label="MoleConcentrationOfEthyneInAir" title="Mole Concentration of Ethyne in Air" uid="mole_concentration_of_ethyne_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="MoleConcentrationOfFormaldehydeInAir" title="Mole Concentration of Formaldehyde in Air" uid="mole_concentration_of_formaldehyde_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for formic acid is HCOOH.  The IUPAC name for formic acid is methanoic acid." label="MoleConcentrationOfFormicAcidInAir" title="Mole Concentration of Formic Acid in Air" uid="mole_concentration_of_formic_acid_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s)in a salt or to other atom(s) in a molecule." label="MoleConcentrationOfGaseousDivalentMercuryInAir" title="Mole Concentration of Gaseous Divalent Mercury in Air" uid="mole_concentration_of_gaseous_divalent_mercury_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for mercury is Hg." label="MoleConcentrationOfGaseousElementalMercuryInAir" title="Mole Concentration of Gaseous Elemental Mercury in Air" uid="mole_concentration_of_gaseous_elemental_mercury_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halon1202 is CBr2F2. The IUPAC name for halon1202 is dibromo-difluoro-methane." label="MoleConcentrationOfHalon1202InAir" title="Mole Concentration of Halon1202 in Air" uid="mole_concentration_of_halon1202_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halon1211 is CBrClF2. The IUPAC name for halon1211 is bromo-chloro-difluoro-methane." label="MoleConcentrationOfHalon1211InAir" title="Mole Concentration of Halon1211 in Air" uid="mole_concentration_of_halon1211_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halon1301 is CBrF3. The IUPAC name for halon1301 is bromo-trifluoro-methane." label="MoleConcentrationOfHalon1301InAir" title="Mole Concentration of Halon1301 in Air" uid="mole_concentration_of_halon1301_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for halo2402 is C2Br2F4. The IUPAC name for halon2402 is 1,2-dibromo-1,1,2,2-tetrafluoro-ethane." label="MoleConcentrationOfHalon2402InAir" title="Mole Concentration of Halon2402 in Air" uid="mole_concentration_of_halon2402_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hcc140a is CH3CCl3. The IUPAC name for hcc140a is 1,1,1-trichloro-ethane." label="MoleConcentrationOfHcc140aInAir" title="Mole Concentration of Hcc140a in Air" uid="mole_concentration_of_hcc140a_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for HCFC141b is CH3CCl2F. The IUPAC name for HCFC141b is 1,1-dichloro-1-fluoroethane." label="MoleConcentrationOfHcfc141bInAir" title="Mole Concentration of Hcfc141b in Air" uid="mole_concentration_of_hcfc141b_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for HCFC142b is CH3CClF2. The IUPAC name for HCFC142b is 1-chloro-1,1-difluoroethane." label="MoleConcentrationOfHcfc142bInAir" title="Mole Concentration of Hcfc142b in Air" uid="mole_concentration_of_hcfc142b_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for HCFC22 is CHClF2.  The IUPAC name for HCFC22 is chloro-difluoro-methane." label="MoleConcentrationOfHcfc22InAir" title="Mole Concentration of Hcfc22 in Air" uid="mole_concentration_of_hcfc22_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hexachlorobiphenyl is C12H4Cl6.  This structure of this species consists of two linked benzene rings, each of which is additionally bonded to three chlorine atoms." label="MoleConcentrationOfHexachlorobiphenylInAir" title="Mole Concentration of Hexachlorobiphenyl in Air" uid="mole_concentration_of_hexachlorobiphenyl_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;HOx&quot; means a combination of two radical species containing hydrogen and oxygen: OH and HO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfHoxExpressedAsHydrogenInAir" title="Mole Concentration of Hox Expressed As Hydrogen in Air" uid="mole_concentration_of_hox_expressed_as_hydrogen_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen bromide is HBr." label="MoleConcentrationOfHydrogenBromideInAir" title="Mole Concentration of Hydrogen Bromide in Air" uid="mole_concentration_of_hydrogen_bromide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen chloride is HCl." label="MoleConcentrationOfHydrogenChlorideInAir" title="Mole Concentration of Hydrogen Chloride in Air" uid="mole_concentration_of_hydrogen_chloride_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen cyanide is HCN." label="MoleConcentrationOfHydrogenCyanideInAir" title="Mole Concentration of Hydrogen Cyanide in Air" uid="mole_concentration_of_hydrogen_cyanide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hydrogen peroxide is H2O2." label="MoleConcentrationOfHydrogenPeroxideInAir" title="Mole Concentration of Hydrogen Peroxide in Air" uid="mole_concentration_of_hydrogen_peroxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for the hydroperoxyl radical is HO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MoleConcentrationOfHydroperoxylRadicalInAir" title="Mole Concentration of Hydroperoxyl Radical in Air" uid="mole_concentration_of_hydroperoxyl_radical_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for the hydroxyl radical is OH. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MoleConcentrationOfHydroxylRadicalInAir" title="Mole Concentration of Hydroxyl Radical in Air" uid="mole_concentration_of_hydroxyl_radical_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hypobromous acid is HOBr." label="MoleConcentrationOfHypobromousAcidInAir" title="Mole Concentration of Hypobromous Acid in Air" uid="mole_concentration_of_hypobromous_acid_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for hypochlorous acid is HOCl." label="MoleConcentrationOfHypochlorousAcidInAir" title="Mole Concentration of Hypochlorous Acid in Air" uid="mole_concentration_of_hypochlorous_acid_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols. &quot;Inorganic bromine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;brox&quot; are used for quantities that contain all inorganic bromine species except HBr and BrONO2." label="MoleConcentrationOfInorganicBromineInAir" title="Mole Concentration of Inorganic Bromine in Air" uid="mole_concentration_of_inorganic_bromine_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols. &quot;Inorganic chlorine&quot; is the term used in standard names for all species belonging to the family that arerepresented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;clox&quot;are used for quantities that contain all inorganic chlorine species except HCl and ClONO2." label="MoleConcentrationOfInorganicChlorineInAir" title="Mole Concentration of Inorganic Chlorine in Air" uid="mole_concentration_of_inorganic_chlorine_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for isoprene is CH2=C(CH3)CH=CH2. The IUPAC name for isoprene is 2-methyl-buta-1,3-diene. Isoprene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="MoleConcentrationOfIsopreneInAir" title="Mole Concentration of Isoprene in Air" uid="mole_concentration_of_isoprene_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl hydroperoxide is CH3OOH." label="MoleConcentrationOfLimoneneInAir" title="Mole Concentration of Limonene in Air" uid="mole_concentration_of_limonene_in_air" units="mol m-3"/>
<item description="Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where Xis a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Mesozooplankton are zooplankton ranging between 20 micrometers and 200 micrometers in size." label="MoleConcentrationOfMesozooplanktonExpressedAsCarbonInSeaWater" title="Mole Concentration of Mesozooplankton Expressed As Carbon in Sea Water" uid="mole_concentration_of_mesozooplankton_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated in terms of B alone, neglecting all other chemical constituents of A." label="MoleConcentrationOfMesozooplanktonExpressedAsNitrogenInSeaWater" title="Mole Concentration of Mesozooplankton Expressed As Nitrogen in Sea Water" uid="mole_concentration_of_mesozooplankton_expressed_as_nitrogen_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species." label="MoleConcentrationOfMethaneInAir" title="Mole Concentration of Methane in Air" uid="mole_concentration_of_methane_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methanol is CH3OH." label="MoleConcentrationOfMethanolInAir" title="Mole Concentration of Methanol in Air" uid="mole_concentration_of_methanol_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl bromide is CH3Br. The IUPAC name for methyl bromide is bromomethane." label="MoleConcentrationOfMethylBromideInAir" title="Mole Concentration of Methyl Bromide in Air" uid="mole_concentration_of_methyl_bromide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl chloride is CH3Cl. The IUPAC name for methyl chloride is chloromethane." label="MoleConcentrationOfMethylChlorideInAir" title="Mole Concentration of Methyl Chloride in Air" uid="mole_concentration_of_methyl_chloride_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl hydroperoxide is CH3OOH." label="MoleConcentrationOfMethylHydroperoxideInAir" title="Mole Concentration of Methyl Hydroperoxide in Air" uid="mole_concentration_of_methyl_hydroperoxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for methyl_peroxy_radical is CH3O2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MoleConcentrationOfMethylPeroxyRadicalInAir" title="Mole Concentration of Methyl Peroxy Radical in Air" uid="mole_concentration_of_methyl_peroxy_radical_in_air" units="mol m-3"/>
<item description="Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where Xis a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Microzooplankton are zooplankton of less than 20 micrometers in size." label="MoleConcentrationOfMicrozooplanktonExpressedAsCarbonInSeaWater" title="Mole Concentration of Microzooplankton Expressed As Carbon in Sea Water" uid="mole_concentration_of_microzooplankton_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated in terms of B alone, neglecting all other chemical constituents of A." label="MoleConcentrationOfMicrozooplanktonExpressedAsNitrogenInSeaWater" title="Mole Concentration of Microzooplankton Expressed As Nitrogen in Sea Water" uid="mole_concentration_of_microzooplankton_expressed_as_nitrogen_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. 'Miscellaneous phytoplankton' are all those phytoplankton that are not diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton or other seperately named components of the phytoplankton population. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MoleConcentrationOfMiscellaneousPhytoplanktonExpressedAsCarbonInSeaWater" title="Mole Concentration of Miscellaneous Phytoplankton Expressed As Carbon in Sea Water" uid="mole_concentration_of_miscellaneous_phytoplankton_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where Xis a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. 'Miscellaneous zooplankton' are all those zooplankton that are not mesozooplankton, microzooplankton or other seperately named components of the zooplankton population." label="MoleConcentrationOfMiscellaneousZooplanktonExpressedAsCarbonInSeaWater" title="Mole Concentration of Miscellaneous Zooplankton Expressed As Carbon in Sea Water" uid="mole_concentration_of_miscellaneous_zooplankton_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for molecular hydrogen is H2." label="MoleConcentrationOfMolecularHydrogenInAir" title="Mole Concentration of Molecular Hydrogen in Air" uid="mole_concentration_of_molecular_hydrogen_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for the nitrate anion is NO3-. The chemical formula for the nitrite anion is NO2-." label="MoleConcentrationOfNitrateAndNitriteInSeaWater" title="Mole Concentration of Nitrate And Nitrite in Sea Water" uid="mole_concentration_of_nitrate_and_nitrite_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means moles (amount of substance) per unit volume and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y." label="MoleConcentrationOfNitrateInSeaWater" title="Mole Concentration of Nitrate in Sea Water" uid="mole_concentration_of_nitrate_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MoleConcentrationOfNitrateRadicalInAir" title="Mole Concentration of Nitrate Radical in Air" uid="mole_concentration_of_nitrate_radical_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitric acid is HNO3." label="MoleConcentrationOfNitricAcidInAir" title="Mole Concentration of Nitric Acid in Air" uid="mole_concentration_of_nitric_acid_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The chemical formula for nitric acid is HNO3. Nitric acid trihydrate, sometimes referred to as NAT, is a stable crystalline substance consisting of three molecules of water to one molecule of nitric acid." label="MoleConcentrationOfNitricAcidTrihydrateAmbientAerosolParticlesInAir" title="Mole Concentration of Nitric Acid Trihydrate Ambient Aerosol Particles in Air" uid="mole_concentration_of_nitric_acid_trihydrate_ambient_aerosol_particles_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for the nitrite anion is NO2-." label="MoleConcentrationOfNitriteInSeaWater" title="Mole Concentration of Nitrite in Sea Water" uid="mole_concentration_of_nitrite_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrogen dioxide is NO2." label="MoleConcentrationOfNitrogenDioxideInAir" title="Mole Concentration of Nitrogen Dioxide in Air" uid="mole_concentration_of_nitrogen_dioxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrogen monoxide is NO." label="MoleConcentrationOfNitrogenMonoxideInAir" title="Mole Concentration of Nitrogen Monoxide in Air" uid="mole_concentration_of_nitrogen_monoxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrous acid is HNO2." label="MoleConcentrationOfNitrousAcidInAir" title="Mole Concentration of Nitrous Acid in Air" uid="mole_concentration_of_nitrous_acid_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for nitrous oxide is N2O." label="MoleConcentrationOfNitrousOxideInAir" title="Mole Concentration of Nitrous Oxide in Air" uid="mole_concentration_of_nitrous_oxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained inA, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="MoleConcentrationOfNmvocExpressedAsCarbonInAir" title="Mole Concentration of Nmvoc Expressed As Carbon in Air" uid="mole_concentration_of_nmvoc_expressed_as_carbon_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solelywith respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfNoxExpressedAsNitrogenInAir" title="Mole Concentration of Nox Expressed As Nitrogen in Air" uid="mole_concentration_of_nox_expressed_as_nitrogen_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2) , chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name iscalculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfNoyExpressedAsNitrogenInAir" title="Mole Concentration of Noy Expressed As Nitrogen in Air" uid="mole_concentration_of_noy_expressed_as_nitrogen_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Organic detritus are particles of debris from decaying plants and animals." label="MoleConcentrationOfOrganicDetritusExpressedAsCarbonInSeaWater" title="Mole Concentration of Organic Detritus Expressed As Carbon in Sea Water" uid="mole_concentration_of_organic_detritus_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Organic detritus are particles of debris from decaying plants and animals." label="MoleConcentrationOfOrganicDetritusExpressedAsNitrogenInSeaWater" title="Mole Concentration of Organic Detritus Expressed As Nitrogen in Sea Water" uid="mole_concentration_of_organic_detritus_expressed_as_nitrogen_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Organic detritus are particles of debris from decaying plants and animals." label="MoleConcentrationOfOrganicDetritusExpressedAsSiliconInSeaWater" title="Mole Concentration of Organic Detritus Expressed As Silicon in Sea Water" uid="mole_concentration_of_organic_detritus_expressed_as_silicon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for ozone is O3." label="MoleConcentrationOfOzoneInAir" title="Mole Concentration of Ozone in Air" uid="mole_concentration_of_ozone_in_air" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfParticulateMatterExpressedAsSiliconInSeaWater" title="Mole Concentration of Particulate Matter Expressed As Silicon in Sea Water" uid="mole_concentration_of_particulate_matter_expressed_as_silicon_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfParticulateOrganicMatterExpressedAsIronInSeaWater" title="Mole Concentration of Particulate Organic Matter Expressed As Iron in Sea Water" uid="mole_concentration_of_particulate_organic_matter_expressed_as_iron_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfParticulateOrganicMatterExpressedAsNitrogenInSeaWater" title="Mole Concentration of Particulate Organic Matter Expressed As Nitrogen in Sea Water" uid="mole_concentration_of_particulate_organic_matter_expressed_as_nitrogen_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfParticulateOrganicMatterExpressedAsPhosphorusInSeaWater" title="Mole Concentration of Particulate Organic Matter Expressed As Phosphorus in Sea Water" uid="mole_concentration_of_particulate_organic_matter_expressed_as_phosphorus_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for peroxyacetyl nitrate, sometimes referred to as PAN, is CH3COO2NO2.  The IUPAC namefor peroxyacetyl_nitrate is nitroethaneperoxoate." label="MoleConcentrationOfPeroxyacetylNitrateInAir" title="Mole Concentration of Peroxyacetyl Nitrate in Air" uid="mole_concentration_of_peroxyacetyl_nitrate_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for peroxynitric acid, sometimes referred to as PNA, is HO2NO2." label="MoleConcentrationOfPeroxynitricAcidInAir" title="Mole Concentration of Peroxynitric Acid in Air" uid="mole_concentration_of_peroxynitric_acid_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'." label="MoleConcentrationOfPhosphateInSeaWater" title="Mole Concentration of Phosphate in Sea Water" uid="mole_concentration_of_phosphate_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. Standard names also exist for the mole concentration of a number of components that make up the total phytoplankton population, such as diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton and miscellaneous phytoplankton." label="MoleConcentrationOfPhytoplanktonExpressedAsCarbonInSeaWater" title="Mole Concentration of Phytoplankton Expressed As Carbon in Sea Water" uid="mole_concentration_of_phytoplankton_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MoleConcentrationOfPhytoplanktonExpressedAsIronInSeaWater" title="Mole Concentration of Phytoplankton Expressed As Iron in Sea Water" uid="mole_concentration_of_phytoplankton_expressed_as_iron_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleConcentrationOfPhytoplanktonExpressedAsNitrogenInSeaWater" title="Mole Concentration of Phytoplankton Expressed As Nitrogen in Sea Water" uid="mole_concentration_of_phytoplankton_expressed_as_nitrogen_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MoleConcentrationOfPhytoplanktonExpressedAsPhosphorusInSeaWater" title="Mole Concentration of Phytoplankton Expressed As Phosphorus in Sea Water" uid="mole_concentration_of_phytoplankton_expressed_as_phosphorus_in_sea_water" units="mol m-3"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MoleConcentrationOfPhytoplanktonExpressedAsSiliconInSeaWater" title="Mole Concentration of Phytoplankton Expressed As Silicon in Sea Water" uid="mole_concentration_of_phytoplankton_expressed_as_silicon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Picophytoplankton are phytoplankton of less than 2 micrometers in size. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis." label="MoleConcentrationOfPicophytoplanktonExpressedAsCarbonInSeaWater" title="Mole Concentration of Picophytoplankton Expressed As Carbon in Sea Water" uid="mole_concentration_of_picophytoplankton_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MoleConcentrationOfPropaneInAir" title="Mole Concentration of Propane in Air" uid="mole_concentration_of_propane_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="MoleConcentrationOfPropeneInAir" title="Mole Concentration of Propene in Air" uid="mole_concentration_of_propene_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical symbol for radon is Rn." label="MoleConcentrationOfRadonInAir" title="Mole Concentration of Radon in Air" uid="mole_concentration_of_radon_in_air" units="mol m-3"/>
<item description="Mole concentration means moles (amount of substance) per unit volume and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y." label="MoleConcentrationOfSilicateInSeaWater" title="Mole Concentration of Silicate in Sea Water" uid="mole_concentration_of_silicate_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for sulfur dioxide is SO2." label="MoleConcentrationOfSulfurDioxideInAir" title="Mole Concentration of Sulfur Dioxide in Air" uid="mole_concentration_of_sulfur_dioxide_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The chemical formula of sulfur hexafluoride is SF6." label="MoleConcentrationOfSulfurHexafluorideInSeaWater" title="Mole Concentration of Sulfur Hexafluoride in Sea Water" uid="mole_concentration_of_sulfur_hexafluoride_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for toluene is C6H5CH3.  Toluene has the same structure as benzene, except that one ofthe hydrogen atoms is replaced by a methyl group.  The systematic name for toluene is methylbenzene." label="MoleConcentrationOfTolueneInAir" title="Mole Concentration of Toluene in Air" uid="mole_concentration_of_toluene_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'." label="MoleConcentrationOfWaterVaporInAir" title="Mole Concentration of Water Vapor in Air" uid="mole_concentration_of_water_vapor_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="MoleConcentrationOfXyleneInAir" title="Mole Concentration of Xylene in Air" uid="mole_concentration_of_xylene_in_air" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Standard names also exist for the mole concentration of a number of components that make up the total zooplankton population, such as mesozooplankton, microzooplankton andmiscellaneous zooplankton." label="MoleConcentrationOfZooplanktonExpressedAsCarbonInSeaWater" title="Mole Concentration of Zooplankton Expressed As Carbon in Sea Water" uid="mole_concentration_of_zooplankton_expressed_as_carbon_in_sea_water" units="mol m-3"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated in terms of B alone, neglecting all other chemical constituents of A. Standard names also exist for the mole concentration of a number of components that make up the total zooplankton population, such as mesozooplankton, and microzooplankton." label="MoleConcentrationOfZooplanktonExpressedAsNitrogenInSeaWater" title="Mole Concentration of Zooplankton Expressed As Nitrogen in Sea Water" uid="mole_concentration_of_zooplankton_expressed_as_nitrogen_in_sea_water" units="mol m-3"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;content_of_X_in_atmosphere_layer&quot; refers to the vertical integral between two specified levels in the atmosphere. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. For the mole content integrated from the surface to the top of the atmosphere, standard names including &quot;atmosphere_mole_content_of_X&quot; are used. The chemical formula for ozone is O3. &quot;mole_content_of_ozone_in_atmosphere_layer&quot; is usually measured in Dobson Units which are equivalent to 446.2 micromoles m-2. N.B. Data variables containing column content of ozone can be given the standard name of either equivalent_thickness_at_stp_of_atmosphere_ozone_content or atmosphere_mole_content_of_ozone. The latter name is recommended for consistency with mole content names for chemical species other than ozone." label="MoleContentOfOzoneInAtmosphereLayer" title="Mole Content of Ozone in Atmosphere Layer" uid="mole_content_of_ozone_in_atmosphere_layer" units="mol m-2"/>
<item description="Mole fraction is used in the construction &quot;mole_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The chemical formula for acetaldehyde is CH3CHO. The IUPAC name for acetaldehyde is ethanal." label="MoleFractionOfAcetaldehydeInAir" title="Mole Fraction of Acetaldehyde in Air" uid="mole_fraction_of_acetaldehyde_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for acetic_acid is CH3COOH. The IUPAC name for acetic acid is ethanoic acid." label="MoleFractionOfAceticAcidInAir" title="Mole Fraction of Acetic Acid in Air" uid="mole_fraction_of_acetic_acid_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for aceto-nitrile is CH3CN. The IUPAC name for aceto-nitrile is ethanenitrile." label="MoleFractionOfAcetoNitrileInAir" title="Mole Fraction of Aceto Nitrile in Air" uid="mole_fraction_of_aceto_nitrile_in_air" units="1"/>
<item description="Mole fraction is used in the construction &quot;mole_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. Acetone is an organic molecule with the chemical formula CH3CH3CO. The IUPAC name for acetone is propan-2-one. Acetone is a member of the group of organic compounds known as ketones. There are standard names for the ketone group as well as for some of the individual species." label="MoleFractionOfAcetoneInAir" title="Mole Fraction of Acetone in Air" uid="mole_fraction_of_acetone_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Aldehydes are organic compounds with a CHO group; &quot;aldehydes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for formaldehyde as the simplest member of the aldehydes group." label="MoleFractionOfAldehydesInAir" title="Mole Fraction of Aldehydes in Air" uid="mole_fraction_of_aldehydes_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Alkanes are saturated hydrocarbons, i.e. they do not contain any chemical double bonds. Alkanes contain only hydrogen and carbon combined in the general proportions C(n)H(2n+2); &quot;alkanes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkane species, e.g., methane and ethane." label="MoleFractionOfAlkanesInAir" title="Mole Fraction of Alkanes in Air" uid="mole_fraction_of_alkanes_in_air" units="1"/>
<item description="Mole fraction is used in the construction &quot;mole_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. Alkenes are unsaturated hydrocarbons as they contain chemical double bonds between adjacent carbon atoms. &quot;Hydrocarbon&quot; means a compound containing hydrogen and carbon. Alkenes contain only hydrogen and carbon combined in the general proportions C(n)H(2n); &quot;alkenes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkene species, e.g., ethene and propene." label="MoleFractionOfAlkenesInAir" title="Mole Fraction of Alkenes in Air" uid="mole_fraction_of_alkenes_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfAlphaHexachlorocyclohexaneInAir" title="Mole Fraction of Alpha Hexachlorocyclohexane in Air" uid="mole_fraction_of_alpha_hexachlorocyclohexane_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for alpha_pinene is C10H16. The IUPAC name for alpha-pinene is (1S,5S)-2,6,6-trimethylbicyclo[3.1.1]hept-2-ene." label="MoleFractionOfAlphaPineneInAir" title="Mole Fraction of Alpha Pinene in Air" uid="mole_fraction_of_alpha_pinene_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for ammonia is NH3." label="MoleFractionOfAmmoniaInAir" title="Mole Fraction of Ammonia in Air" uid="mole_fraction_of_ammonia_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity." label="MoleFractionOfAnthropogenicNmvocExpressedAsCarbonInAir" title="Mole Fraction of Anthropogenic Nmvoc Expressed As Carbon in Air" uid="mole_fraction_of_anthropogenic_nmvoc_expressed_as_carbon_in_air" units="1"/>
<item description="Mole fraction is used in the construction &quot;mole_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Artificial tracer&quot; means a passive atmospheric tracer that is used to study atmospheric transport and deposition. To specify the length of the tracer lifetime in the atmosphere, a scalar coordinate variable with the standard name of tracer_lifetime should be used." label="MoleFractionOfArtificialTracerWithFixedLifetimeInAir" title="Mole Fraction of Artificial Tracer With Fixed Lifetime in Air" uid="mole_fraction_of_artificial_tracer_with_fixed_lifetime_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical symbol of atomic bromine is Br." label="MoleFractionOfAtomicBromineInAir" title="Mole Fraction of Atomic Bromine in Air" uid="mole_fraction_of_atomic_bromine_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical symbol of atomic chlorine is Cl." label="MoleFractionOfAtomicChlorineInAir" title="Mole Fraction of Atomic Chlorine in Air" uid="mole_fraction_of_atomic_chlorine_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical symbol of atomic nitrogen is N." label="MoleFractionOfAtomicNitrogenInAir" title="Mole Fraction of Atomic Nitrogen in Air" uid="mole_fraction_of_atomic_nitrogen_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfBenzeneInAir" title="Mole Fraction of Benzene in Air" uid="mole_fraction_of_benzene_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for beta_pinene is C10H16.  The IUPAC name for beta-pinene is (1S,5S)-6,6-dimethyl-2-methylenebicyclo[3.1.1]heptane." label="MoleFractionOfBetaPineneInAir" title="Mole Fraction of Beta Pinene in Air" uid="mole_fraction_of_beta_pinene_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Biogenic&quot; means influenced, caused, or created by natural processes." label="MoleFractionOfBiogenicNmvocExpressedAsCarbonInAir" title="Mole Fraction of Biogenic Nmvoc Expressed As Carbon in Air" uid="mole_fraction_of_biogenic_nmvoc_expressed_as_carbon_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of bromine chloride is BrCl." label="MoleFractionOfBromineChlorideInAir" title="Mole Fraction of Bromine Chloride in Air" uid="mole_fraction_of_bromine_chloride_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of bromine monoxide is BrO." label="MoleFractionOfBromineMonoxideInAir" title="Mole Fraction of Bromine Monoxide in Air" uid="mole_fraction_of_bromine_monoxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y. The chemical formula of bromine nitrate is BrONO2." label="MoleFractionOfBromineNitrateInAir" title="Mole Fraction of Bromine Nitrate in Air" uid="mole_fraction_of_bromine_nitrate_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Brox&quot;  describes a family of chemical species consisting of inorganic bromine compounds withthe exception of  hydrogen bromide (HBr) and bromine nitrate (BrONO2). &quot;Brox&quot; isthe term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols.  Standard names that use the term &quot;inorganic_bromine&quot; are used for quantities that contain all inorganic bromine species includingHCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleFractionOfBroxExpressedAsBromineInAir" title="Mole Fraction of Brox Expressed As Bromine in Air" uid="mole_fraction_of_brox_expressed_as_bromine_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MoleFractionOfButaneInAir" title="Mole Fraction of Butane in Air" uid="mole_fraction_of_butane_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfCarbonDioxideInAir" title="Mole Fraction of Carbon Dioxide in Air" uid="mole_fraction_of_carbon_dioxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfCarbonMonoxideInAir" title="Mole Fraction of Carbon Monoxide in Air" uid="mole_fraction_of_carbon_monoxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of carbon tetrachloride is CCl4." label="MoleFractionOfCarbonTetrachlorideInAir" title="Mole Fraction of Carbon Tetrachloride in Air" uid="mole_fraction_of_carbon_tetrachloride_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of CFC113 is CCl2FCClF2.  The IUPAC name for CFC113 is 1,1,2-trichloro-1,2,2-trifluoro-ethane." label="MoleFractionOfCfc113InAir" title="Mole Fraction of Cfc113 in Air" uid="mole_fraction_of_cfc113_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of CFC113a CCl3CF3.  The IUPAC name for CFC113a is 1,1,1-trichloro-2,2,2-trifluoro-ethane." label="MoleFractionOfCfc113aInAir" title="Mole Fraction of Cfc113a in Air" uid="mole_fraction_of_cfc113a_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of CFC114 is CClF2CClF2.  The IUPAC name for CFC114 is 1,2-dichloro-1,1,2,2-tetrafluoro-ethane." label="MoleFractionOfCfc114InAir" title="Mole Fraction of Cfc114 in Air" uid="mole_fraction_of_cfc114_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of CFC115 is CClF2CF3.  The IUPAC name for CFC115 is 1-chloro-1,1,2,2,2-pentafluoro-ethane." label="MoleFractionOfCfc115InAir" title="Mole Fraction of Cfc115 in Air" uid="mole_fraction_of_cfc115_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of CFC11 is CFCl3.  The IUPAC name for CFC11 is trichloro-fluoro-methane." label="MoleFractionOfCfc11InAir" title="Mole Fraction of Cfc11 in Air" uid="mole_fraction_of_cfc11_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of CFC12 is CF2Cl2.  The IUPAC name for CFC12 is dichloro-difluoro-methane." label="MoleFractionOfCfc12InAir" title="Mole Fraction of Cfc12 in Air" uid="mole_fraction_of_cfc12_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of chlorine dioxide is OClO." label="MoleFractionOfChlorineDioxideInAir" title="Mole Fraction of Chlorine Dioxide in Air" uid="mole_fraction_of_chlorine_dioxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of chlorine monoxide is ClO." label="MoleFractionOfChlorineMonoxideInAir" title="Mole Fraction of Chlorine Monoxide in Air" uid="mole_fraction_of_chlorine_monoxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of chlorine nitrate is ClONO2." label="MoleFractionOfChlorineNitrateInAir" title="Mole Fraction of Chlorine Nitrate in Air" uid="mole_fraction_of_chlorine_nitrate_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Clox&quot; describes a family of chemical species consisting of inorganic chlorine compounds withthe exception of  hydrogen chloride (HCl) and chlorine nitrate (ClONO2). &quot;Clox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gasescontaining chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols.   Standard names that use the term &quot;inorganic_chlorine&quot; are used for quantities that contain all inorganic chlorine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleFractionOfCloxExpressedAsChlorineInAir" title="Mole Fraction of Clox Expressed As Chlorine in Air" uid="mole_fraction_of_clox_expressed_as_chlorine_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Dichlorine is the molecular form of elemental chlorine with the chemical formula Cl2." label="MoleFractionOfDichlorineInAir" title="Mole Fraction of Dichlorine in Air" uid="mole_fraction_of_dichlorine_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.   The chemical formula of dichlorine peroxide is Cl2O2." label="MoleFractionOfDichlorinePeroxideInAir" title="Mole Fraction of Dichlorine Peroxide in Air" uid="mole_fraction_of_dichlorine_peroxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfDimethylSulfideInAir" title="Mole Fraction of Dimethyl Sulfide in Air" uid="mole_fraction_of_dimethyl_sulfide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of dinitrogen pentoxide is N2O5." label="MoleFractionOfDinitrogenPentoxideInAir" title="Mole Fraction of Dinitrogen Pentoxide in Air" uid="mole_fraction_of_dinitrogen_pentoxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfEthaneInAir" title="Mole Fraction of Ethane in Air" uid="mole_fraction_of_ethane_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for ethanol is C2H5OH." label="MoleFractionOfEthanolInAir" title="Mole Fraction of Ethanol in Air" uid="mole_fraction_of_ethanol_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfEtheneInAir" title="Mole Fraction of Ethene in Air" uid="mole_fraction_of_ethene_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfEthyneInAir" title="Mole Fraction of Ethyne in Air" uid="mole_fraction_of_ethyne_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfFormaldehydeInAir" title="Mole Fraction of Formaldehyde in Air" uid="mole_fraction_of_formaldehyde_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for formic acid is HCOOH.  The IUPAC name for formic acid is methanoic acid." label="MoleFractionOfFormicAcidInAir" title="Mole Fraction of Formic Acid in Air" uid="mole_fraction_of_formic_acid_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s) in a salt or to other atom(s) in a molecule." label="MoleFractionOfGaseousDivalentMercuryInAir" title="Mole Fraction of Gaseous Divalent Mercury in Air" uid="mole_fraction_of_gaseous_divalent_mercury_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfGaseousElementalMercuryInAir" title="Mole Fraction of Gaseous Elemental Mercury in Air" uid="mole_fraction_of_gaseous_elemental_mercury_in_air" units="1"/>
<item description="Mole fraction is used in the construction &quot;mole_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The chemical formula for glyoxal is CHOCHO. The IUPAC name for glyoxal is ethanedial." label="MoleFractionOfGlyoxalInAir" title="Mole Fraction of Glyoxal in Air" uid="mole_fraction_of_glyoxal_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of  halon1202  is CBr2F2.  The IUPAC name for halon 1202 is dibromo-difluoro-methane." label="MoleFractionOfHalon1202InAir" title="Mole Fraction of Halon1202 in Air" uid="mole_fraction_of_halon1202_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of halon1211 is CBrClF2.  The IUPAC name for halon 1211 is bromo-chloro-difluoro-methane." label="MoleFractionOfHalon1211InAir" title="Mole Fraction of Halon1211 in Air" uid="mole_fraction_of_halon1211_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of halon1301 is CBrF3.  The IUPAC name for halon 1301 is bromo-trifluoro-methane." label="MoleFractionOfHalon1301InAir" title="Mole Fraction of Halon1301 in Air" uid="mole_fraction_of_halon1301_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of halon2402 is C2Br2F4.  The IUPAC name for halon 2402 is 1,2-dibromo-1,1,2,2-tetrafluoro-ethane." label="MoleFractionOfHalon2402InAir" title="Mole Fraction of Halon2402 in Air" uid="mole_fraction_of_halon2402_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for hcc140a is CH3CCl3. The IUPAC name for hcc140a is 1,1,1-trichloro-ethane." label="MoleFractionOfHcc140aInAir" title="Mole Fraction of Hcc140a in Air" uid="mole_fraction_of_hcc140a_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for HCFC141b is CH3CCl2F. The IUPAC name for HCFC141b is 1,1-dichloro-1-fluoroethane." label="MoleFractionOfHcfc141bInAir" title="Mole Fraction of Hcfc141b in Air" uid="mole_fraction_of_hcfc141b_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for HCFC142b is CH3CClF2. The IUPAC name for HCFC142b is 1-chloro-1,1-difluoroethane." label="MoleFractionOfHcfc142bInAir" title="Mole Fraction of Hcfc142b in Air" uid="mole_fraction_of_hcfc142b_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for HCFC22 is CHClF2.  The IUPAC name for HCFC22 is chloro-difluoro-methane." label="MoleFractionOfHcfc22InAir" title="Mole Fraction of Hcfc22 in Air" uid="mole_fraction_of_hcfc22_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfHexachlorobiphenylInAir" title="Mole Fraction of Hexachlorobiphenyl in Air" uid="mole_fraction_of_hexachlorobiphenyl_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;HOx&quot; means a combination of two radical species containing hydrogen and oxygen: OH and HO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleFractionOfHoxExpressedAsHydrogenInAir" title="Mole Fraction of Hox Expressed As Hydrogen in Air" uid="mole_fraction_of_hox_expressed_as_hydrogen_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of hydrogen bromide is HBr." label="MoleFractionOfHydrogenBromideInAir" title="Mole Fraction of Hydrogen Bromide in Air" uid="mole_fraction_of_hydrogen_bromide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of hydrogen chloride is HCl." label="MoleFractionOfHydrogenChlorideInAir" title="Mole Fraction of Hydrogen Chloride in Air" uid="mole_fraction_of_hydrogen_chloride_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of hydrogen cyanide is HCN." label="MoleFractionOfHydrogenCyanideInAir" title="Mole Fraction of Hydrogen Cyanide in Air" uid="mole_fraction_of_hydrogen_cyanide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of hydrogen peroxide is H202." label="MoleFractionOfHydrogenPeroxideInAir" title="Mole Fraction of Hydrogen Peroxide in Air" uid="mole_fraction_of_hydrogen_peroxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of hydrogen sulfide is H2S." label="MoleFractionOfHydrogenSulfideInAir" title="Mole Fraction of Hydrogen Sulfide in Air" uid="mole_fraction_of_hydrogen_sulfide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of hydroperoxyl radical is HO2." label="MoleFractionOfHydroperoxylRadicalInAir" title="Mole Fraction of Hydroperoxyl Radical in Air" uid="mole_fraction_of_hydroperoxyl_radical_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfHydroxylRadicalInAir" title="Mole Fraction of Hydroxyl Radical in Air" uid="mole_fraction_of_hydroxyl_radical_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of hypobromous acid is HOBr." label="MoleFractionOfHypobromousAcidInAir" title="Mole Fraction of Hypobromous Acid in Air" uid="mole_fraction_of_hypobromous_acid_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of hypochlorous acid is HOCl." label="MoleFractionOfHypochlorousAcidInAir" title="Mole Fraction of Hypochlorous Acid in Air" uid="mole_fraction_of_hypochlorous_acid_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of bromine containing source gases (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols. &quot;Inorganic bromine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;brox&quot; are used for quantities that contain all inorganic bromine species except HBr and BrONO2." label="MoleFractionOfInorganicBromineInAir" title="Mole Fraction of Inorganic Bromine in Air" uid="mole_fraction_of_inorganic_bromine_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  &quot;Inorganic chlorine&quot;,sometimes referred to as Cly, describes a family of chemical species which result from the degradation of chlorine-containing source gases (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as sea-salt and other aerosols.  mole_fraction_of_inorganic_chlorine is the sum of all species belonging to the family that are represented within a given model." label="MoleFractionOfInorganicChlorineInAir" title="Mole Fraction of Inorganic Chlorine in Air" uid="mole_fraction_of_inorganic_chlorine_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfIsopreneInAir" title="Mole Fraction of Isoprene in Air" uid="mole_fraction_of_isoprene_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for limonene is C10H16. The IUPAC name for limonene is 1-methyl-4-prop-1-en-2-yl-cyclohexene. Limonene is a member of the group of hydrocarbons known as terpenes.  There arestandard names for the terpene group as well as for some of the individual species." label="MoleFractionOfLimoneneInAir" title="Mole Fraction of Limonene in Air" uid="mole_fraction_of_limonene_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfMethaneInAir" title="Mole Fraction of Methane in Air" uid="mole_fraction_of_methane_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for methanol is CH3OH." label="MoleFractionOfMethanolInAir" title="Mole Fraction of Methanol in Air" uid="mole_fraction_of_methanol_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Methylglyoxal is an organic molecule with the chemical formula CH3COCHO. It is also called pyruvaldehyde or 2-oxopropanal." label="MoleFractionOfMethlyglyoxalInAir" title="Mole Fraction of Methlyglyoxal in Air" uid="mole_fraction_of_methlyglyoxal_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of methyl bromide is CH3Br." label="MoleFractionOfMethylBromideInAir" title="Mole Fraction of Methyl Bromide in Air" uid="mole_fraction_of_methyl_bromide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of methyl chloride is CH3Cl." label="MoleFractionOfMethylChlorideInAir" title="Mole Fraction of Methyl Chloride in Air" uid="mole_fraction_of_methyl_chloride_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of methyl hydroperoxide is CH3OOH." label="MoleFractionOfMethylHydroperoxideInAir" title="Mole Fraction of Methyl Hydroperoxide in Air" uid="mole_fraction_of_methyl_hydroperoxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for methyl_peroxy_radical is CH3O2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MoleFractionOfMethylPeroxyRadicalInAir" title="Mole Fraction of Methyl Peroxy Radical in Air" uid="mole_fraction_of_methyl_peroxy_radical_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of molecular hydrogen is H2." label="MoleFractionOfMolecularHydrogenInAir" title="Mole Fraction of Molecular Hydrogen in Air" uid="mole_fraction_of_molecular_hydrogen_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="MoleFractionOfNitrateRadicalInAir" title="Mole Fraction of Nitrate Radical in Air" uid="mole_fraction_of_nitrate_radical_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfNitricAcidInAir" title="Mole Fraction of Nitric Acid in Air" uid="mole_fraction_of_nitric_acid_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The chemical formula for nitric acid is HNO3. Nitric acid trihydrate, sometimes referred to as NAT, is a stable crystalline substance consisting of three molecules of water to one molecule of nitric acid." label="MoleFractionOfNitricAcidTrihydrateAmbientAerosolParticlesInAir" title="Mole Fraction of Nitric Acid Trihydrate Ambient Aerosol Particles in Air" uid="mole_fraction_of_nitric_acid_trihydrate_ambient_aerosol_particles_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfNitrogenDioxideInAir" title="Mole Fraction of Nitrogen Dioxide in Air" uid="mole_fraction_of_nitrogen_dioxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfNitrogenMonoxideInAir" title="Mole Fraction of Nitrogen Monoxide in Air" uid="mole_fraction_of_nitrogen_monoxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalformula for nitrous acid is HNO2." label="MoleFractionOfNitrousAcidInAir" title="Mole Fraction of Nitrous Acid in Air" uid="mole_fraction_of_nitrous_acid_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.   The chemical formula of  nitrous oxide is N2O." label="MoleFractionOfNitrousOxideInAir" title="Mole Fraction of Nitrous Oxide in Air" uid="mole_fraction_of_nitrous_oxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="MoleFractionOfNmvocExpressedAsCarbonInAir" title="Mole Fraction of Nmvoc Expressed As Carbon in Air" uid="mole_fraction_of_nmvoc_expressed_as_carbon_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleFractionOfNoxExpressedAsNitrogenInAir" title="Mole Fraction of Nox Expressed As Nitrogen in Air" uid="mole_fraction_of_nox_expressed_as_nitrogen_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2) , chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase 'expressed_as' is used in the construction A_expressed_as_B, whereB is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleFractionOfNoyExpressedAsNitrogenInAir" title="Mole Fraction of Noy Expressed As Nitrogen in Air" uid="mole_fraction_of_noy_expressed_as_nitrogen_in_air" units="1"/>
<item description="Mole fraction is used in the construction &quot;mole_fraction_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. Organic nitrates are nitrogen-containing compounds having the general formula RONO2, where R is an alkyl (or organic) group; &quot;organic_nitrates&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="MoleFractionOfOrganicNitratesInAir" title="Mole Fraction of Organic Nitrates in Air" uid="mole_fraction_of_organic_nitrates_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfOzoneInAir" title="Mole Fraction of Ozone in Air" uid="mole_fraction_of_ozone_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfPeroxyacetylNitrateInAir" title="Mole Fraction of Peroxyacetyl Nitrate in Air" uid="mole_fraction_of_peroxyacetyl_nitrate_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of peroxynitric acid is HNO4." label="MoleFractionOfPeroxynitricAcidInAir" title="Mole Fraction of Peroxynitric Acid in Air" uid="mole_fraction_of_peroxynitric_acid_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfPropaneInAir" title="Mole Fraction of Propane in Air" uid="mole_fraction_of_propane_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfPropeneInAir" title="Mole Fraction of Propene in Air" uid="mole_fraction_of_propene_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemicalsymbol for radon is Rn." label="MoleFractionOfRadonInAir" title="Mole Fraction of Radon in Air" uid="mole_fraction_of_radon_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfSulfurDioxideInAir" title="Mole Fraction of Sulfur Dioxide in Air" uid="mole_fraction_of_sulfur_dioxide_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfTolueneInAir" title="Mole Fraction of Toluene in Air" uid="mole_fraction_of_toluene_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  The chemical formula of water vapor is H2O." label="MoleFractionOfWaterVaporInAir" title="Mole Fraction of Water Vapor in Air" uid="mole_fraction_of_water_vapor_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y." label="MoleFractionOfXyleneInAir" title="Mole Fraction of Xylene in Air" uid="mole_fraction_of_xylene_in_air" units="1"/>
<item description="Mole ratio is used in the construction mole_ratio_of_X_to_Y_in_medium, where X and Y are both material constituents of the medium.  &quot;Medium&quot; can take anyof the values given in the &quot;Small scale medium&quot; section of the standard name Guidelines document. &quot;ratio_of_X_to_Y&quot;  means X/Y.  The chemical formula for the nitrate anion is NO3-. The chemical formula of the phosphate anion is PO4 with a charge of minus three." label="MoleRatioOfNitrateToPhosphateInSeaWater" title="Mole Ratio of Nitrate To Phosphate in Sea Water" uid="mole_ratio_of_nitrate_to_phosphate_in_sea_water" units="1"/>
<item description="moles_of_X_per_unit_mass_inY is also called &quot;molality&quot; of X in Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The chemical formula of CFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="MolesOfCfc11PerUnitMassInSeaWater" title="Moles of Cfc11 Per Unit Mass in Sea Water" uid="moles_of_cfc11_per_unit_mass_in_sea_water" units="mol kg-1"/>
<item description="moles_of_X_per_unit_mass_inY is also called &quot;molality&quot; of X in Y, where X is a material constituent of Y." label="MolesOfNitrateAndNitritePerUnitMassInSeaWater" title="Moles of Nitrate And Nitrite Per Unit Mass in Sea Water" uid="moles_of_nitrate_and_nitrite_per_unit_mass_in_sea_water" units="mol kg-1"/>
<item description="moles_of_X_per_unit_mass_inY is also called &quot;molality&quot; of X in Y, where X is a material constituent of Y." label="MolesOfNitratePerUnitMassInSeaWater" title="Moles of Nitrate Per Unit Mass in Sea Water" uid="moles_of_nitrate_per_unit_mass_in_sea_water" units="mol kg-1"/>
<item description="moles_of_X_per_unit_mass_inY is also called &quot;molality&quot; of X in Y, where X is a material constituent of Y." label="MolesOfNitritePerUnitMassInSeaWater" title="Moles of Nitrite Per Unit Mass in Sea Water" uid="moles_of_nitrite_per_unit_mass_in_sea_water" units="mol kg-1"/>
<item description="moles_of_X_per_unit_mass_inY is also called &quot;molality&quot; of X in Y, where X is a material constituent of Y." label="MolesOfOxygenPerUnitMassInSeaWater" title="Moles of Oxygen Per Unit Mass in Sea Water" uid="moles_of_oxygen_per_unit_mass_in_sea_water" units="mol kg-1"/>
<item description="moles_of_X_per_unit_mass_inY is also called &quot;molality&quot; of X in Y, where X is a material constituent of Y." label="MolesOfPhosphatePerUnitMassInSeaWater" title="Moles of Phosphate Per Unit Mass in Sea Water" uid="moles_of_phosphate_per_unit_mass_in_sea_water" units="mol kg-1"/>
<item description="moles_of_X_per_unit_mass_inY is also called &quot;molality&quot; of X in Y, where X is a material constituent of Y." label="MolesOfSilicatePerUnitMassInSeaWater" title="Moles of Silicate Per Unit Mass in Sea Water" uid="moles_of_silicate_per_unit_mass_in_sea_water" units="mol kg-1"/>
<item description="&quot;longwave&quot; means longwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NetDownwardLongwaveFluxInAir" title="Net Downward Longwave Flux in Air" uid="net_downward_longwave_flux_in_air" units="W m-2"/>
<item description="A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;longwave&quot; means longwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NetDownwardLongwaveFluxInAirAssumingClearSky" title="Net Downward Longwave Flux in Air Assuming Clear Sky" uid="net_downward_longwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="Fluxes at the top_of_atmosphere_model differ from TOA fluxes only if the model TOA fluxes make some allowance for the atmosphere above the top of the model; if not, it is usual to give standard names with toa to the fluxes at the top of the model atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NetDownwardRadiativeFluxAtTopOfAtmosphereModel" title="Net Downward Radiative Flux At Top of Atmosphere Model" uid="net_downward_radiative_flux_at_top_of_atmosphere_model" units="W m-2"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  &quot;shortwave&quot; means shortwave radiation." label="NetDownwardShortwaveFluxAtSeaWaterSurface" title="Net Downward Shortwave Flux At Sea Water Surface" uid="net_downward_shortwave_flux_at_sea_water_surface" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NetDownwardShortwaveFluxInAir" title="Net Downward Shortwave Flux in Air" uid="net_downward_shortwave_flux_in_air" units="W m-2"/>
<item description="A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;shortwave&quot; means shortwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NetDownwardShortwaveFluxInAirAssumingClearSky" title="Net Downward Shortwave Flux in Air Assuming Clear Sky" uid="net_downward_shortwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. &quot;Calcareous phytoplankton&quot; are phytoplankton that produce calcite. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate." label="NetPrimaryMoleProductivityOfBiomassExpressedAsCarbonByCalcareousPhytoplankton" title="Net Primary Mole Productivity of Biomass Expressed As Carbon by Calcareous Phytoplankton" uid="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_calcareous_phytoplankton" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. Diatoms are single-celled phytoplankton with an external skeleton made of silica. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfBiomassExpressedAsCarbonByDiatoms" title="Net Primary Mole Productivity of Biomass Expressed As Carbon by Diatoms" uid="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_diatoms" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. In ocean modelling, diazotrophs are phytoplankton of the phylum cyanobacteria distinct from other phytoplankton groups in their ability to fix nitrogen gas in addition to nitrate and ammonium. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfBiomassExpressedAsCarbonByDiazotrophs" title="Net Primary Mole Productivity of Biomass Expressed As Carbon by Diazotrophs" uid="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_diazotrophs" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. &quot;Miscellaneous phytoplankton&quot; are all those phytoplankton that are not diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton or other seperately named components of the phytoplankton population. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfBiomassExpressedAsCarbonByMiscellaneousPhytoplankton" title="Net Primary Mole Productivity of Biomass Expressed As Carbon by Miscellaneous Phytoplankton" uid="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_miscellaneous_phytoplankton" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfBiomassExpressedAsCarbonByPhytoplankton" title="Net Primary Mole Productivity of Biomass Expressed As Carbon by Phytoplankton" uid="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_phytoplankton" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. Picophytoplankton are phytoplankton of less than 2 micrometers in size. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfBiomassExpressedAsCarbonByPicophytoplankton" title="Net Primary Mole Productivity of Biomass Expressed As Carbon by Picophytoplankton" uid="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_picophytoplankton" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; refers to the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. &quot;Nitrate utilization&quot; means net primary production by phytoplankton based on nitrate alone. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The chemical formula for the nitrate anion is NO3-. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfBiomassExpressedAsCarbonDueToNitrateUtilization" title="Net Primary Mole Productivity of Biomass Expressed As Carbon Due To Nitrate Utilization" uid="net_primary_mole_productivity_of_biomass_expressed_as_carbon_due_to_nitrate_utilization" units="mol m-2 s-1"/>
<item description="Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. In the oceans, carbon production per unit volume is often found at a number of depths at a given horizontal location. That quantity can then be integrated to calculate production per unit area at the location. Standard names for production per unit area use the term &quot;productivity&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constiuents of A." label="NetPrimaryProductionOfBiomassExpressedAsCarbonPerUnitVolumeInSeaWater" title="Net Primary Production of Biomass Expressed As Carbon Per Unit Volume in Sea Water" uid="net_primary_production_of_biomass_expressed_as_carbon_per_unit_volume_in_sea_water" units="kg m-3 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryProductivityOfBiomassExpressedAsCarbon" title="Net Primary Productivity of Biomass Expressed As Carbon" uid="net_primary_productivity_of_biomass_expressed_as_carbon" units="kg m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. " label="NetPrimaryProductivityOfBiomassExpressedAsCarbonAccumulatedInLeaves" title="Net Primary Productivity of Biomass Expressed As Carbon Accumulated in Leaves" uid="net_primary_productivity_of_biomass_expressed_as_carbon_accumulated_in_leaves" units="kg m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryProductivityOfBiomassExpressedAsCarbonAccumulatedInRoots" title="Net Primary Productivity of Biomass Expressed As Carbon Accumulated in Roots" uid="net_primary_productivity_of_biomass_expressed_as_carbon_accumulated_in_roots" units="kg m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryProductivityOfBiomassExpressedAsCarbonAccumulatedInWood" title="Net Primary Productivity of Biomass Expressed As Carbon Accumulated in Wood" uid="net_primary_productivity_of_biomass_expressed_as_carbon_accumulated_in_wood" units="kg m-2 s-1"/>
<item description="&quot;longwave&quot; means longwave radiation. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Net absorbed radiation is the difference between absorbed and emitted radiation." label="NetRateOfAbsorptionOfLongwaveEnergyInAtmosphereLayer" title="Net Rate of Absorption of Longwave Energy in Atmosphere Layer" uid="net_rate_of_absorption_of_longwave_energy_in_atmosphere_layer" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Net absorbed radiation is the difference between absorbed and emitted radiation." label="NetRateOfAbsorptionOfShortwaveEnergyInAtmosphereLayer" title="Net Rate of Absorption of Shortwave Energy in Atmosphere Layer" uid="net_rate_of_absorption_of_shortwave_energy_in_atmosphere_layer" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Net absorbed radiation is the difference between absorbed and emitted radiation." label="NetRateOfAbsorptionOfShortwaveEnergyInOceanLayer" title="Net Rate of Absorption of Shortwave Energy in Ocean Layer" uid="net_rate_of_absorption_of_shortwave_energy_in_ocean_layer" units="W m-2"/>
<item description="&quot;longwave&quot; means longwave radiation. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NetUpwardLongwaveFluxInAir" title="Net Upward Longwave Flux in Air" uid="net_upward_longwave_flux_in_air" units="W m-2"/>
<item description="A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;longwave&quot; means longwave radiation. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NetUpwardLongwaveFluxInAirAssumingClearSky" title="Net Upward Longwave Flux in Air Assuming Clear Sky" uid="net_upward_longwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NetUpwardShortwaveFluxInAir" title="Net Upward Shortwave Flux in Air" uid="net_upward_shortwave_flux_in_air" units="W m-2"/>
<item description="A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;shortwave&quot; means shortwave radiation. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NetUpwardShortwaveFluxInAirAssumingClearSky" title="Net Upward Shortwave Flux in Air Assuming Clear Sky" uid="net_upward_shortwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="&quot;Calcareous phytoplankton&quot; are phytoplankton that produce calcite. Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Nitrogen growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of nitrogen) to the theoretical growth rate if there were no such limit on nitrogen availability." label="NitrogenGrowthLimitationOfCalcareousPhytoplankton" title="Nitrogen Growth Limitation of Calcareous Phytoplankton" uid="nitrogen_growth_limitation_of_calcareous_phytoplankton" units="1"/>
<item description="Diatoms are phytoplankton with an external skeleton made of silica. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Nitrogen growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of nitrogen) to the theoretical growth rate if there were no such limit on nitrogen availability." label="NitrogenGrowthLimitationOfDiatoms" title="Nitrogen Growth Limitation of Diatoms" uid="nitrogen_growth_limitation_of_diatoms" units="1"/>
<item description="In ocean modelling, diazotrophs are phytoplankton of the phylum cyanobacteria distinct from other phytoplankton groups in their ability to fix nitrogen gas in addition to nitrate and ammonium. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Nitrogen growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of nitrogen) to the theoretical growth rate if there were no such limit on nitrogen availability." label="NitrogenGrowthLimitationOfDiazotrophs" title="Nitrogen Growth Limitation of Diazotrophs" uid="nitrogen_growth_limitation_of_diazotrophs" units="1"/>
<item description="Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Miscellaneous phytoplankton&quot; are all those phytoplankton that are not diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton or other separately named components of the phytoplankton population. &quot;Nitrogen growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of nitrogen) to the theoretical growth rate if there were no such limit on nitrogen availability." label="NitrogenGrowthLimitationOfMiscellaneousPhytoplankton" title="Nitrogen Growth Limitation of Miscellaneous Phytoplankton" uid="nitrogen_growth_limitation_of_miscellaneous_phytoplankton" units="1"/>
<item description="Picophytoplankton are phytoplankton of less than 2 micrometers in size. Phytoplankton are algae that grow where there is sufficient light to support photosynthesis. &quot;Nitrogen growth limitation&quot; means the ratio of the growth rate of a species population in the environment (where there is a finite availability of nitrogen) to the theoretical growth rate if there were no such limit on nitrogen availability." label="NitrogenGrowthLimitationOfPicophytoplankton" title="Nitrogen Growth Limitation of Picophytoplankton" uid="nitrogen_growth_limitation_of_picophytoplankton" units="1"/>
<item description="&quot;Normalized_difference_vegetation_index&quot;, usually abbreviated to NDVI, is an index calculated from reflectances measured in the visible and near infrared channels.  It is calculated as NDVI = (NIR - R) / (NIR + R) where NIR is the reflectance in the near-infrared band and R is the reflectance in the red visible band.  Reflectance is the ratio of the reflected over the incoming radiation in each spectral band.  The calculated value of NDVI depends on the precise definitions of the spectral bands and these definitions may vary between different models and remote sensing instruments." label="NormalizedDifferenceVegetationIndex" title="Normalized Difference Vegetation Index" uid="normalized_difference_vegetation_index" units="1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Transport across_unit_distance means expressed per unit distance normal to the direction of transport. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="NorthwardAtmosphereDryStaticEnergyTransportAcrossUnitDistance" title="Northward Atmosphere Dry Static Energy Transport Across Unit Distance" uid="northward_atmosphere_dry_static_energy_transport_across_unit_distance" units="W m-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Atmosphere heat transport&quot; means total heat transport by the atmosphere by all processes." label="NorthwardAtmosphereHeatTransport" title="Northward Atmosphere Heat Transport" uid="northward_atmosphere_heat_transport" units="W"/>
<item description="&quot;Water&quot; means water in all phases. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Transport across_unit_distance means expressed per unit distance normal to the direction of transport." label="NorthwardAtmosphereWaterTransportAcrossUnitDistance" title="Northward Atmosphere Water Transport Across Unit Distance" uid="northward_atmosphere_water_transport_across_unit_distance" units="kg s-1 m-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Transport across_unit_distance means expressed per unit distance normal to the direction of transport." label="NorthwardAtmosphereWaterVaporTransportAcrossUnitDistance" title="Northward Atmosphere Water Vapor Transport Across Unit Distance" uid="northward_atmosphere_water_vapor_transport_across_unit_distance" units="kg m-1 s-1"/>
<item description="A velocity is a vector quantity.  &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward).  Sea ice velocity is defined as a two-dimensional vector, with no vertical component.  &quot;component_derivative_of_X&quot; means  derivative of X with respect to distance in the component  direction, which may be northward, southward, eastward, westward, x or y. The last two indicate derivatives along the axes of the grid, in the case where they are not true longitude and latitude. The named quantity is a component of the strain rate tensor for sea ice." label="NorthwardDerivativeOfEastwardSeaIceVelocity" title="Northward Derivative of Eastward Sea Ice Velocity" uid="northward_derivative_of_eastward_sea_ice_velocity" units="s-1"/>
<item description="&quot;Eliassen Palm flux&quot; is a widely used vector in the meridional plane, and the divergence of this flux appears as a forcing in the Transformed Eulerian mean formulation of the zonal mean zonal wind equation.  &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward)." label="NorthwardEliassenPalmFluxInAir" title="Northward Eliassen Palm Flux in Air" uid="northward_eliassen_palm_flux_in_air" units="m3 s-2"/>
<item description="A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Flood water is water that covers land which is normally not covered by water." label="NorthwardFloodWaterVelocity" title="Northward Flood Water Velocity" uid="northward_flood_water_velocity" units="m s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NorthwardHeatFluxInAirDueToEddyAdvection" title="Northward Heat Flux in Air Due To Eddy Advection" uid="northward_heat_flux_in_air_due_to_eddy_advection" units="W m-2"/>
<item description="A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Land ice velocity is defined as a two-dimensional vector, with no vertical component. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves." label="NorthwardLandIceVelocity" title="Northward Land Ice Velocity" uid="northward_land_ice_velocity" units="m s-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NorthwardMassFluxOfAir" title="Northward Mass Flux of Air" uid="northward_mass_flux_of_air" units="kg m-2 s-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Momentum flux is dimensionally equivalent to stress and pressure. It is a tensor quantity. Flux correction is also called &quot;flux adjustment&quot;. A positive flux correction is downward i.e. added to the ocean. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NorthwardMomentumFluxCorrection" title="Northward Momentum Flux Correction" uid="northward_momentum_flux_correction" units="Pa"/>
<item description="A quantity with standard name Xward_Yward_derivative_of_geopotential is a second spatial derivative of geopotential, P, in the direction specified by X and Y, i.e., d2P/dXdY. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;component_derivative_of_X&quot; means derivative of X with respect to distance in the component direction, which may be &quot;northward&quot;, &quot;southward&quot;, &quot;eastward&quot;, &quot;westward&quot;, &quot;x&quot; or &quot;y&quot;. The last two indicate derivatives along the axes of the grid, in the case where they are not true longitude and latitude." label="NorthwardNorthwardDerivativeOfGeopotential" title="Northward Northward Derivative of Geopotential" uid="northward_northward_derivative_of_geopotential" units="s-2"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Ocean transport means transport by all processes, both sea water and sea ice." label="NorthwardOceanFreshwaterTransport" title="Northward Ocean Freshwater Transport" uid="northward_ocean_freshwater_transport" units="kg s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by bolus advection in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field." label="NorthwardOceanFreshwaterTransportDueToBolusAdvection" title="Northward Ocean Freshwater Transport Due To Bolus Advection" uid="northward_ocean_freshwater_transport_due_to_bolus_advection" units="kg s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by diffusion means the part due to horizontal or isopyncal diffusion schemes in an ocean model, but not including the &quot;bolus&quot; or Gent-McWilliams velocity." label="NorthwardOceanFreshwaterTransportDueToDiffusion" title="Northward Ocean Freshwater Transport Due To Diffusion" uid="northward_ocean_freshwater_transport_due_to_diffusion" units="kg s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by the ocean gyre is geometrically defined as being the part due to the vertical integral of the product of deviations of velocity and tracer from their zonal means. The velocity does not include &quot;bolus&quot; or Gent-McWilliams velocity." label="NorthwardOceanFreshwaterTransportDueToGyre" title="Northward Ocean Freshwater Transport Due To Gyre" uid="northward_ocean_freshwater_transport_due_to_gyre" units="kg s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by (meridional) overturning is geometrically defined as being the part due to the vertical integral of the product of zonal means of velocity and tracer. The velocity does not include &quot;bolus&quot; or Gent-McWilliams velocity." label="NorthwardOceanFreshwaterTransportDueToOverturning" title="Northward Ocean Freshwater Transport Due To Overturning" uid="northward_ocean_freshwater_transport_due_to_overturning" units="kg s-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Ocean transport means transport by all processes, both sea water and sea ice." label="NorthwardOceanHeatTransport" title="Northward Ocean Heat Transport" uid="northward_ocean_heat_transport" units="W"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by bolus advection in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field." label="NorthwardOceanHeatTransportDueToBolusAdvection" title="Northward Ocean Heat Transport Due To Bolus Advection" uid="northward_ocean_heat_transport_due_to_bolus_advection" units="W"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by diffusion means the part due to horizontal or isopyncal diffusion schemes in an ocean model, but not including the &quot;bolus&quot; or Gent-McWilliams velocity." label="NorthwardOceanHeatTransportDueToDiffusion" title="Northward Ocean Heat Transport Due To Diffusion" uid="northward_ocean_heat_transport_due_to_diffusion" units="W"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by the ocean gyre is geometrically defined as being the part due to the vertical integral of the product of deviations of velocity and tracer from their zonal means. The velocity does not include &quot;bolus&quot; or Gent-McWilliams velocity." label="NorthwardOceanHeatTransportDueToGyre" title="Northward Ocean Heat Transport Due To Gyre" uid="northward_ocean_heat_transport_due_to_gyre" units="W"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by (meridional) overturning is geometrically defined as being the part due to the vertical integral of the product of zonal means of velocity and tracer. The velocity does not include &quot;bolus&quot; or Gent-McWilliams velocity." label="NorthwardOceanHeatTransportDueToOverturning" title="Northward Ocean Heat Transport Due To Overturning" uid="northward_ocean_heat_transport_due_to_overturning" units="W"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Ocean transport means transport by all processes, both sea water and sea ice." label="NorthwardOceanSaltTransport" title="Northward Ocean Salt Transport" uid="northward_ocean_salt_transport" units="kg s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by bolus advection in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field." label="NorthwardOceanSaltTransportDueToBolusAdvection" title="Northward Ocean Salt Transport Due To Bolus Advection" uid="northward_ocean_salt_transport_due_to_bolus_advection" units="kg s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by diffusion means the part due to horizontal or isopyncal diffusion schemes in an ocean model, but not including the &quot;bolus&quot; or Gent-McWilliams velocity." label="NorthwardOceanSaltTransportDueToDiffusion" title="Northward Ocean Salt Transport Due To Diffusion" uid="northward_ocean_salt_transport_due_to_diffusion" units="kg s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by the ocean gyre is geometrically defined as being the part due to the vertical integral of the product of deviations of velocity and tracer from their zonal means. The velocity does not include &quot;bolus&quot; or Gent-McWilliams velocity." label="NorthwardOceanSaltTransportDueToGyre" title="Northward Ocean Salt Transport Due To Gyre" uid="northward_ocean_salt_transport_due_to_gyre" units="kg s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Northward transport by (meridional) overturning is geometrically defined as being the part due to the vertical integral of the product of zonal means of velocity and tracer. The velocity does not include &quot;bolus&quot; or Gent-McWilliams velocity." label="NorthwardOceanSaltTransportDueToOverturning" title="Northward Ocean Salt Transport Due To Overturning" uid="northward_ocean_salt_transport_due_to_overturning" units="kg s-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward).  &quot;Displacement&quot; means the change in geospatial position of an object that has moved over time. If possible, the time interval over which the motion took place should be specified using a bounds variable for the time coordinate variable.  A displacement can be represented as a vector. Such a vector should however not be interpreted as describing a rectilinear, constant speed motion but merely as an indication that the start point of the vector is found at the tip of the vector after the time interval associated with the displacement variable.  A displacement does not prescribe a trajectory. Sea ice displacement can be defined as a two-dimensional vector, with no vertical component. A northward displacement is the distance calculated from the change in a moving object's latitude between the start and end of the time interval associated with the displacement variable." label="NorthwardSeaIceDisplacement" title="Northward Sea Ice Displacement" uid="northward_sea_ice_displacement" units="m"/>
<item description="A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Sea ice velocity is defined as a two-dimensional vector, with no vertical component." label="NorthwardSeaIceVelocity" title="Northward Sea Ice Velocity" uid="northward_sea_ice_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward)." label="NorthwardSeaWaterVelocity" title="Northward Sea Water Velocity" uid="northward_sea_water_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity.  &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward).  A phrase assuming_condition  indicates that the named quantity is the value which would obtain if all  aspects of the system were unaltered except for the assumption of the  circumstances specified by the condition." label="NorthwardSeaWaterVelocityAssumingNoTide" title="Northward Sea Water Velocity Assuming No Tide" uid="northward_sea_water_velocity_assuming_no_tide" units="m s-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward)." label="NorthwardTransformedEulerianMeanAirVelocity" title="Northward Transformed Eulerian Mean Air Velocity" uid="northward_transformed_eulerian_mean_air_velocity" units="m s-1"/>
<item description="A quantity with standard name Xward_Yward_derivative_of_geopotential is a second spatial derivative of geopotential, P, in the direction specified by X and Y, i.e., d2P/dXdY. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). &quot;component_derivative_of_X&quot; means derivative of X with respect to distance in the component direction, which may be &quot;northward&quot;, &quot;southward&quot;, &quot;eastward&quot;, &quot;westward&quot;, &quot;x&quot; or &quot;y&quot;. The last two indicate derivatives along the axes of the grid, in the case where they are not true longitude and latitude." label="NorthwardUpwardDerivativeOfGeopotential" title="Northward Upward Derivative of Geopotential" uid="northward_upward_derivative_of_geopotential" units="s-2"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="NorthwardWaterVaporFluxInAir" title="Northward Water Vapor Flux in Air" uid="northward_water_vapor_flux_in_air" units="kg m-2 s-1"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Transport across_unit_distance means expressed per unit distance normal to the direction of transport." label="NorthwardWaterVaporTransportAcrossUnitDistanceInAtmosphereLayer" title="Northward Water Vapor Transport Across Unit Distance in Atmosphere Layer" uid="northward_water_vapor_transport_across_unit_distance_in_atmosphere_layer" units="kg m-1 s-1"/>
<item description="A quantity with standard name Xward_Yward_derivative_of_geopotential is a second spatial derivative of geopotential in the direction specified by X and Y, i.e., d2P/dXdY. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. &quot;Westward&quot; indicates a vector component which is positive when directed westward (negative eastward). &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;component_derivative_of_X&quot; means derivative of X with respect to distance in the component direction, which may be &quot;northward&quot;, &quot;southward&quot;, &quot;eastward&quot;, &quot;westward&quot;, &quot;x&quot; or &quot;y&quot;. The last two indicate derivatives along the axes of the grid, in the case where they are not true longitude and latitude." label="NorthwardWestwardDerivativeOfGeopotential" title="Northward Westward Derivative of Geopotential" uid="northward_westward_derivative_of_geopotential" units="s-2"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="NorthwardWind" title="Northward Wind" uid="northward_wind" units="m s-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) Wind shear is the derivative of wind with respect to height." label="NorthwardWindShear" title="Northward Wind Shear" uid="northward_wind_shear" units="s-1"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;stp&quot; means standard temperature (0 degC) and pressure (101325 Pa). The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="NumberConcentrationOfAerosolParticlesAtStpInAir" title="Number Concentration of Aerosol Particles At Stp in Air" uid="number_concentration_of_aerosol_particles_at_stp_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles." label="NumberConcentrationOfAmbientAerosolParticlesInAir" title="Number Concentration of Ambient Aerosol Particles in Air" uid="number_concentration_of_ambient_aerosol_particles_in_air" units="m-3"/>
<item description="The cloud condensation nuclei number concentration is the total number of aerosol particles per unit volume independent of and integrated over particle size that act as condensation nuclei for liquid-phase clouds. A coordinate variable with the standard name of relative_humidity should be specified to indicate that the property refers to a specific supersaturation with respect to liquid water. The ability of a particle to act as a condensation nucleus is determined by its size, chemical composition, and morphology. &quot;stp&quot; means standard temperature (0 degC) and pressure (101325 Pa)." label="NumberConcentrationOfCloudCondensationNucleiAtStpInAir" title="Number Concentration of Cloud Condensation Nuclei At Stp in Air" uid="number_concentration_of_cloud_condensation_nuclei_at_stp_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume." label="NumberConcentrationOfCloudLiquidWaterParticlesInAir" title="Number Concentration of Cloud Liquid Water Particles in Air" uid="number_concentration_of_cloud_liquid_water_particles_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. cloud_top refers to the top of the highest cloud." label="NumberConcentrationOfCloudLiquidWaterParticlesInAirAtLiquidWaterCloudTop" title="Number Concentration of Cloud Liquid Water Particles in Air At Liquid Water Cloud Top" uid="number_concentration_of_cloud_liquid_water_particles_in_air_at_liquid_water_cloud_top" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. Coarse mode aerosol particles have a diameter of more than 1 micrometer." label="NumberConcentrationOfCoarseModeAmbientAerosolParticlesInAir" title="Number Concentration of Coarse Mode Ambient Aerosol Particles in Air" uid="number_concentration_of_coarse_mode_ambient_aerosol_particles_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume." label="NumberConcentrationOfIceCrystalsInAir" title="Number Concentration of Ice Crystals in Air" uid="number_concentration_of_ice_crystals_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. cloud_top refers to the top of the highest cloud." label="NumberConcentrationOfIceCrystalsInAirAtIceCloudTop" title="Number Concentration of Ice Crystals in Air At Ice Cloud Top" uid="number_concentration_of_ice_crystals_in_air_at_ice_cloud_top" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. Nucleation mode aerosol particles have a diameter of less than 3 nanometers." label="NumberConcentrationOfNucleationModeAmbientAerosolParticlesInAir" title="Number Concentration of Nucleation Mode Ambient Aerosol Particles in Air" uid="number_concentration_of_nucleation_mode_ambient_aerosol_particles_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. The chemical formula for ozone is O3. The IUPAC name for ozone is trioxygen." label="NumberConcentrationOfOzoneMoleculesInAir" title="Number Concentration of Ozone Molecules in Air" uid="number_concentration_of_ozone_molecules_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. To specify the relative humidity and temperature at which the particle size applies, provide scalar coordinate variables with the standard names of, respectively, &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="NumberConcentrationOfPm10AerosolParticlesInAir" title="Number Concentration of Pm10 Aerosol Particles in Air" uid="number_concentration_of_pm10_aerosol_particles_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. To specify the relative humidity and temperature at which the particle size applies, provide scalar coordinate variables with the standard names of, respectively, &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="NumberConcentrationOfPm2p5AerosolParticlesInAir" title="Number Concentration of Pm2p5 Aerosol Particles in Air" uid="number_concentration_of_pm2p5_aerosol_particles_in_air" units="m-3"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature.  A variable whose standard name has the form number_of_days_with_X_below|above_threshold is a count of the number of days on which the condition X_below|above_threshold is satisfied.  It must have a coordinate variable or scalar coordinate variable with the a standard name of X to supply the threshold(s). It must have a climatological time variable, and a cell_methods entry for within days which describes the processing of quantity X before the threshold is applied. A number_of_days is an extensive quantity in time, and the cell_methods entry for over days should be &quot;sum&quot;." label="NumberOfDaysWithAirTemperatureAboveThreshold" title="Number of Days With Air Temperature Above Threshold" uid="number_of_days_with_air_temperature_above_threshold" units="1"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature.  A variable whose standard name has the form number_of_days_with_X_below|above_threshold is a count of the number of days on which the condition X_below|above_threshold is satisfied.  It must have a coordinate variable or scalar coordinate variable with the a standard name of X to supply the threshold(s). It must have a climatological time variable, and a cell_methods entry for within days which describes the processing of quantity X before the threshold is applied. A number_of_days is an extensive quantity in time, and the cell_methods entry for over days should be &quot;sum&quot;." label="NumberOfDaysWithAirTemperatureBelowThreshold" title="Number of Days With Air Temperature Below Threshold" uid="number_of_days_with_air_temperature_below_threshold" units="1"/>
<item description="&quot;Amount&quot; means mass per unit area.  The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area.  &quot;lwe&quot; means liquid water equivalent.  A variable whose standard name has the form number_of_days_with_X_below|above_threshold is a count of the number of days on which the condition X_below|above_threshold is satisfied.  It must have a coordinate variable or scalar coordinate variable with the a standard name of X to supply the threshold(s). It must have a climatological time variable, and a cell_methods entry for within days which describes the processing of quantity X before the threshold is applied. A number_of_days is an extensive quantity in time, and the cell_methods entry for over days should be &quot;sum&quot;." label="NumberOfDaysWithLweThicknessOfPrecipitationAmountAboveThreshold" title="Number of Days With Lwe Thickness of Precipitation Amount Above Threshold" uid="number_of_days_with_lwe_thickness_of_precipitation_amount_above_threshold" units="1"/>
<item description="The surface temperature is the temperature at the interface, not the bulk temperature of the medium above or below. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A variable whose standard name has the form number_of_days_with_X_below|above_threshold is a count of the number of days on which the condition X_below|above_threshold is satisfied. It must have a coordinate variable or scalar coordinate variable with the a standard name of X to supply the threshold(s). It must have a climatological time variable, and a cell_methods entry for within days which describes the processing of quantity X before the threshold is applied. A number_of_days is an extensive quantity in time, and the cell_methods entry for over days should be &quot;sum&quot;." label="NumberOfDaysWithSurfaceTemperatureBelowThreshold" title="Number of Days With Surface Temperature Below Threshold" uid="number_of_days_with_surface_temperature_below_threshold" units="1"/>
<item description="Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)  The wind speed is the magnitude of the wind velocity.  A variable whose standard name has the form number_of_days_with_X_below|above_threshold is a count of the number of days on which the condition X_below|above_threshold is satisfied.  It must have a coordinate variable or scalar coordinate variable with the a standard name of X to supply the threshold(s). It must have a climatological time variable, and a cell_methods entry for within days which describes the processing of quantity X before the threshold is applied. A number_of_days is an extensive quantity in time, and the cell_methods entry for over days should be &quot;sum&quot;." label="NumberOfDaysWithWindSpeedAboveThreshold" title="Number of Days With Wind Speed Above Threshold" uid="number_of_days_with_wind_speed_above_threshold" units="1"/>
<item description="" label="NumberOfIcebergsPerUnitArea" title="Number of Icebergs Per Unit Area" uid="number_of_icebergs_per_unit_area" units="m-2"/>
<item description="A variable with the standard name of number_of_observations contains the number of discrete observations or measurements from which the values of  another data variable have been derived. The linkage between the data variable and the variable with a standard_name of number_of_observations is achieved using the ancillary_variables attribute." label="NumberOfObservations" title="Number of Observations" uid="number_of_observations" units="1"/>
<item description="The barotropic stream function with the dimensions of volume transport has the standard name ocean_barotropic_streamfunction." label="OceanBarotropicMassStreamfunction" title="Ocean Barotropic Mass Streamfunction" uid="ocean_barotropic_mass_streamfunction" units="kg s-1"/>
<item description="" label="OceanBarotropicStreamfunction" title="Ocean Barotropic Streamfunction" uid="ocean_barotropic_streamfunction" units="m3 s-1"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x." label="OceanHeatXTransport" title="Ocean Heat X Transport" uid="ocean_heat_x_transport" units="W"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x.  Transport by bolus advection in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="OceanHeatXTransportDueToBolusAdvection" title="Ocean Heat X Transport Due To Bolus Advection" uid="ocean_heat_x_transport_due_to_bolus_advection" units="W"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanHeatXTransportDueToDiffusion" title="Ocean Heat X Transport Due To Diffusion" uid="ocean_heat_x_transport_due_to_diffusion" units="W"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y." label="OceanHeatYTransport" title="Ocean Heat Y Transport" uid="ocean_heat_y_transport" units="W"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. Transport by bolus advection in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="OceanHeatYTransportDueToBolusAdvection" title="Ocean Heat Y Transport Due To Bolus Advection" uid="ocean_heat_y_transport_due_to_bolus_advection" units="W"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="OceanHeatYTransportDueToDiffusion" title="Ocean Heat Y Transport Due To Diffusion" uid="ocean_heat_y_transport_due_to_diffusion" units="W"/>
<item description="&quot;integral_of_Y_wrt_X&quot; means int Y dX. The data variable should have an axis for X specifying the limits of the integral as bounds. &quot;wrt&quot; means with respect to. Depth is the vertical distance below the surface. Sea water temperature is the in situ temperature of the sea water. For observed data, depending on the period during which the observation was made, the measured in situ temperature was recorded against standard &quot;scales&quot;. These historical scales include the International Practical Temperature Scale of 1948 (IPTS-48; 1948-1967), the International Practical Temperature Scale of 1968 (IPTS-68, Barber, 1969; 1968-1989) and the International Temperature Scale of 1990 (ITS-90, Saunders 1990; 1990 onwards). Conversion of data between these scales follows t68 = t48 - (4.4 x 10e-6) * t48(100 - t - 48); t90 = 0.99976 * t68. Observations made prior to 1948 (IPTS-48) have not been documented and therefore a conversion cannot be certain. Differences between t90 and t68 can be up to 0.01 at temperatures of 40 C and above; differences of 0.002-0.007 occur across the standard range of ocean temperatures (-10 - 30 C). The International Equation of State of Seawater 1980 (EOS-80, UNESCO, 1981) and the Practical Salinity Scale (PSS-78) were both based on IPTS-68, while the Thermodynamic Equation of Seawater 2010 (TEOS-10) is based on ITS-90. References: Barber, 1969, doi: 10.1088/0026-1394/5/2/001; UNESCO, 1981; Saunders, 1990, WOCE Newsletter, 10, September 1990." label="OceanIntegralOfSeaWaterTemperatureWrtDepth" title="Ocean Integral of Sea Water Temperature Wrt Depth" uid="ocean_integral_of_sea_water_temperature_wrt_depth" units="K m"/>
<item description="" label="OceanIsopycnalLayerThicknessDiffusivity" title="Ocean Isopycnal Layer Thickness Diffusivity" uid="ocean_isopycnal_layer_thickness_diffusivity" units="m2 s-1"/>
<item description="Friction, leading to the dissipation of kinetic energy, arises in ocean models as a result of the viscosity of sea water.  Generally, the  lateral (xy) viscosity is given a large value to maintain the numerical stability of the model.  In contrast, the vertical viscosity is usually much smaller. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanKineticEnergyDissipationPerUnitAreaDueToVerticalFriction" title="Ocean Kinetic Energy Dissipation Per Unit Area Due To Vertical Friction" uid="ocean_kinetic_energy_dissipation_per_unit_area_due_to_vertical_friction" units="W m-2"/>
<item description="Friction, leading to the dissipation of kinetic energy, arises in ocean models as a result of the viscosity of sea water.  Generally, the  lateral (xy) viscosity is given a large value to maintain the numerical stability of the model.  In contrast, the vertical viscosity is usually much smaller. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanKineticEnergyDissipationPerUnitAreaDueToXyFriction" title="Ocean Kinetic Energy Dissipation Per Unit Area Due To Xy Friction" uid="ocean_kinetic_energy_dissipation_per_unit_area_due_to_xy_friction" units="W m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Dissolvedinorganic carbon&quot; describes a family of chemical species in solution, including carbon dioxide, carbonic acid and the carbonate and bicarbonate anions. &quot;Dissolved inorganic carbon&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="OceanMassContentOfDissolvedInorganicCarbon" title="Ocean Mass Content of Dissolved Inorganic Carbon" uid="ocean_mass_content_of_dissolved_inorganic_carbon" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. Organic carbon describes a family of chemical species and is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="OceanMassContentOfDissolvedOrganicCarbon" title="Ocean Mass Content of Dissolved Organic Carbon" uid="ocean_mass_content_of_dissolved_organic_carbon" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="OceanMassContentOfParticulateOrganicMatterExpressedAsCarbon" title="Ocean Mass Content of Particulate Organic Matter Expressed As Carbon" uid="ocean_mass_content_of_particulate_organic_matter_expressed_as_carbon" units="kg m-2"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x." label="OceanMassXTransport" title="Ocean Mass X Transport" uid="ocean_mass_x_transport" units="kg s-1"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="OceanMassXTransportDueToAdvection" title="Ocean Mass X Transport Due To Advection" uid="ocean_mass_x_transport_due_to_advection" units="kg s-1"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase. Transport by bolus advection in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field." label="OceanMassXTransportDueToAdvectionAndBolusAdvection" title="Ocean Mass X Transport Due To Advection And Bolus Advection" uid="ocean_mass_x_transport_due_to_advection_and_bolus_advection" units="kg s-1"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y." label="OceanMassYTransport" title="Ocean Mass Y Transport" uid="ocean_mass_y_transport" units="kg s-1"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="OceanMassYTransportDueToAdvection" title="Ocean Mass Y Transport Due To Advection" uid="ocean_mass_y_transport_due_to_advection" units="kg s-1"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. Transport by bolus advection in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="OceanMassYTransportDueToAdvectionAndBolusAdvection" title="Ocean Mass Y Transport Due To Advection And Bolus Advection" uid="ocean_mass_y_transport_due_to_advection_and_bolus_advection" units="kg s-1"/>
<item description="In contrast to the quantity with standard name ocean_meridional_overturning_streamfunction, this quantity includes all physical processes, resolved or parameterized, that impact mass/volume transport.  Thus it includes contributions from the bolus and Gent-McWilliams velocity." label="OceanMeridionalOverturningMassStreamfunction" title="Ocean Meridional Overturning Mass Streamfunction" uid="ocean_meridional_overturning_mass_streamfunction" units="kg s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanMeridionalOverturningMassStreamfunctionDueToBolusAdvection" title="Ocean Meridional Overturning Mass Streamfunction Due To Bolus Advection" uid="ocean_meridional_overturning_mass_streamfunction_due_to_bolus_advection" units="kg s-1"/>
<item description="The ocean meridional overturning streamfunction should not include not include &quot;bolus&quot; or Gent-McWilliams velocity." label="OceanMeridionalOverturningStreamfunction" title="Ocean Meridional Overturning Streamfunction" uid="ocean_meridional_overturning_streamfunction" units="m3 s-1"/>
<item description="The ocean mixed layer is the upper part of the ocean, regarded as being well-mixed. Various criteria are used to define the mixed layer; this can be specified by using a standard name of ocean_mixed_layer_defined_byX." label="OceanMixedLayerThickness" title="Ocean Mixed Layer Thickness" uid="ocean_mixed_layer_thickness" units="m"/>
<item description="The ocean mixed layer is the upper part of the ocean, regarded as being well-mixed. The base of the mixed layer defined by the mixing scheme is a diagnostic of ocean models." label="OceanMixedLayerThicknessDefinedByMixingScheme" title="Ocean Mixed Layer Thickness Defined by Mixing Scheme" uid="ocean_mixed_layer_thickness_defined_by_mixing_scheme" units="m"/>
<item description="The ocean mixed layer is the upper part of the ocean, regarded as being well-mixed. The base of the mixed layer defined by temperature, sigma or sigma_theta is the level at which the quantity indicated differs from its surface value by a certain amount." label="OceanMixedLayerThicknessDefinedBySigmaT" title="Ocean Mixed Layer Thickness Defined by Sigma T" uid="ocean_mixed_layer_thickness_defined_by_sigma_t" units="m"/>
<item description="The ocean mixed layer is the upper part of the ocean, regarded as being well-mixed. The base of the mixed layer defined by temperature, sigma or sigma_theta is the level at which the quantity indicated differs from its surface value by a certain amount." label="OceanMixedLayerThicknessDefinedBySigmaTheta" title="Ocean Mixed Layer Thickness Defined by Sigma Theta" uid="ocean_mixed_layer_thickness_defined_by_sigma_theta" units="m"/>
<item description="The ocean mixed layer is the upper part of the ocean, regarded as being well-mixed. The base of the mixed layer defined by temperature, sigma or sigma_theta is the level at which the quantity indicated differs from its surface value by a certain amount." label="OceanMixedLayerThicknessDefinedByTemperature" title="Ocean Mixed Layer Thickness Defined by Temperature" uid="ocean_mixed_layer_thickness_defined_by_temperature" units="m"/>
<item description="The ocean mixed layer is the upper part of the ocean, regarded as being well-mixed. The base of the mixed layer defined by temperature, sigma, sigma_theta, or vertical diffusivity is the level at which the quantity indicated differs from its surface value by a certain amount. The amount by which the quantity differs can be specified by a scalar coordinate variable." label="OceanMixedLayerThicknessDefinedByVerticalTracerDiffusivity" title="Ocean Mixed Layer Thickness Defined by Vertical Tracer Diffusivity" uid="ocean_mixed_layer_thickness_defined_by_vertical_tracer_diffusivity" units="m"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. &quot;xy diffusivity&quot; means the lateral along_coordinate component of diffusivity due to motion which is not resolved on the grid scale of the model.  xy diffusivities are used in some ocean models to counteract the numerical instabilities inherent in certain implementations of rotated neutral diffusion. &quot;biharmonic diffusivity&quot; means diffusivity for use with a biharmonic diffusion operator." label="OceanMomentumXyBiharmonicDiffusivity" title="Ocean Momentum Xy Biharmonic Diffusivity" uid="ocean_momentum_xy_biharmonic_diffusivity" units="m4 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. &quot;xy diffusivity&quot; means the lateral along_coordinate component of diffusivity due to motion which is not resolved on the grid scale of the model.  xy diffusivities are used in some ocean models to counteract the numerical instabilities inherent in certain implementations of rotated neutral diffusion. &quot;laplacian diffusivity&quot; means diffusivity for use with a Laplacian diffusion operator." label="OceanMomentumXyLaplacianDiffusivity" title="Ocean Momentum Xy Laplacian Diffusivity" uid="ocean_momentum_xy_laplacian_diffusivity" units="m2 s-1"/>
<item description="Mongomery potential is defined as M = ap + gz, where a = specific volume, p = pressure, g = gravity, and z=depth. It represents an exact streamfunction on specificvolume anomaly surfaces." label="OceanMontgomeryPotential" title="Ocean Montgomery Potential" uid="ocean_montgomery_potential" units="m2 s-2"/>
<item description="Relative vorticity is the upward component of the relative vorticity vector i.e. the component which arises from horizontal velocity." label="OceanRelativeVorticity" title="Ocean Relative Vorticity" uid="ocean_relative_vorticity" units="s-1"/>
<item description="&quot;Ocean rigid lid pressure&quot; means the pressure at the surface of an ocean model assuming that it is bounded above by a rigid lid." label="OceanRigidLidPressure" title="Ocean Rigid Lid Pressure" uid="ocean_rigid_lid_pressure" units="Pa"/>
<item description="&quot;Ocean rigid lid pressure&quot; means the pressure at the surface of an ocean model assuming that it is bounded above by a rigid lid." label="OceanRigidLidPressureExpressedAsSeaSurfaceHeightAboveGeoid" title="Ocean Rigid Lid Pressure Expressed As Sea Surface Height Above Geoid" uid="ocean_rigid_lid_pressure_expressed_as_sea_surface_height_above_geoid" units="m"/>
<item description="See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="OceanSCoordinate" title="Ocean S Coordinate" uid="ocean_s_coordinate" units="1"/>
<item description="See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="OceanSCoordinateG1" title="Ocean S Coordinate G1" uid="ocean_s_coordinate_g1" units="1"/>
<item description="See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="OceanSCoordinateG2" title="Ocean S Coordinate G2" uid="ocean_s_coordinate_g2" units="1"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. Salt transport refers to the mass of salt being transported." label="OceanSaltXTransport" title="Ocean Salt X Transport" uid="ocean_salt_x_transport" units="1e-3 kg s-1"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. Salt transport refers to the mass of salt being transported." label="OceanSaltYTransport" title="Ocean Salt Y Transport" uid="ocean_salt_y_transport" units="1e-3 kg s-1"/>
<item description="See Appendix D of the CF convention for information about dimensionless vertical coordinates. Note that the ocean sigma coordinate is not the same quantity as sea water sigma (excess of density over 1000 kg m-3), for which there are various other standard names." label="OceanSigmaCoordinate" title="Ocean Sigma Coordinate" uid="ocean_sigma_coordinate" units="1"/>
<item description="See Appendix D of the CF convention for information about dimensionless vertical coordinates." label="OceanSigmaZCoordinate" title="Ocean Sigma Z Coordinate" uid="ocean_sigma_z_coordinate" units="1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. &quot;Bolus diffusivity&quot; means a lateral diffusivity. &quot;biharmonicdiffusivity&quot; means diffusivity for use with a biharmonic diffusion operator." label="OceanTracerBolusBiharmonicDiffusivity" title="Ocean Tracer Bolus Biharmonic Diffusivity" uid="ocean_tracer_bolus_biharmonic_diffusivity" units="m4 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. &quot;Bolus diffusivity&quot; means a lateral diffusivity. &quot;laplacian diffusivity&quot; means diffusivity for use with a Laplacian diffusion operator." label="OceanTracerBolusLaplacianDiffusivity" title="Ocean Tracer Bolus Laplacian Diffusivity" uid="ocean_tracer_bolus_laplacian_diffusivity" units="m2 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. &quot;epineutral diffusivity&quot; means a lateral diffusivity along a either a neutral or isopycnal density surface due to motion which is not resolved on the grid scale of an ocean model. The type of density surface is dependent on the model formulation. &quot;biharmonic diffusivity&quot; means diffusivity for use with a biharmonic diffusion operator." label="OceanTracerEpineutralBiharmonicDiffusivity" title="Ocean Tracer Epineutral Biharmonic Diffusivity" uid="ocean_tracer_epineutral_biharmonic_diffusivity" units="m4 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. &quot;epineutral diffusivity&quot; means a lateral diffusivity along a either a neutral or isopycnal density surface due to motion which is not resolved on the grid scale of an ocean model. The type of density surface is dependent on the model formulation. &quot;laplacian diffusivity&quot; means diffusivity for use with a Laplacian diffusion operator." label="OceanTracerEpineutralLaplacianDiffusivity" title="Ocean Tracer Epineutral Laplacian Diffusivity" uid="ocean_tracer_epineutral_laplacian_diffusivity" units="m2 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. &quot;xy diffusivity&quot; means the lateral along_coordinate component of diffusivity due to motion which is not resolved on the grid scale of the model.  xy diffusivities are used in some ocean models to counteract the numerical instabilities inherent in certain implementations of rotated neutral diffusion. &quot;biharmonic diffusivity&quot; means diffusivity for use with a biharmonic diffusion operator." label="OceanTracerXyBiharmonicDiffusivity" title="Ocean Tracer Xy Biharmonic Diffusivity" uid="ocean_tracer_xy_biharmonic_diffusivity" units="m4 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. &quot;xy diffusivity&quot; means the lateral along_coordinate component of diffusivity due to motion which is not resolved on the grid scale of the model.  xy diffusivities are used in some ocean models to counteract the numerical instabilities inherent in certain implementations of rotated neutral diffusion. &quot;laplacian diffusivity&quot; means diffusivity for use with a Laplacian diffusion operator." label="OceanTracerXyLaplacianDiffusivity" title="Ocean Tracer Xy Laplacian Diffusivity" uid="ocean_tracer_xy_laplacian_diffusivity" units="m2 s-1"/>
<item description="&quot;Vertical diffusivity&quot; means the vertical component of diffusivity due to motion which is not resolved on the grid scale of the model." label="OceanVerticalDiffusivity" title="Ocean Vertical Diffusivity" uid="ocean_vertical_diffusivity" units="m2 s-1"/>
<item description="&quot;Vertical heat diffusivity&quot; means the vertical component of the diffusivity of heat due to motion which is not resolved on the grid scale of the model." label="OceanVerticalHeatDiffusivity" title="Ocean Vertical Heat Diffusivity" uid="ocean_vertical_heat_diffusivity" units="m2 s-1"/>
<item description="&quot;Vertical momentum diffusivity&quot; means the vertical component of the diffusivity of momentum due to motion which is not resolved on the grid scale of the model." label="OceanVerticalMomentumDiffusivity" title="Ocean Vertical Momentum Diffusivity" uid="ocean_vertical_momentum_diffusivity" units="m2 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. The construction vertical_X_diffusivity means the vertical component of thediffusivity of X due to motion which is not resolved on the grid scale of the model. &quot;Due to background&quot; means caused by a time invariant imposed field which may be eitherconstant over the globe or spatially varying, depending on the ocean model used. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanVerticalMomentumDiffusivityDueToBackground" title="Ocean Vertical Momentum Diffusivity Due To Background" uid="ocean_vertical_momentum_diffusivity_due_to_background" units="m2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Vertical momentum diffusivity&quot; means the vertical component of the diffusivity of momentum due to motion which is not resolved on the grid scale of the model. Convective mixing in the ocean is somtimes modelled as an enhanced diffusivity." label="OceanVerticalMomentumDiffusivityDueToConvection" title="Ocean Vertical Momentum Diffusivity Due To Convection" uid="ocean_vertical_momentum_diffusivity_due_to_convection" units="m2 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. The construction vertical_X_diffusivity means the vertical component of thediffusivity of X due to motion which is not resolved on the grid scale of the model. &quot;Due to form drag&quot; refers to a vertical diffusivity resulting from a model scheme representing  mesoscale eddy-induced form drag. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanVerticalMomentumDiffusivityDueToFormDrag" title="Ocean Vertical Momentum Diffusivity Due To Form Drag" uid="ocean_vertical_momentum_diffusivity_due_to_form_drag" units="m2 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. The construction vertical_X_diffusivity means the vertical component of thediffusivity of X due to motion which is not resolved on the grid scale of the model. &quot;Due to tides&quot; means due to all astronomical gravity changes which manifest as tides.No distinction is made between different tidal components. The specification of a physicalprocess by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanVerticalMomentumDiffusivityDueToTides" title="Ocean Vertical Momentum Diffusivity Due To Tides" uid="ocean_vertical_momentum_diffusivity_due_to_tides" units="m2 s-1"/>
<item description="&quot;Vertical salt diffusivity&quot; means the vertical component of the diffusivity of salt due to motion which is not resolved on the grid scale of the model." label="OceanVerticalSaltDiffusivity" title="Ocean Vertical Salt Diffusivity" uid="ocean_vertical_salt_diffusivity" units="m2 s-1"/>
<item description="&quot;Vertical tracer diffusivity&quot; means the vertical component of the diffusivity of tracers, i.e. heat and salinity, due to motion which is not resolved on the grid scale of the model." label="OceanVerticalTracerDiffusivity" title="Ocean Vertical Tracer Diffusivity" uid="ocean_vertical_tracer_diffusivity" units="m2 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. The construction vertical_X_diffusivity means the vertical component of thediffusivity of X due to motion which is not resolved on the grid scale of the model. &quot;Due to background&quot; means caused by a time invariant imposed field which may be eitherconstant over the globe or spatially varying, depending on the ocean model used. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanVerticalTracerDiffusivityDueToBackground" title="Ocean Vertical Tracer Diffusivity Due To Background" uid="ocean_vertical_tracer_diffusivity_due_to_background" units="m2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Vertical tracer diffusivity&quot; means the vertical component of the diffusivity of tracers, i.e. heat and salinity, due to motion which is not resolved on the grid scale of the model.  Convective mixing in the ocean is sometimes modelled as an enhanced diffusivity." label="OceanVerticalTracerDiffusivityDueToConvection" title="Ocean Vertical Tracer Diffusivity Due To Convection" uid="ocean_vertical_tracer_diffusivity_due_to_convection" units="m2 s-1"/>
<item description="Diffusivity is also sometimes known as the coefficient of diffusion. Diffusion occurs as a result of a gradient in the spatial distribution of mass concentration, temperature or momentum.  The diffusivity may be very different in the vertical and horizontal directions. The construction vertical_X_diffusivity means the vertical component of thediffusivity of X due to motion which is not resolved on the grid scale of the model. &quot;Due to tides&quot; means due to all astronomical gravity changes which manifest as tides.No distinction is made between different tidal components. The specification of a physicalprocess by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanVerticalTracerDiffusivityDueToTides" title="Ocean Vertical Tracer Diffusivity Due To Tides" uid="ocean_vertical_tracer_diffusivity_due_to_tides" units="m2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Vertical tracer diffusivity&quot; means the vertical component of the diffusivity of tracers, i.e. heat and salinity, due to motion which is not resolved on the grid scale of the model." label="OceanVerticalTracerDiffusivityDueToWindMixing" title="Ocean Vertical Tracer Diffusivity Due To Wind Mixing" uid="ocean_vertical_tracer_diffusivity_due_to_wind_mixing" units="m2 s-1"/>
<item description="" label="OceanVolume" title="Ocean Volume" uid="ocean_volume" units="m3"/>
<item description="&quot;X_volume_fraction&quot; means the fraction of volume occupied by X." label="OceanVolumeFraction" title="Ocean Volume Fraction" uid="ocean_volume_fraction" units="1"/>
<item description="Transport &quot;across_line&quot; means that which crosses a particular line on the Earth's surface; formally this means the integral along the line of the normal component of the transport." label="OceanVolumeTransportAcrossLine" title="Ocean Volume Transport Across Line" uid="ocean_volume_transport_across_line" units="m3 s-1"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x." label="OceanVolumeXTransport" title="Ocean Volume X Transport" uid="ocean_volume_x_transport" units="m3 s-1"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. " label="OceanVolumeYTransport" title="Ocean Volume Y Transport" uid="ocean_volume_y_transport" units="m3 s-1"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. In contrast to the quantity with standard name ocean_meridional_overturning_streamfunction, this quantity includes all physical processes, resolved or parameterized, that impact mass/volume transport.  Thus it includes contributions from the bolus and Gent-McWilliams velocity." label="OceanYOverturningMassStreamfunction" title="Ocean Y Overturning Mass Streamfunction" uid="ocean_y_overturning_mass_streamfunction" units="kg s-1"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="OceanYOverturningMassStreamfunctionDueToBolusAdvection" title="Ocean Y Overturning Mass Streamfunction Due To Bolus Advection" uid="ocean_y_overturning_mass_streamfunction_due_to_bolus_advection" units="kg s-1"/>
<item description="&quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. Omnidirectional spherical irradiance is the radiation incident on unit area of a spherical (or &quot;4-pi&quot;) collector. It is sometimes called &quot;scalar irradiance&quot;. Radiation incident on a 2-pi collector has standard names of &quot;spherical irradiance&quot; which specify up/downwelling." label="OmnidirectionalPhotosyntheticSphericalIrradianceInSeaWater" title="Omnidirectional Photosynthetic Spherical Irradiance in Sea Water" uid="omnidirectional_photosynthetic_spherical_irradiance_in_sea_water" units="W m-2"/>
<item description="Omnidirectional spherical irradiance is the radiation incident on unit area of a spherical (or &quot;4-pi&quot;) collector. It is sometimes called &quot;scalar irradiance&quot;. Radiation incident on a 2-pi collector has standard names of &quot;spherical irradiance&quot; which specify up/downwelling. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="OmnidirectionalSphericalIrradiancePerUnitWavelengthInSeaWater" title="Omnidirectional Spherical Irradiance Per Unit Wavelength in Sea Water" uid="omnidirectional_spherical_irradiance_per_unit_wavelength_in_sea_water" units="W m-3"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="OpticalThicknessOfAtmosphereLayerDueToAmbientAerosolParticles" title="Optical Thickness of Atmosphere Layer Due To Ambient Aerosol Particles" uid="optical_thickness_of_atmosphere_layer_due_to_ambient_aerosol_particles" units="1"/>
<item description="Various stability and convective potential indices are calculated by &quot;lifting&quot; a parcel of air: moving it dry adiabatically from a starting height (often the surface) to the Lifting Condensation Level, and then wet adiabatically from there to an ending height (often the top of the data/model/atmosphere).  original_air_pressure_of_lifted_parcel and final_air_pressure_of_lifted_parcel are the pressure heights at the start and end of lifting, respectively." label="OriginalAirPressureOfLiftedParcel" title="Original Air Pressure of Lifted Parcel" uid="original_air_pressure_of_lifted_parcel" units="Pa"/>
<item description="Permafrost is soil or rock that has remained at a temperature at or below zero degrees Celsius throughout the seasonal cycle for two or more years. &quot;Thickness&quot; means the vertical extent of a layer." label="PermafrostLayerThickness" title="Permafrost Layer Thickness" uid="permafrost_layer_thickness" units="m"/>
<item description="Global average sea level change is due to change in volume of the water in the ocean, caused by mass and/or density change, or to change in the volume of the ocean basins, caused by tectonics etc. It is sometimes called &quot;eustatic&quot;, which is a term that also has other definitions. It differs from the change in the global average sea surface height relative to the centre of the Earth by the global average vertical movement of the ocean floor. Zero sea level change is an arbitrary level. Phase is the initial angle of a wave modelled by a sinusoidal function. A coordinate variable of harmonic_period should be used to specify the period of the sinusoidal wave." label="PhaseOfGlobalAverageSeaLevelChange" title="Phase of Global Average Sea Level Change" uid="phase_of_global_average_sea_level_change" units="degree"/>
<item description="&quot;Photolysis&quot; is a chemical reaction in which a chemical compound is broken down by photons. The &quot;reaction rate&quot; is the rate at which the reactants of a chemical reaction form the products. The chemical formula for nitrogen dioxide is NO2." label="PhotolysisRateOfNitrogenDioxide" title="Photolysis Rate of Nitrogen Dioxide" uid="photolysis_rate_of_nitrogen_dioxide" units="s-1"/>
<item description="&quot;Photolysis&quot; is a chemical reaction in which a chemical compound is broken down by photons. The &quot;reaction rate&quot; is the rate at which the reactants of a chemical reaction form the products. The chemical formula for ozone is O3. The IUPAC name for ozone is trioxygen. &quot;1D oxygen atom&quot; means the singlet D state, an excited state, of the oxygen atom." label="PhotolysisRateOfOzoneTo1dOxygenAtom" title="Photolysis Rate of Ozone To 1d Oxygen Atom" uid="photolysis_rate_of_ozone_to_1D_oxygen_atom" units="s-1"/>
<item description="" label="PlanetaryAlbedo" title="Planetary Albedo" uid="planetary_albedo" units="1"/>
<item description="&quot;Respiration carbon&quot; refers to the rate at which biomass is respired expressed as the mass of carbon which it contains. Plant respiration is the sum of respiration by parts of plants both above and below the soil. Plants which photosynthesise are autotrophs i.e. &quot;producers&quot; of the biomass which they respire from inorganic precursors using sunlight for energy. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="PlantRespirationCarbonFlux" title="Plant Respiration Carbon Flux" uid="plant_respiration_carbon_flux" units="kg m-2 s-1"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite. Platform azimuth angle is the horizontal angle between the line of sight from the observation point to the platform and a reference direction at the observation point, which is often due north. The angle is measured clockwise positive, starting from the reference direction. A comment attribute should be added to a data variable with the standard name platform_azimuth_angle to specify the reference direction. A standard name also exists for sensor_azimuth_angle. For some viewing geometries the sensor and the platform cannot be assumed to be close enough to neglect the difference in calculated azimuth angle." label="PlatformAzimuthAngle" title="Platform Azimuth Angle" uid="platform_azimuth_angle" units="degree"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite. The platform course is the direction in which the platform is travelling (not necessarily the same as the direction in which it is pointing, called platform_orientation)." label="PlatformCourse" title="Platform Course" uid="platform_course" units="degree"/>
<item description="A variable with the standard name of platform_id contains strings which help to identify the platform from which an observation was made. For example, this may be a WMO station identification number." label="PlatformId" title="Platform Id" uid="platform_id" units=""/>
<item description="A variable with the standard name of platform_name contains strings which help to identify the platform from which an observation was made. For example, this may be a geographical place name such as &quot;South Pole&quot; or the name of a meteorological observing station. " label="PlatformName" title="Platform Name" uid="platform_name" units=""/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite. The platform orientation is the direction in which the &quot;front&quot; or longitudinal axis of the platform is pointing (not necessarily the same as the direction in which it is travelling, called platform_course)." label="PlatformOrientation" title="Platform Orientation" uid="platform_orientation" units="degree"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite." label="PlatformPitchAngle" title="Platform Pitch Angle" uid="platform_pitch_angle" units="degree"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite." label="PlatformPitchRate" title="Platform Pitch Rate" uid="platform_pitch_rate" units="degree s-1"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite." label="PlatformRollAngle" title="Platform Roll Angle" uid="platform_roll_angle" units="degree"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite." label="PlatformRollRate" title="Platform Roll Rate" uid="platform_roll_rate" units="degree s-1"/>
<item description="&quot;wrt&quot; means with respect to. Speed is the magnitude of velocity. Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite. The platform speed with respect to air is often called the &quot;air speed&quot; of the platform." label="PlatformSpeedWrtAir" title="Platform Speed Wrt Air" uid="platform_speed_wrt_air" units="m s-1"/>
<item description="&quot;wrt&quot; means with respect to. Speed is the magnitude of velocity. Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite. The platform speed with respect to ground is relative to the solid Earth beneath it, i.e. the sea floor for a ship. It is often called the &quot;ground speed&quot; of the platform." label="PlatformSpeedWrtGround" title="Platform Speed Wrt Ground" uid="platform_speed_wrt_ground" units="m s-1"/>
<item description="&quot;wrt&quot; means with respect to. Speed is the magnitude of velocity. Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite." label="PlatformSpeedWrtSeaWater" title="Platform Speed Wrt Sea Water" uid="platform_speed_wrt_sea_water" units="m s-1"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite. Platform view angle is the angle between the line of sight from the platform and the direction straight vertically down. Zero view angle means looking directly beneath the platform. There is no standardized sign convention for platform_view_angle. A standard name also exists for sensor_view_angle. For some viewing geometries the sensor and the platform cannot be assumed to be close enough to neglect the difference in calculated view angle. " label="PlatformViewAngle" title="Platform View Angle" uid="platform_view_angle" units="degree"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite." label="PlatformYawAngle" title="Platform Yaw Angle" uid="platform_yaw_angle" units="degree"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite." label="PlatformYawRate" title="Platform Yaw Rate" uid="platform_yaw_rate" units="degree s-1"/>
<item description="Standard names for &quot;platform&quot; describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite. Platform zenith angle is the the angle between the line of sight to the platform and the local zenith at the observation target. This angle is measured starting from directly overhead and its range is from zero (directly overhead the observation target) to 180 degrees (directly below the observation target). Local zenith is a line perpendicular to the Earth's surface at a given location. &quot;Observation target&quot; means a location on the Earth defined by the sensor performing the observations. A standard name also exists for sensor_zenith_angle. For some viewing geometries the sensor and the platform cannot be assumed to be close enough to neglect the difference in calculated zenith angle." label="PlatformZenithAngle" title="Platform Zenith Angle" uid="platform_zenith_angle" units="degree"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)" label="PotentialEnergyContentOfAtmosphereLayer" title="Potential Energy Content of Atmosphere Layer" uid="potential_energy_content_of_atmosphere_layer" units="J m-2"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Atmosphere potential vorticity is the vertically averaged absolute vorticity of a layer of the atmosphere divided by the pressure difference from the bottom to the top of the layer." label="PotentialVorticityOfAtmosphereLayer" title="Potential Vorticity of Atmosphere Layer" uid="potential_vorticity_of_atmosphere_layer" units="Pa-1 s-1"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Ocean potential vorticity is the vertically averaged absolute vorticity of a layer of the ocean divided by the thickness of the layer." label="PotentialVorticityOfOceanLayer" title="Potential Vorticity of Ocean Layer" uid="potential_vorticity_of_ocean_layer" units="m-1 s-1"/>
<item description="&quot;Amount&quot; means mass per unit area." label="PrecipitationAmount" title="Precipitation Amount" uid="precipitation_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="PrecipitationFlux" title="Precipitation Flux" uid="precipitation_flux" units="kg m-2 s-1"/>
<item description="&quot;Canopy&quot; means the plant or vegetation canopy. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  Unless indicated in the cell_methods attribute, a quantity is assumed to apply to the whole area of each horizontal grid box. Previously, the qualifier where_type was used to specify that the quantity applies only to the part of the grid box of the named type.  Names containing the where_type qualifier are deprecated and newly created data should use the cell_methods attribute to indicate the horizontal area to which the quantity applies." label="PrecipitationFluxOntoCanopy" title="Precipitation Flux Onto Canopy" uid="precipitation_flux_onto_canopy" units="kg m-2 s-1"/>
<item description="The &quot;effective cloud top defined by infrared radiation&quot; is (approximately) the geometric height above the surface that is one optical depth at infrared wavelengths (in the region of 11 micrometers) below the cloud top that would be detected by visible and lidar techniques. Reference: Minnis, P. et al 2011 CERES Edition-2 Cloud Property Retrievals Using TRMM VIRS and Terra and Aqua MODIS Data x2014; Part I: Algorithms IEEE Transactions on Geoscience and Remote Sensing, 49(11), 4374-4400. doi: http://dx.doi.org/10.1109/TGRS.2011.2144601." label="PressureAtEffectiveCloudTopDefinedByInfraredRadiation" title="Pressure At Effective Cloud Top Defined by Infrared Radiation" uid="pressure_at_effective_cloud_top_defined_by_infrared_radiation" units="Pa"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. Air temperature is the bulk temperature of the air, not the surface (skin) temperature. &quot;omegaX&quot; is used for brevity to mean &quot;lagrangian_tendency_of_air_pressure in standard names constructed as a combination of omega with some other quantity." label="ProductOfAirTemperatureAndOmega" title="Product of Air Temperature And Omega" uid="product_of_air_temperature_and_omega" units="K Pa s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. &quot;specific&quot; means per unit mass. Air temperature is the bulk temperature of the air, not the surface (skin) temperature. Specific humidity is the mass fraction of water vapor in (moist) air." label="ProductOfAirTemperatureAndSpecificHumidity" title="Product of Air Temperature And Specific Humidity" uid="product_of_air_temperature_and_specific_humidity" units="K"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and normally given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="ProductOfEastwardSeaWaterVelocityAndSalinity" title="Product of Eastward Sea Water Velocity And Salinity" uid="product_of_eastward_sea_water_velocity_and_salinity" units="m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward)." label="ProductOfEastwardSeaWaterVelocityAndTemperature" title="Product of Eastward Sea Water Velocity And Temperature" uid="product_of_eastward_sea_water_velocity_and_temperature" units="K m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. Air temperature is the bulk temperature of the air, not the surface (skin) temperature. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="ProductOfEastwardWindAndAirTemperature" title="Product of Eastward Wind And Air Temperature" uid="product_of_eastward_wind_and_air_temperature" units="K m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. Geopotential height is the geopotential divided by the standard acceleration due to gravity. It is numerically similar to the altitude (or geometric height) and not to the quantity with standard name height, which is relative to the surface. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="ProductOfEastwardWindAndGeopotentialHeight" title="Product of Eastward Wind And Geopotential Height" uid="product_of_eastward_wind_and_geopotential_height" units="m2 s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="ProductOfEastwardWindAndNorthwardWind" title="Product of Eastward Wind And Northward Wind" uid="product_of_eastward_wind_and_northward_wind" units="m2 s-2"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) &quot;omegaX&quot; is used for brevity to mean &quot;lagrangian_tendency_of_air_pressure in standard names constructed as a combination of omega with some other quantity." label="ProductOfEastwardWindAndOmega" title="Product of Eastward Wind And Omega" uid="product_of_eastward_wind_and_omega" units="Pa m s-2"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. &quot;specific&quot; means per unit mass. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Specific humidity is the mass fraction of water vapor in (moist) air. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="ProductOfEastwardWindAndSpecificHumidity" title="Product of Eastward Wind And Specific Humidity" uid="product_of_eastward_wind_and_specific_humidity" units="m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) Upward air velocity is the vertical component of the 3D air velocity vector." label="ProductOfEastwardWindAndUpwardAirVelocity" title="Product of Eastward Wind And Upward Air Velocity" uid="product_of_eastward_wind_and_upward_air_velocity" units="m2 s-2"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. Geopotential height is the geopotential divided by the standard acceleration due to gravity. It is numerically similar to the altitude (or geometric height) and not to the quantity with standard name height, which is relative to the surface. &quot;omegaX&quot; is used for brevity to mean &quot;lagrangian_tendency_of_air_pressure in standard names constructed as a combination of omega with some other quantity." label="ProductOfGeopotentialHeightAndOmega" title="Product of Geopotential Height And Omega" uid="product_of_geopotential_height_and_omega" units="Pa m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and normally given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="ProductOfNorthwardSeaWaterVelocityAndSalinity" title="Product of Northward Sea Water Velocity And Salinity" uid="product_of_northward_sea_water_velocity_and_salinity" units="m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward)." label="ProductOfNorthwardSeaWaterVelocityAndTemperature" title="Product of Northward Sea Water Velocity And Temperature" uid="product_of_northward_sea_water_velocity_and_temperature" units="K m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. Air temperature is the bulk temperature of the air, not the surface (skin) temperature. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="ProductOfNorthwardWindAndAirTemperature" title="Product of Northward Wind And Air Temperature" uid="product_of_northward_wind_and_air_temperature" units="K m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. Geopotential height is the geopotential divided by the standard acceleration due to gravity. It is numerically similar to the altitude (or geometric height) and not to the quantity with standard name height, which is relative to the surface. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="ProductOfNorthwardWindAndGeopotentialHeight" title="Product of Northward Wind And Geopotential Height" uid="product_of_northward_wind_and_geopotential_height" units="m2 s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) &quot;omegaX&quot; is used for brevity to mean &quot;lagrangian_tendency_of_air_pressure in standard names constructed as a combination of omega with some other quantity." label="ProductOfNorthwardWindAndOmega" title="Product of Northward Wind And Omega" uid="product_of_northward_wind_and_omega" units="Pa m s-2"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. &quot;specific&quot; means per unit mass. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Specific humidity is the mass fraction of water vapor in (moist) air. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="ProductOfNorthwardWindAndSpecificHumidity" title="Product of Northward Wind And Specific Humidity" uid="product_of_northward_wind_and_specific_humidity" units="m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) Upward air velocity is the vertical component of the 3D air velocity vector." label="ProductOfNorthwardWindAndUpwardAirVelocity" title="Product of Northward Wind And Upward Air Velocity" uid="product_of_northward_wind_and_upward_air_velocity" units="m2 s-2"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. Air temperature is the bulk temperature of the air, not the surface (skin) temperature. &quot;omegaX&quot; is used for brevity to mean &quot;lagrangian_tendency_of_air_pressure in standard names constructed as a combination of omega with some other quantity." label="ProductOfOmegaAndAirTemperature" title="Product of Omega And Air Temperature" uid="product_of_omega_and_air_temperature" units="K Pa s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. &quot;specific&quot; means per unit mass. Specific humidity is the mass fraction of water vapor in (moist) air. &quot;omegaX&quot; is used for brevity to mean &quot;lagrangian_tendency_of_air_pressure in standard names constructed as a combination of omega with some other quantity." label="ProductOfOmegaAndSpecificHumidity" title="Product of Omega And Specific Humidity" uid="product_of_omega_and_specific_humidity" units="Pa s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. &quot;specific&quot; means per unit mass. Specific humidity is the mass fraction of water vapor in (moist) air. &quot;omegaX&quot; is used for brevity to mean &quot;lagrangian_tendency_of_air_pressure in standard names constructed as a combination of omega with some other quantity." label="ProductOfSpecificHumidityAndOmega" title="Product of Specific Humidity And Omega" uid="product_of_specific_humidity_and_omega" units="Pa s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. Air temperature is the bulk temperature of the air, not the surface (skin) temperature. A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Upward air velocity is the vertical component of the 3D air velocity vector." label="ProductOfUpwardAirVelocityAndAirTemperature" title="Product of Upward Air Velocity And Air Temperature" uid="product_of_upward_air_velocity_and_air_temperature" units="K m s-1"/>
<item description="&quot;product_of_X_and_Y&quot; means X*Y. &quot;specific&quot; means per unit mass. A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Specific humidity is the mass fraction of water vapor in (moist) air. Upward air velocity is the vertical component of the 3D air velocity vector." label="ProductOfUpwardAirVelocityAndSpecificHumidity" title="Product of Upward Air Velocity And Specific Humidity" uid="product_of_upward_air_velocity_and_specific_humidity" units="m s-1"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, when this is not true longitude, positive with increasing x. Projection coordinates are distances in the x- and y-directions on a plane onto which the surface of the Earth has been projected according to a map projection. The relationship between the projection coordinates and latitude and longitude is described by the grid_mapping." label="ProjectionXCoordinate" title="Projection X Coordinate" uid="projection_x_coordinate" units="m"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, when this is not true latitude, positive with increasing y. Projection coordinates are distances in the x- and y-directions on a plane onto which the surface of the Earth has been projected according to a map projection. The relationship between the projection coordinates and latitude and longitude is described by the grid_mapping." label="ProjectionYCoordinate" title="Projection Y Coordinate" uid="projection_y_coordinate" units="m"/>
<item description="Potential temperature is the temperature a parcel of air or sea water would have if moved adiabatically to sea level pressure." label="PseudoEquivalentPotentialTemperature" title="Pseudo Equivalent Potential Temperature" uid="pseudo_equivalent_potential_temperature" units="K"/>
<item description="" label="PseudoEquivalentTemperature" title="Pseudo Equivalent Temperature" uid="pseudo_equivalent_temperature" units="K"/>
<item description="A velocity is a vector quantity.  Radial velocity away from instrument means the component of the velocity along the line of sight of the instrument where positive implies movement away from the instrument (i.e. outward). The &quot;instrument&quot; (examples are radar and lidar) is the device used to make an observation." label="RadialSeaWaterVelocityAwayFromInstrument" title="Radial Sea Water Velocity Away From Instrument" uid="radial_sea_water_velocity_away_from_instrument" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;Radial velocity away from instrument&quot; means the component of the velocity of the scatterers along the line of sight of the instrument where positive implies movement away from the instrument (i.e. outward). The &quot;instrument&quot; (examples are radar and lidar) is the device used to make the observation, and the &quot;scatterers&quot; are what causes the transmitted signal to be returned to the instrument (examples are aerosols, hydrometeors and refractive index irregularities), of whatever kind the instrument detects." label="RadialVelocityOfScatterersAwayFromInstrument" title="Radial Velocity of Scatterers Away From Instrument" uid="radial_velocity_of_scatterers_away_from_instrument" units="m s-1"/>
<item description="Frequency is the number of oscillations of a wave per unit time.  The radiation frequency can refer to any electromagnetic wave, such as light, heat radiation and radio waves." label="RadiationFrequency" title="Radiation Frequency" uid="radiation_frequency" units="s-1"/>
<item description="The radiation wavelength can refer to any electromagnetic wave, such as light, heat radiation and radio waves." label="RadiationWavelength" title="Radiation Wavelength" uid="radiation_wavelength" units="m"/>
<item description="The average radius of a central region of clouds in tropical cyclones lacking well-defined eye features, which is computed by averaging the great circle distance in four cardinal directions. The radius in each direction is measured from the estimated storm center position to a warm point that exceeds a threshold brightness temperature at top of atmosphere limit. The threshold applied should be recorded in a coordinate variable having the standard_name of toa_brightness_temperature. A coordinate variable of radiation_wavelength, sensor_band_central_radiation_wavelength, or radiation_frequency may be specified to indicate that the brightness temperature applies at specific wavelengths or frequencies." label="RadiusOfTropicalCycloneCentralDenseOvercastRegion" title="Radius of Tropical Cyclone Central Dense Overcast Region" uid="radius_of_tropical_cyclone_central_dense_overcast_region" units="m"/>
<item description="The radius of a tropical cyclone eye is defined to be the great circle distance measured from the cyclone center to the eye wall." label="RadiusOfTropicalCycloneEye" title="Radius of Tropical Cyclone Eye" uid="radius_of_tropical_cyclone_eye" units="m"/>
<item description="The great circle distance measured from the tropical cyclone center to the region of sustained 1-minute duration maximum wind speed, as defined by the standard name, tropical_cyclone_maximum_sustained_wind_speed." label="RadiusOfTropicalCycloneMaximumSustainedWindSpeed" title="Radius of Tropical Cyclone Maximum Sustained Wind Speed" uid="radius_of_tropical_cyclone_maximum_sustained_wind_speed" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area." label="RainfallAmount" title="Rainfall Amount" uid="rainfall_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="RainfallFlux" title="Rainfall Flux" uid="rainfall_flux" units="kg m-2 s-1"/>
<item description="" label="RainfallRate" title="Rainfall Rate" uid="rainfall_rate" units="m s-1"/>
<item description="The &quot;reaction rate&quot; is the rate at which the reactants of a chemical reaction form the products. The rate of &quot;hydroxyl radical destruction due to reaction with nmvoc&quot; is the nmvoc reactivity with regard to reactions with OH. It is the weighted sum of the reactivity of all individual nmvoc species with OH. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The chemical formula for the hydroxyl radical is OH. In chemistry, a &quot;radical&quot; is a highly reactive, and therefore shortlived, species. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="RateOfHydroxylRadicalDestructionDueToReactionWithNmvoc" title="Rate of Hydroxyl Radical Destruction Due To Reaction With Nmvoc" uid="rate_of_hydroxyl_radical_destruction_due_to_reaction_with_nmvoc" units="s-1"/>
<item description="Sea surface density is the density of sea water near the surface (including the part under sea-ice, if any). &quot;component_derivative_of_X&quot; means derivative of X with respect to distance in the component direction, which may be northward, southward, eastward, westward, x or y. The last two indicate derivatives along the axes of the grid, whether or not they are true longitude and latitude.  &quot;ratio_of_X_to_Y&quot;  means X/Y.  &quot;Ocean rigid lid pressure&quot; means the pressure at the surface of an ocean model assuming that it is bounded above by a rigid lid." label="RatioOfXDerivativeOfOceanRigidLidPressureToSeaSurfaceDensity" title="Ratio of X Derivative of Ocean Rigid Lid Pressure To Sea Surface Density" uid="ratio_of_x_derivative_of_ocean_rigid_lid_pressure_to_sea_surface_density" units="m s-2"/>
<item description="Sea surface density is the density of sea water near the surface (including the part under sea-ice, if any). &quot;component_derivative_of_X&quot; means derivative of X with respect to distance in the component direction, which may be northward, southward, eastward, westward, x or y. The last two indicate derivatives along the axes of the grid, whether or not they are true longitude and latitude.  &quot;ratio_of_X_to_Y&quot; means X/Y.  &quot;Ocean rigid lid pressure&quot; means the pressure at the surface of an ocean model assuming that it is bounded above by a rigid lid." label="RatioOfYDerivativeOfOceanRigidLidPressureToSeaSurfaceDensity" title="Ratio of Y Derivative of Ocean Rigid Lid Pressure To Sea Surface Density" uid="ratio_of_y_derivative_of_ocean_rigid_lid_pressure_to_sea_surface_density" units="m s-2"/>
<item description="Realization is used to label a dimension that can be thought of asa statistical sample, e.g., labelling members of a model ensemble." label="Realization" title="Realization" uid="realization" units="1"/>
<item description="Sea water density is the in-situ density (not the potential density). For a rigid lid Boussinesq geopotential ocean model the density of the sea water is maintained at a constant reference density.  In a model using the rigid lid Boussinesq approximation , the vertical grid coordinates (and hence the grid cell volumes) are time invariant." label="ReferenceSeaWaterDensityForBoussinesqApproximation" title="Reference Sea Water Density For Boussinesq Approximation" uid="reference_sea_water_density_for_boussinesq_approximation" units="kg m-3"/>
<item description="A variable with the standard name of region contains strings which indicate geographical regions. These strings must be chosen from the standard region list." label="Region" title="Region" uid="region" units=""/>
<item description="" label="RelativeHumidity" title="Relative Humidity" uid="relative_humidity" units="1"/>
<item description="Relative humidity at which the size of a sampled aerosol particle was selected. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself." label="RelativeHumidityForAerosolParticleSizeSelection" title="Relative Humidity For Aerosol Particle Size Selection" uid="relative_humidity_for_aerosol_particle_size_selection" units="1"/>
<item description="Standard names for platform describe the motion and orientation of the vehicle from which observations are made e.g. aeroplane, ship or satellite. relative_platform_azimuth_angle is the difference between the viewing geometries from two different platforms over the same observation target. It is the difference between the values of two quantities with standard name platform_azimuth_angle. There is no standardized sign convention for  relative_platform_azimuth_angle. &quot;Observation target&quot; means a location on the Earth defined by the sensor performing the observations. A standard name also exists for relative_sensor_azimuth_angle. For some viewing geometries the sensor and the platform cannot be assumed to be close enough to neglect the difference in calculated azimuth angle." label="RelativePlatformAzimuthAngle" title="Relative Platform Azimuth Angle" uid="relative_platform_azimuth_angle" units="degree"/>
<item description="relative_sensor_azimuth_angle is the difference between the viewing geometries from two different sensors over the same observation target. It is the difference between the values of two quantities with standard name sensor_azimuth_angle. There is no standardized sign convention for relative_sensor_azimuth_angle. &quot;Observation target&quot; means a location on the Earth defined by the sensor performing the observations. A standard name also exists for relative_platform_azimuth_angle, where &quot;platform&quot; refers to the vehicle from which observations are made e.g. aeroplane, ship, or satellite. For some viewing geometries the sensor and the platform cannot be assumed to be close enough to neglect the difference in calculated azimuth angle." label="RelativeSensorAzimuthAngle" title="Relative Sensor Azimuth Angle" uid="relative_sensor_azimuth_angle" units="degree"/>
<item description="Richardson number is a measure of dynamic stability and can be used to diagnose the existence of turbulent flow.  It is defined as the ratio of the buoyant suppression of turbulence (i.e. how statically stable or unstable the conditions are)  to the kinetic energy available to generate turbulence  in a shear flow." label="RichardsonNumberInSeaWater" title="Richardson Number in Sea Water" uid="richardson_number_in_sea_water" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area." label="RootCarbonContent" title="Root Carbon Content" uid="root_carbon_content" units="kg m-2"/>
<item description="Depth is the vertical distance below the surface. The root depth is maximum depth of soil reached by plant roots, from which they can extract moisture." label="RootDepth" title="Root Depth" uid="root_depth" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area. Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage." label="RunoffAmount" title="Runoff Amount" uid="runoff_amount" units="kg m-2"/>
<item description="Runoff is the liquid water which drains from land. &quot;Runoff_excluding_baseflow&quot; is the sum of surface runoff and subsurface runoff excluding baseflow.  Baseflow is subsurface runoff which takes place below the level of the water table.  &quot;Amount&quot; means mass per unit area." label="RunoffAmountExcludingBaseflow" title="Runoff Amount Excluding Baseflow" uid="runoff_amount_excluding_baseflow" units="kg m-2"/>
<item description="Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="RunoffFlux" title="Runoff Flux" uid="runoff_flux" units="kg m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SaltFluxIntoSeaWaterFromRivers" title="Salt Flux Into Sea Water From Rivers" uid="salt_flux_into_sea_water_from_rivers" units="kg m-2 s-1"/>
<item description="The scattering angle is that between the direction of the beam of incident radiation and the direction into which it is scattered." label="ScatteringAngle" title="Scattering Angle" uid="scattering_angle" units="rad"/>
<item description="A variable with the standard name of scene_type_of_dvorak_tropical_cyclone_cloud_region contains integers which can be translated to strings using flag_values and flag_meanings attributes. It indicates the Advanced Dvorak Technique tropical cyclone cloud region scene type chosen from the following list: uniform_central_dense_overcast; embedded_center; irregular_central_dense_overcast; curved_band; shear. Alternatively, the data variable may contain strings chosen from the same standardised list to indicate the scene type. Reference: Olander, T. L., &amp; Velden, C. S., The Advanced Dvorak Technique: Continued Development of an Objective Scheme to Estimate Tropical Cyclone Intensity Using Geostationary Infrared Satellite Imagery (2007). American Meterorological Society Weather and Forecasting, 22, 287-298." label="SceneTypeOfDvorakTropicalCycloneCloudRegion" title="Scene Type of Dvorak Tropical Cyclone Cloud Region" uid="scene_type_of_dvorak_tropical_cyclone_cloud_region" units="1"/>
<item description="A variable with the standard name of scene_type_of_dvorak_tropical_cyclone_eye_region contains integers which can be translated to strings using flag_values and flag_meanings attributes. It indicates the Advanced Dvorak Technique tropical cyclone eye region scene type chosen from the following list: clear_ragged_or_obscured_eye; pinhole_eye; large_eye;  no_eye.  Alternatively, the data variable may contain strings chosen from the same standardised list to indicate the scene type. Reference: Olander, T. L., &amp; Velden, C. S., The Advanced Dvorak Technique: Continued Development of an Objective Scheme to Estimate Tropical Cyclone Intensity Using Geostationary Infrared Satellite Imagery (2007). American Meterorological Society Weather and Forecasting, 22, 287-298." label="SceneTypeOfDvorakTropicalCycloneEyeRegion" title="Scene Type of Dvorak Tropical Cyclone Eye Region" uid="scene_type_of_dvorak_tropical_cyclone_eye_region" units="1"/>
<item description="&quot;X_area&quot; means the horizontal area occupied by X within the grid cell. The extent of an individual grid cell is defined by the horizontal coordinates and any associated coordinate bounds or by a string valued auxiliary coordinate variable with a standard name of &quot;region&quot;." label="SeaArea" title="Sea Area" uid="sea_area" units="m2"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell." label="SeaAreaFraction" title="Sea Area Fraction" uid="sea_area_fraction" units="1"/>
<item description="The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. (The volume enclosed between the geoid and the sea floor equals the mean volume of water in the ocean.) In an ocean GCM the geoid is the surface of zero depth, or the rigid lid if the model uses that approximation." label="SeaFloorDepthBelowGeoid" title="Sea Floor Depth Below Geoid" uid="sea_floor_depth_below_geoid" units="m"/>
<item description="sea_level means mean sea level, which is close to the geoid in sea areas." label="SeaFloorDepthBelowSeaLevel" title="Sea Floor Depth Below Sea Level" uid="sea_floor_depth_below_sea_level" units="m"/>
<item description="The sea_floor_depth_below_sea_surface is the vertical distance between the sea surface and the seabed as measured at a given point in space including the variance caused by tides and possibly waves." label="SeaFloorDepthBelowSeaSurface" title="Sea Floor Depth Below Sea Surface" uid="sea_floor_depth_below_sea_surface" units="m"/>
<item description="The albedo of sea ice." label="SeaIceAlbedo" title="Sea Ice Albedo" uid="sea_ice_albedo" units="1"/>
<item description="&quot;Amount&quot; means mass per unit area." label="SeaIceAmount" title="Sea Ice Amount" uid="sea_ice_amount" units="kg m-2"/>
<item description="&quot;Amount&quot; means mass per unit area.  Surface amount refers to the amount on the ground, excluding that on the plant or vegetation canopy.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SeaIceAndSurfaceSnowAmount" title="Sea Ice And Surface Snow Amount" uid="sea_ice_and_surface_snow_amount" units="kg m-2"/>
<item description="&quot;X_area&quot; means the horizontal area occupied by X within the grid cell. The extent of an individual grid cell is defined by the horizontal coordinates and any associated coordinate bounds or by a string valued auxiliary coordinate variable with a standard name of &quot;region&quot;." label="SeaIceArea" title="Sea Ice Area" uid="sea_ice_area" units="m2"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. Sea ice area fraction is area of the sea surface occupied by sea ice. It is also called &quot;sea ice concentration&quot;." label="SeaIceAreaFraction" title="Sea Ice Area Fraction" uid="sea_ice_area_fraction" units="1"/>
<item description="A variable with the standard name of sea_ice_classification contains strings which indicate the character of the ice surface e.g. open_ice, or first_year_ice. These strings have not yet been standardised. However, and whenever possible, they should follow the terminology defined in the WMO Standard Nomenclature for Sea Ice Classification. Alternatively, the data variable may contain integers which can be translated to strings using flag_values and flag_meanings attributes." label="SeaIceClassification" title="Sea Ice Classification" uid="sea_ice_classification" units="1"/>
<item description="Sea ice draft is the depth of the sea-ice lower surface below the water surface." label="SeaIceDraft" title="Sea Ice Draft" uid="sea_ice_draft" units="m"/>
<item description="The term sea_ice_extent means the total area of all grid cells in which the sea ice area fraction equals or exceeds a threshold, often chosen to be 15 per cent. The threshold must be specified by supplying a coordinate variable or scalar coordinate variable with the standard name of sea_ice_area_fraction.  The horizontal domain over which sea ice extent is calculated is described by the associated coordinate variables and coordinate bounds or by a coordinate variable or scalar coordinate variable with the standard name of &quot;region&quot; supplied according to section 6.1.1 of the CF conventions." label="SeaIceExtent" title="Sea Ice Extent" uid="sea_ice_extent" units="m2"/>
<item description="Sea ice freeboard is the height of the sea-ice upper surface above the water surface." label="SeaIceFreeboard" title="Sea Ice Freeboard" uid="sea_ice_freeboard" units="m"/>
<item description="" label="SeaIceMass" title="Sea Ice Mass" uid="sea_ice_mass" units="kg"/>
<item description="Sea ice salinity is the salt content of sea ice, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and normally given as 1e-3 or 0.001 i.e. parts per thousand. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s." label="SeaIceSalinity" title="Sea Ice Salinity" uid="sea_ice_salinity" units="1e-3"/>
<item description="Speed is the magnitude of velocity." label="SeaIceSpeed" title="Sea Ice Speed" uid="sea_ice_speed" units="m s-1"/>
<item description="The surface temperature is the (skin) temperature at the interface, not the bulk temperature of the medium above or below.  &quot;Sea ice surface temperature&quot; is the temperature that exists at the interface of sea ice and an overlying medium which may be air or snow.  In areas of snow covered sea ice, sea_ice_surface_temperature is not the same as the quantity with standard name surface_temperature." label="SeaIceSurfaceTemperature" title="Sea Ice Surface Temperature" uid="sea_ice_surface_temperature" units="K"/>
<item description="" label="SeaIceTemperature" title="Sea Ice Temperature" uid="sea_ice_temperature" units="K"/>
<item description="" label="SeaIceThickness" title="Sea Ice Thickness" uid="sea_ice_thickness" units="m"/>
<item description="Transport across_line means that which crosses a particular line on the Earth's surface; formally this means the integral along the line of the normal component of the transport." label="SeaIceTransportAcrossLine" title="Sea Ice Transport Across Line" uid="sea_ice_transport_across_line" units="kg s-1"/>
<item description="&quot;X_volume&quot; means the volume occupied by X within the grid cell." label="SeaIceVolume" title="Sea Ice Volume" uid="sea_ice_volume" units="m3"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Displacement&quot; means the change in geospatial position of an object that has moved over time. If possible, the time interval over which the motion took place should be specified using a bounds variable for the time coordinate variable.  A displacement can be represented as a vector. Such a vector should however not be interpreted as describing a rectilinear, constant speed motion but merely as an indication that the start point of the vector is found at the tip of the vector after the time interval associated with the displacement variable.  A displacement does not prescribe a trajectory. Sea ice displacement can be defined as a two-dimensional vector, with no vertical component. An x displacement is calculated from the difference in the moving object's grid x coordinate between the start and end of the time interval associated with the displacement variable." label="SeaIceXDisplacement" title="Sea Ice X Displacement" uid="sea_ice_x_displacement" units="m"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x." label="SeaIceXTransport" title="Sea Ice X Transport" uid="sea_ice_x_transport" units="kg s-1"/>
<item description="A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x." label="SeaIceXVelocity" title="Sea Ice X Velocity" uid="sea_ice_x_velocity" units="m s-1"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Displacement&quot; means the change in geospatial position of an object that has moved over time. If possible, the time interval over which the motion took place should be specified using a bounds variable for the time coordinate variable. A displacement can be represented as a vector. Such a vector should however not be interpreted as describing a rectilinear, constant speed motion but merely as an indication that the start point of the vector is found at the tip of the vector after the time interval associated with the displacement variable.  A displacement does not prescribe a trajectory. Sea ice displacement can be defined as a two-dimensional vector, with no vertical component. A y displacement is calculated from the difference in the moving object's grid y coordinate between the start and end of the time interval associated with the displacement variable." label="SeaIceYDisplacement" title="Sea Ice Y Displacement" uid="sea_ice_y_displacement" units="m"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y." label="SeaIceYTransport" title="Sea Ice Y Transport" uid="sea_ice_y_transport" units="kg s-1"/>
<item description="A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y." label="SeaIceYVelocity" title="Sea Ice Y Velocity" uid="sea_ice_y_velocity" units="m s-1"/>
<item description="Sea surface density is the density of sea water near the surface (including the part under sea-ice, if any)." label="SeaSurfaceDensity" title="Sea Surface Density" uid="sea_surface_density" units="kg m-3"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The sea surface foundation temperature is the water temperature that is not influenced by a thermally stratified layer of diurnal temperature variability (either by daytime warming or nocturnal cooling). The foundation temperature is named to indicate that it is the temperature from which the growth of the diurnal thermocline develops each day, noting that on some occasions with a deep mixed layer there is no clear foundation temperature in the surface layer. In general, sea surface foundation temperature will be similar to a night time minimum or pre-dawn value at depths of between approximately 1 and 5 meters. In the absence of any diurnal signal, the foundation temperature is considered equivalent to the quantity with standard name sea_surface_subskin_temperature. The sea surface foundation temperature defines a level in the upper water column that varies in depth, space, and time depending on the local balance between thermal stratification and turbulent energy and is expected to change slowly over the course of a day. If possible, a data variable with the standard name sea_surface_foundation_temperature should be used with a scalar vertical coordinate variable to specify the depth of the foundation level. Sea surface foundation temperature is measured at the base of the diurnal thermocline or as close to the water surface as possible in the absence of thermal stratification. Only in situ contact thermometry is able to measure the sea surface foundation temperature. Analysis procedures must be used to estimate sea surface foundation temperature value from radiometric satellite measurements of the quantities with standard names sea_surface_skin_temperature and sea_surface_subskin_temperature.  Sea surface foundation temperature provides a connection with the historical concept of a &quot;bulk&quot; sea surface temperature considered representative of the oceanic mixed layer temperature that is typically represented by any sea temperature measurement within the upper ocean over a depth range of 1 to approximately 20 meters. The general term, &quot;bulk&quot; sea surface temperature, has the standard name sea_surface_temperature with no associated vertical coordinate axis. Sea surface foundation temperature provides a more precise, well-defined quantity than &quot;bulk&quot; sea surface temperature and, consequently, is more representative of the mixed layer temperature.  The temperature of sea water at a particular depth (other than the foundation level) should be reported using the standard name sea_water_temperature and, wherever possible, supplying a vertical coordinate axis or scalar coordinate variable." label="SeaSurfaceFoundationTemperature" title="Sea Surface Foundation Temperature" uid="sea_surface_foundation_temperature" units="K"/>
<item description="The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. (The volume enclosed between the geoid and the sea floor equals the mean volume of water in the ocean.) In an ocean GCM the geoid is the surface of zero depth, or the rigid lid if the model uses that approximation. &quot;Sea surface height&quot; is a time-varying quantity. By definition of the geoid, the global average of the time-mean sea surface height (i.e. mean sea level) above the geoid must be zero. The standard name for the height of the sea surface above mean sea level is sea_surface_height_above_sea_level. The standard name for the height of the sea surface above the reference ellipsoid is sea_surface_height_above_reference_ellipsoid." label="SeaSurfaceHeightAboveGeoid" title="Sea Surface Height Above Geoid" uid="sea_surface_height_above_geoid" units="m"/>
<item description="&quot;Sea surface height&quot; is a time-varying quantity.  A reference ellipsoid is a mathematical figure that approximates the geoid.  The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest.  The ellipsoid is an approximation because the geoid is an irregular shape. A number of reference ellipsoids are defined for use in the field of geodesy.  The standard name for the height of the sea surface above the geoid is sea_surface_height_above_geoid.  The standard name for the height of the sea surface above mean sea level is sea_surface_height_above_sea_level." label="SeaSurfaceHeightAboveReferenceEllipsoid" title="Sea Surface Height Above Reference Ellipsoid" uid="sea_surface_height_above_reference_ellipsoid" units="m"/>
<item description="sea_level means mean sea level, which is close to the geoid in sea areas. &quot;Sea surface height&quot; is a time-varying quantity. The standard name for the height of the sea surface above the geoid is sea_surface_height_above_geoid. The standard name for the height of the sea surface above the reference ellipsoid is sea_surface_height_above_reference_ellipsoid." label="SeaSurfaceHeightAboveSeaLevel" title="Sea Surface Height Above Sea Level" uid="sea_surface_height_above_sea_level" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Tides are a significant contributor to the observed sea surface height; earth tide means the solid earth tide." label="SeaSurfaceHeightAmplitudeDueToEarthTide" title="Sea Surface Height Amplitude Due To Earth Tide" uid="sea_surface_height_amplitude_due_to_earth_tide" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Tides are a significant contributor to the observed sea surface height; equilibrium ocean tide refers to the long period ocean tide." label="SeaSurfaceHeightAmplitudeDueToEquilibriumOceanTide" title="Sea Surface Height Amplitude Due To Equilibrium Ocean Tide" uid="sea_surface_height_amplitude_due_to_equilibrium_ocean_tide" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Tides are a significant contributor to the observed sea surface height; geocentric ocean tide means the sum total of ocean tide and load tide." label="SeaSurfaceHeightAmplitudeDueToGeocentricOceanTide" title="Sea Surface Height Amplitude Due To Geocentric Ocean Tide" uid="sea_surface_height_amplitude_due_to_geocentric_ocean_tide" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Tides are a significant contributor to the observed sea surface height; non equilibrium ocean tide refers to the long period ocean tide." label="SeaSurfaceHeightAmplitudeDueToNonEquilibriumOceanTide" title="Sea Surface Height Amplitude Due To Non Equilibrium Ocean Tide" uid="sea_surface_height_amplitude_due_to_non_equilibrium_ocean_tide" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Tides are a significant contributor to the observed sea surface height; the pole tide occurs due to variations in the earth's rotation." label="SeaSurfaceHeightAmplitudeDueToPoleTide" title="Sea Surface Height Amplitude Due To Pole Tide" uid="sea_surface_height_amplitude_due_to_pole_tide" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  Altimeter pulses tend to be more strongly refelected by the troughs of sea surface waves than by the crests leading to a bias in the measured sea surface height. This quantity is commonly known as &quot;sea state bias&quot;." label="SeaSurfaceHeightBiasDueToSeaSurfaceRoughness" title="Sea Surface Height Bias Due To Sea Surface Roughness" uid="sea_surface_height_bias_due_to_sea_surface_roughness" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Air pressure and wind at high frequency&quot; means variations in air pressure with periods shorter  than 20 days. These give rise to corresponding variations in sea surface topography. The quantity sea_surface_height_correction_due_to_air_pressure_and_wind_at_high_frequency  should be applied by adding it to the quantity with standard name altimeter_range.  Additional altimeter range corrections are given by the quantities with standard names altimeter_range_correction_due_to_wet_troposphere, altimeter_range_correction_due_to_dry_troposphere, altimeter_range_correction_due_to_ionosphere and sea_surface_height_correction_due_to_air_pressure_at_low_frequency." label="SeaSurfaceHeightCorrectionDueToAirPressureAndWindAtHighFrequency" title="Sea Surface Height Correction Due To Air Pressure And Wind At High Frequency" uid="sea_surface_height_correction_due_to_air_pressure_and_wind_at_high_frequency" units="m"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Air pressure at low frequency&quot; means variations in air pressure with periods longer than 20 days. These give rise to corresponding variations in sea surface topography. The quantity sea_surface_height_correction_due_to_air_pressure_at_low_frequency is commonly called the &quot;inverted barometer effect&quot; and the correction should be applied by adding it to the quantity with standard name altimeter_range.  Additional altimeter range corrections are given by the quantities with standard names altimeter_range_correction_due_to_wet_troposphere, altimeter_range_correction_due_to_dry_troposphere, altimeter_range_correction_due_to_ionosphere and sea_surface_height_correction_due_to_air_pressure_and_wind_at_high_frequency." label="SeaSurfaceHeightCorrectionDueToAirPressureAtLowFrequency" title="Sea Surface Height Correction Due To Air Pressure At Low Frequency" uid="sea_surface_height_correction_due_to_air_pressure_at_low_frequency" units="m"/>
<item description="The quantity with standard name sea_surface_primary_swell_wave_from_direction is the direction from which the most energetic swell waves are coming. Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum. The primary swell wave is the most energetic swell wave. The phrase &quot;from_direction&quot; is used in the construction X_from_direction and indicates the direction from which the velocity vector of X is coming. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north." label="SeaSurfacePrimarySwellWaveFromDirection" title="Sea Surface Primary Swell Wave From Direction" uid="sea_surface_primary_swell_wave_from_direction" units="degree"/>
<item description="The quantity with standard name sea_surface_primary_swell_wave_mean_period is the mean period of the most energetic swell waves. Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum. The primary swell wave is the most energetic swell wave. A period is an interval of time, or the time-period of an oscillation. Wave period is the interval of time between repeated features on the waveform such as crests, troughs or upward passes through the mean level. Wave mean period is the mean period measured over the observation duration." label="SeaSurfacePrimarySwellWaveMeanPeriod" title="Sea Surface Primary Swell Wave Mean Period" uid="sea_surface_primary_swell_wave_mean_period" units="s"/>
<item description="Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum. The primary swell wave is the most energetic swell wave. Significant wave height is a statistic computed from wave measurements and corresponds to the average height of the highest one third of the waves, where the height is defined as the vertical distance from a wave trough to the following wave crest." label="SeaSurfacePrimarySwellWaveSignificantHeight" title="Sea Surface Primary Swell Wave Significant Height" uid="sea_surface_primary_swell_wave_significant_height" units="m"/>
<item description="Sea surface salinity is the salt content of sea water close to the sea surface, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and the units attribute should normally be given as 1e-3 or 0.001 i.e. parts per thousand. Sea surface salinity is often abbreviated as &quot;SSS&quot;. For the salinity of sea water at a particular depth or layer, a data variable of &quot;sea_water_salinity&quot; or one of the more precisely defined salinities should be used with a vertical coordinate axis. There are standard names for the precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="SeaSurfaceSalinity" title="Sea Surface Salinity" uid="sea_surface_salinity" units="1e-3"/>
<item description="The quantity with standard name sea_surface_secondary_swell_wave_from_direction is the direction from which the second most energetic swell waves are coming. Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum. The secondary swell wave is the second most energetic wave in the low frequency portion of a bimodal wave frequency spectrum. The phrase &quot;from_direction&quot; is used in the construction X_from_direction and indicates the direction from which the velocity vector of X is coming. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north." label="SeaSurfaceSecondarySwellWaveFromDirection" title="Sea Surface Secondary Swell Wave From Direction" uid="sea_surface_secondary_swell_wave_from_direction" units="degree"/>
<item description="The quantity with standard name sea_surface_secondary_swell_wave_mean_period is the mean period of the second most energetic swell waves. Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum.  The secondary swell wave is the second most energetic wave in the low frequency portion of a bimodal wave frequency spectrum. A period is an interval of time, or the time-period of an oscillation. Wave period is the interval of time between repeated features on the waveform such as crests, troughs or upward passes through the mean level. Wave mean period is the mean period measured over the observation duration." label="SeaSurfaceSecondarySwellWaveMeanPeriod" title="Sea Surface Secondary Swell Wave Mean Period" uid="sea_surface_secondary_swell_wave_mean_period" units="s"/>
<item description="Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum. The secondary swell wave is the second most energetic wave in the low frequency portion of a bimodal wave frequency spectrum. Significant wave height is a statistic computed from wave measurements and corresponds to the average height of the highest one third of the waves, where the height is defined as the vertical distance from a wave trough to the following wave crest." label="SeaSurfaceSecondarySwellWaveSignificantHeight" title="Sea Surface Secondary Swell Wave Significant Height" uid="sea_surface_secondary_swell_wave_significant_height" units="m"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The sea surface skin temperature is the temperature measured by an infrared radiometer typically operating at wavelengths in the range 3.7 - 12 micrometers. It represents the temperature within the conductive diffusion-dominated sub-layer at a depth of approximately 10 - 20 micrometers below the air-sea interface. Measurements of this quantity are subject to a large potential diurnal cycle including cool skin layer effects (especially at night under clear skies and low wind speed conditions) and warm layer effects in the daytime." label="SeaSurfaceSkinTemperature" title="Sea Surface Skin Temperature" uid="sea_surface_skin_temperature" units="K"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The sea surface subskin temperature is the temperature at the base of the conductive laminar sub-layer of the ocean surface, that is, at a depth of approximately 1 - 1.5 millimeters below the air-sea interface. For practical purposes, this quantity can be well approximated to the measurement of surface temperature by a microwave radiometer operating in the 6 - 11 gigahertz frequency range, but the relationship is neither direct nor invariant to changing physical conditions or to the specific geometry of the microwave measurements. Measurements of this quantity are subject to a large potential diurnal cycle due to thermal stratification of the upper ocean layer in low wind speed high solar irradiance conditions." label="SeaSurfaceSubskinTemperature" title="Sea Surface Subskin Temperature" uid="sea_surface_subskin_temperature" units="K"/>
<item description="Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum. The phrase &quot;from_direction&quot; is used in the construction X_from_direction and indicates the direction from which the velocity vector of X is coming. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north." label="SeaSurfaceSwellWaveFromDirection" title="Sea Surface Swell Wave From Direction" uid="sea_surface_swell_wave_from_direction" units="degree"/>
<item description="A period is an interval of time, or the time-period of an oscillation. Wave period is the interval of time between repeated features on the waveform such as crests, troughs or upward passes through the mean level. Wave mean period is the mean period measured over the observation duration. Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum." label="SeaSurfaceSwellWaveMeanPeriod" title="Sea Surface Swell Wave Mean Period" uid="sea_surface_swell_wave_mean_period" units="s"/>
<item description="The swell wave directional spectrum can be written as a  five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction.  S can be integrated over direction to give S1= integral(S dtheta).  Frequency moments, M(n) of S1 can then be calculated as follows: M(n) = integral(S1 f^n df), where f^n is f to the power of n.  The first wave period, T(m1), is calculated as the ratio M(0)/M(1)." label="SeaSurfaceSwellWaveMeanPeriodFromVarianceSpectralDensityFirstFrequencyMoment" title="Sea Surface Swell Wave Mean Period From Variance Spectral Density First Frequency Moment" uid="sea_surface_swell_wave_mean_period_from_variance_spectral_density_first_frequency_moment" units="s"/>
<item description="The swell wave directional spectrum can be written as a  five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction.  S can be integrated over direction to give  S1= integral(S dtheta).  Frequency moments, M(n) of S1 can then be calculated as follows: M(n) = integral(S1 f^n df), where f^n is f to the power of n.  The inverse wave period, T(m-1), is calculated as the ratio M(-1)/M(0)." label="SeaSurfaceSwellWaveMeanPeriodFromVarianceSpectralDensityInverseFrequencyMoment" title="Sea Surface Swell Wave Mean Period From Variance Spectral Density Inverse Frequency Moment" uid="sea_surface_swell_wave_mean_period_from_variance_spectral_density_inverse_frequency_moment" units="s"/>
<item description="The swell wave directional spectrum can be written as a  five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction.  S can be integrated over direction to give S1= integral(S dtheta).  Frequency moments, M(n) of S1 can then be calculated as follows: M(n) = integral(S1 f^n df), where f^n is f to the power of n.  The second wave period, T(m2), is calculated as the square root of the ratio M(0)/M(2)." label="SeaSurfaceSwellWaveMeanPeriodFromVarianceSpectralDensitySecondFrequencyMoment" title="Sea Surface Swell Wave Mean Period From Variance Spectral Density Second Frequency Moment" uid="sea_surface_swell_wave_mean_period_from_variance_spectral_density_second_frequency_moment" units="s"/>
<item description="A period is an interval of time, or the time-period of an oscillation. Swell waves are waves on the ocean surface." label="SeaSurfaceSwellWavePeriod" title="Sea Surface Swell Wave Period" uid="sea_surface_swell_wave_period" units="s"/>
<item description="Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum. Significant wave height is a statistic computed from wave measurements and corresponds to the average height of the highest one third of the waves, where the height is defined as the vertical distance from a wave trough to the following wave crest." label="SeaSurfaceSwellWaveSignificantHeight" title="Sea Surface Swell Wave Significant Height" uid="sea_surface_swell_wave_significant_height" units="m"/>
<item description="Swell waves are waves on the ocean surface and are the low frequency portion of a bimodal wave frequency spectrum. The phrase &quot;to_direction&quot; is used in the construction X_to_direction and indicates the direction towards which the velocity vector of X is headed. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north." label="SeaSurfaceSwellWaveToDirection" title="Sea Surface Swell Wave To Direction" uid="sea_surface_swell_wave_to_direction" units="degree"/>
<item description="Sea surface temperature is usually abbreviated as &quot;SST&quot;. It is the temperature of sea water near the surface (including the part under sea-ice, if any). More specific terms, namely sea_surface_skin_temperature, sea_surface_subskin_temperature, and surface_termperature are available for the skin, subskin, and interface temperature. respectively. For the temperature of sea water at a particular depth or layer, a data variable of sea_water_temperature with a vertical coordinate axis should be used.'" label="SeaSurfaceTemperature" title="Sea Surface Temperature" uid="sea_surface_temperature" units="K"/>
<item description="Sea surface wave directional variance spectral density is the variance of the amplitude of the waves within given ranges of direction and wave frequency." label="SeaSurfaceWaveDirectionalVarianceSpectralDensity" title="Sea Surface Wave Directional Variance Spectral Density" uid="sea_surface_wave_directional_variance_spectral_density" units="m2 s rad-1"/>
<item description="The wave directional spectrum can be written as a five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction. S has the standard name sea_surface_wave_directional_variance_spectral_density. S can be integrated over direction to give S1= integral(S dtheta) and this quantity has the standard name sea_surface_wave_variance_spectral_density. The quantity with standard name sea_surface_wave_energy_at_variance_spectral_density_maximum, sometimes called peak wave energy, is the maximum value of the variance spectral density (max(S1))." label="SeaSurfaceWaveEnergyAtVarianceSpectralDensityMaximum" title="Sea Surface Wave Energy At Variance Spectral Density Maximum" uid="sea_surface_wave_energy_at_variance_spectral_density_maximum" units="m2 s"/>
<item description="The phrase &quot;from_direction&quot; is used in the construction X_from_direction and indicates the direction from which the velocity vector of X is coming. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north." label="SeaSurfaceWaveFromDirection" title="Sea Surface Wave From Direction" uid="sea_surface_wave_from_direction" units="degree"/>
<item description="The quantity with standard name sea_surface_wave_from_direction_at_variance_spectral_density_maximum is the direction from which the most energetic waves are coming. The spectral peak is the most energetic wave in the total wave spectrum. The phrase &quot;from_direction&quot; is used in the construction X_from_direction and indicates the direction from which the velocity vector of X is coming. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north. The wave directional spectrum can be written as a five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction. S has the standard name sea_surface_wave_directional_variance_spectral_density. S can be integrated over direction to give S1= integral(S dtheta) and this quantity has the standard name sea_surface_wave_variance_spectral_density." label="SeaSurfaceWaveFromDirectionAtVarianceSpectralDensityMaximum" title="Sea Surface Wave From Direction At Variance Spectral Density Maximum" uid="sea_surface_wave_from_direction_at_variance_spectral_density_maximum" units="degree"/>
<item description="The crest is the highest point of a wave. Crest height is the vertical distance between the crest and the calm sea surface. Maximum crest height is the maximum value measured during the observation period." label="SeaSurfaceWaveMaximumCrestHeight" title="Sea Surface Wave Maximum Crest Height" uid="sea_surface_wave_maximum_crest_height" units="m"/>
<item description="Wave height is defined as the vertical distance from a wave trough to the following wave crest. The maximum wave height is the greatest trough to crest distance measured during the observation period." label="SeaSurfaceWaveMaximumHeight" title="Sea Surface Wave Maximum Height" uid="sea_surface_wave_maximum_height" units="m"/>
<item description="The maximum wave period is the longest wave period measured during the observation period. A period is an interval of time, or the time-period of an oscillation. Wave period is the interval of time between repeated features on the waveform such as crests, troughs or upward passes through the mean level." label="SeaSurfaceWaveMaximumPeriod" title="Sea Surface Wave Maximum Period" uid="sea_surface_wave_maximum_period" units="s"/>
<item description="Wave steepness is defined as the ratio of the wave height divided by the wavelength. Maximum wave steepness is the maximum value measured during the observation period. Wave height is defined as the vertical distance from a wave trough to the following wave crest. The wavelength is the horizontal distance between repeated features on the waveform such as crests, troughs or upward passes through the mean level." label="SeaSurfaceWaveMaximumSteepness" title="Sea Surface Wave Maximum Steepness" uid="sea_surface_wave_maximum_steepness" units="1"/>
<item description="The trough is the lowest point of a wave. Trough depth is the vertical distance between the trough and the calm sea surface. Maximum trough depth is the maximum value measured during the observation period." label="SeaSurfaceWaveMaximumTroughDepth" title="Sea Surface Wave Maximum Trough Depth" uid="sea_surface_wave_maximum_trough_depth" units="m"/>
<item description="Wave height is defined as the vertical distance from a wave trough to the following wave crest. The mean wave height is the mean trough to crest distance measured during the observation period." label="SeaSurfaceWaveMeanHeight" title="Sea Surface Wave Mean Height" uid="sea_surface_wave_mean_height" units="m"/>
<item description="Wave height is defined as the vertical distance from a wave trough to the following wave crest. The height of the highest tenth is defined as the mean of the highest ten per cent of trough to crest distances measured during the observation period." label="SeaSurfaceWaveMeanHeightOfHighestTenth" title="Sea Surface Wave Mean Height of Highest Tenth" uid="sea_surface_wave_mean_height_of_highest_tenth" units="m"/>
<item description="A period is an interval of time, or the time-period of an oscillation. Wave period is the interval of time between repeated features on the waveform such as crests, troughs or upward passes through the mean level.  Wave mean period is the mean period measured over the observation duration." label="SeaSurfaceWaveMeanPeriod" title="Sea Surface Wave Mean Period" uid="sea_surface_wave_mean_period" units="s"/>
<item description="The wave directional spectrum can be written as a  five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction.  S has the standard name sea_surface_wave_directional_variance_spectral_density.  S can be integrated over direction to give S1= integral(S dtheta) and this quantity has the standard name sea_surface_wave_variance_spectral_density.  Frequency moments, M(n) of S1 can then be calculated as follows: M(n) = integral(S1 f^n df), where f^n is f to the power of n.  The first wave period, T(m1)  is calculated as the ratio M(0)/M(1)." label="SeaSurfaceWaveMeanPeriodFromVarianceSpectralDensityFirstFrequencyMoment" title="Sea Surface Wave Mean Period From Variance Spectral Density First Frequency Moment" uid="sea_surface_wave_mean_period_from_variance_spectral_density_first_frequency_moment" units="s"/>
<item description="The wave directional spectrum can be written as a  five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction.  S has the standard name sea_surface_wave_directional_variance_spectral_density.  S can be integrated over direction to give S1= integral(S dtheta) and this quantity has the standard name sea_surface_wave_variance_spectral_density.  Frequency moments, M(n) of S1 can then be calculated as follows: M(n) = integral(S1 f^n df), where f^n is f to the power of n.  The inverse wave period, T(m-1), is calculated as the ratio M(-1)/M(0)." label="SeaSurfaceWaveMeanPeriodFromVarianceSpectralDensityInverseFrequencyMoment" title="Sea Surface Wave Mean Period From Variance Spectral Density Inverse Frequency Moment" uid="sea_surface_wave_mean_period_from_variance_spectral_density_inverse_frequency_moment" units="s"/>
<item description="The wave directional spectrum can be written as a  five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction.  S has the standard name sea_surface_wave_directional_variance_spectral_density.  S can be integrated over direction to give S1= integral(S dtheta) and this quantity has the standard name sea_surface_wave_variance_spectral_density.  Frequency moments, M(n) of S1 can then be calculated as follows: M(n) = integral(S1 f^n df), where f^n is f to the power of n.  The second wave period, T(m2) is calculated as the square root of the ratio M(0)/M(2)." label="SeaSurfaceWaveMeanPeriodFromVarianceSpectralDensitySecondFrequencyMoment" title="Sea Surface Wave Mean Period From Variance Spectral Density Second Frequency Moment" uid="sea_surface_wave_mean_period_from_variance_spectral_density_second_frequency_moment" units="s"/>
<item description="Wave mean period is the mean period measured over the observation duration. The quantity with standard name sea_surface_wave_mean_period_of_highest_tenth is the mean period of the highest one-tenth of waves during the observation duration. A period is an interval of time, or the time-period of an oscillation. Wave period is the interval of time between repeated features on the waveform such as crests, troughs or upward passes through the mean level." label="SeaSurfaceWaveMeanPeriodOfHighestTenth" title="Sea Surface Wave Mean Period of Highest Tenth" uid="sea_surface_wave_mean_period_of_highest_tenth" units="s"/>
<item description="A period is an interval of time, or the time-period of an oscillation.  The sea_surface_wave_period_at_variance_spectral_density_maximum, sometimes called peak wave period, is the period of the most energetic waves in the total wave spectrum at a specific location." label="SeaSurfaceWavePeriodAtVarianceSpectralDensityMaximum" title="Sea Surface Wave Period At Variance Spectral Density Maximum" uid="sea_surface_wave_period_at_variance_spectral_density_maximum" units="s"/>
<item description="Wave period of the highest wave is the period determined from wave crests corresponding to the greatest vertical distance above mean level during the observation period. A period is an interval of time, or the time-period of an oscillation. Wave period is the interval of time between repeated features on the waveform such as crests, troughs or upward passes through the mean level." label="SeaSurfaceWavePeriodOfHighestWave" title="Sea Surface Wave Period of Highest Wave" uid="sea_surface_wave_period_of_highest_wave" units="s"/>
<item description="Significant wave height is a statistic computed from wave measurements and corresponds to the average height of the highest one third of the waves, where the height is defined as the vertical distance from a wave trough to the following wave crest." label="SeaSurfaceWaveSignificantHeight" title="Sea Surface Wave Significant Height" uid="sea_surface_wave_significant_height" units="m"/>
<item description="Significant wave period is a statistic computed from wave measurements and corresponds to the mean wave period of the highest one third of the waves. A period is an interval of time, or the time-period of an oscillation. Wave period is the interval of time between repeated features on the waveform such as crests, troughs or upward passes through the mean level." label="SeaSurfaceWaveSignificantPeriod" title="Sea Surface Wave Significant Period" uid="sea_surface_wave_significant_period" units="s"/>
<item description="A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. The Stokes drift velocity is the average velocity when following a specific fluid parcel as it travels with the fluid flow. For instance, a particle floating at the free surface of water waves, experiences a net Stokes drift velocity in the direction of wave propagation." label="SeaSurfaceWaveStokesDriftXVelocity" title="Sea Surface Wave Stokes Drift X Velocity" uid="sea_surface_wave_stokes_drift_x_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid x-axis, positive with increasing y. The Stokes drift velocity is the average velocity when following a specific fluid parcel as it travels with the fluid flow. For instance, a particle floating at the free surface of water waves, experiences a net Stokes drift velocity in the direction of wave propagation." label="SeaSurfaceWaveStokesDriftYVelocity" title="Sea Surface Wave Stokes Drift Y Velocity" uid="sea_surface_wave_stokes_drift_y_velocity" units="m s-1"/>
<item description="The phrase &quot;to_direction&quot; is used in the construction X_to_direction and indicates the direction towards which the velocity vector of X is headed. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north." label="SeaSurfaceWaveToDirection" title="Sea Surface Wave To Direction" uid="sea_surface_wave_to_direction" units="degree"/>
<item description="Sea surface wave variance spectral density is the variance of wave amplitude within a range of wave frequency." label="SeaSurfaceWaveVarianceSpectralDensity" title="Sea Surface Wave Variance Spectral Density" uid="sea_surface_wave_variance_spectral_density" units="m2 s"/>
<item description="Wind waves are waves on the ocean surface and are the high frequency portion of a bimodal wave frequency spectrum. The phrase &quot;from_direction&quot; is used in the construction X_from_direction and indicates the direction from which the velocity vector of X is coming. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north." label="SeaSurfaceWindWaveFromDirection" title="Sea Surface Wind Wave From Direction" uid="sea_surface_wind_wave_from_direction" units="degree"/>
<item description="A period is an interval of time, or the time-period of an oscillation. Wave period is the interval of time between repeated features on the waveform such as crests, troughs or upward passes through the mean level. Wave mean period is the mean period measured over the observation duration. Wind waves are waves on the ocean surface and are the high frequency portion of a bimodal wave frequency spectrum." label="SeaSurfaceWindWaveMeanPeriod" title="Sea Surface Wind Wave Mean Period" uid="sea_surface_wind_wave_mean_period" units="s"/>
<item description="The wind wave directional spectrum can be written as a  five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction.  S can be integrated over direction to give S1= integral(S dtheta) .  Frequency moments, M(n) of S1 can then be calculated as follows: M(n) = integral(S1 f^n df), where f^n is f to the power of n.  The first wave period, T(m1) is calculated as the ratio M(0)/M(1)." label="SeaSurfaceWindWaveMeanPeriodFromVarianceSpectralDensityFirstFrequencyMoment" title="Sea Surface Wind Wave Mean Period From Variance Spectral Density First Frequency Moment" uid="sea_surface_wind_wave_mean_period_from_variance_spectral_density_first_frequency_moment" units="s"/>
<item description="The wind wave directional spectrum can be written as a  five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction.  S can be integrated over direction to give S1= integral(S dtheta).  Frequency moments, M(n) of S1 can then be calculated as follows: M(n) = integral(S1 f^n df), where f^n is f to the power of n.  The inverse wave period, T(m-1), is calculated as the ratio M(-1)/M(0)." label="SeaSurfaceWindWaveMeanPeriodFromVarianceSpectralDensityInverseFrequencyMoment" title="Sea Surface Wind Wave Mean Period From Variance Spectral Density Inverse Frequency Moment" uid="sea_surface_wind_wave_mean_period_from_variance_spectral_density_inverse_frequency_moment" units="s"/>
<item description="The wind wave directional spectrum can be written as a  five dimensional function S(t,x,y,f,theta) where t is time, x and y are horizontal coordinates (such as longitude and latitude), f is frequency and theta is direction.  S can be integrated over direction, thus S1= integral(S dtheta).  Frequency moments, M(n) of S1 can then be calculated as follows: M(n) = integral(S1 f^n df), where f^n is f to the power of n.  The second wave period, T(m2), is calculated as the square root of the ratio M(0)/M(2)." label="SeaSurfaceWindWaveMeanPeriodFromVarianceSpectralDensitySecondFrequencyMoment" title="Sea Surface Wind Wave Mean Period From Variance Spectral Density Second Frequency Moment" uid="sea_surface_wind_wave_mean_period_from_variance_spectral_density_second_frequency_moment" units="s"/>
<item description="A period is an interval of time, or the time-period of an oscillation. Wind waves are waves on the ocean surface. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="SeaSurfaceWindWavePeriod" title="Sea Surface Wind Wave Period" uid="sea_surface_wind_wave_period" units="s"/>
<item description="Wind waves are waves on the ocean surface and are the high frequency portion of a bimodal wave frequency spectrum. Significant wave height is a statistic computed from wave measurements and corresponds to the average height of the highest one third of the waves, where the height is defined as the vertical distance from a wave trough to the following wave crest." label="SeaSurfaceWindWaveSignificantHeight" title="Sea Surface Wind Wave Significant Height" uid="sea_surface_wind_wave_significant_height" units="m"/>
<item description="Wind waves are waves on the ocean surface and are the high frequency portion of a bimodal wave frequency spectrum. The phrase &quot;to_direction&quot; is used in the construction X_to_direction and indicates the direction towards which the velocity vector of X is headed. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north." label="SeaSurfaceWindWaveToDirection" title="Sea Surface Wind Wave To Direction" uid="sea_surface_wind_wave_to_direction" units="degree"/>
<item description="Absolute Salinity, S_A, is defined as part of the Thermodynamic Equation of Seawater 2010 (TEOS-10) which was adopted in 2010 by the Intergovernmental Oceanographic Commission (IOC). It is the mass fraction of dissolved material in sea water. Absolute Salinity incorporates the spatial variations in the composition of sea water. This type of Absolute Salinity is also called &quot;Density Salinity&quot;. TEOS-10 estimates Absolute Salinity as the salinity variable that, when used with the TEOS-10 expression for density, yields the correct density of a sea water sample even when the sample is not of Reference Composition. In practice, Absolute Salinity is often calculated from Practical Salinity using a spatial lookup table of pre-defined values of the Absolute Salinity Anomaly. It is recommended that the version of (TEOS-10) software and the associated Absolute Salinity Anomaly climatology be specified within metadata by attaching a comment attribute to the data variable. Reference: www.teos-10.org; Millero et al., 2008 doi: 10.1016/j.dsr.2007.10.001. There are also standard names for the precisely defined salinity quantities sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 onwards), sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Salinity quantities that do not match any of the precise definitions should be given the more general standard name of sea_water_salinity." label="SeaWaterAbsoluteSalinity" title="Sea Water Absolute Salinity" uid="sea_water_absolute_salinity" units="g kg-1"/>
<item description="&quot;Sea water age since surface contact&quot; means the length of time elapsed since the sea water in a grid cell was last in the surface level of an ocean model." label="SeaWaterAgeSinceSurfaceContact" title="Sea Water Age Since Surface Contact" uid="sea_water_age_since_surface_contact" units="year"/>
<item description="'sea_water_alkalinity_expressed_as_mole_equivalent' is the total alkalinity equivalent concentration (including carbonate, nitrogen, silicate, and borate components)." label="SeaWaterAlkalinityExpressedAsMoleEquivalent" title="Sea Water Alkalinity Expressed As Mole Equivalent" uid="sea_water_alkalinity_expressed_as_mole_equivalent" units="mol m-3"/>
<item description="Conservative Temperature is defined as part of the Thermodynamic Equation of Seawater 2010 (TEOS-10) which was adopted in 2010 by the International Oceanographic Commission (IOC). Conservative Temperature is specific potential enthalpy (which has the standard name sea_water_specific_potential_enthalpy) divided by a fixed value of the specific heat capacity of sea water, namely cp_0 = 3991.86795711963 J kg-1 K-1. Conservative Temperature is a more accurate measure of the &quot;heat content&quot; of sea water, by a factor of one hundred, than is potential temperature. Because of this, it can be regarded as being proportional to the heat content of sea water per unit mass. Reference: www.teos-10.org; McDougall, 2003 doi: 10.1175/1520-0485(2003)033&lt;0945:PEACOV&gt;2.0.CO;2." label="SeaWaterConservativeTemperature" title="Sea Water Conservative Temperature" uid="sea_water_conservative_temperature" units="K"/>
<item description="Cox Salinity, S_C, is defined unitless as a mass fraction per mil (0/00) or &quot;parts per thousand&quot;. S_C was the standard salinity measure from 1967 until Practical Salinity, S_P, was established with PSS-78 (1978). Chlorinity, Cl, is calculated from the conductivity of a sea water sample and since the work of the Joint Panel for Oceanographic Tables and Standards (JPOTS; 1966) is converted into Cox Salinity using S_C = 1.80655Cl. This type of salinity was called simply &quot;salinity&quot; from 1967 to 1978. Cox Salinity was replaced by Practical Salinity in 1978. Cox Salinity is converted to Practical Salinity following S_P = S_C, however the accuracy of this is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of the Practical Salinity Scale 1978 (PSS-78). Reference: Cox et al., 1967 doi: 10.1016/0011-7471(67)90006-X; Lyman, 1969 doi: 10.4319/lo.1969.14.6.0928; Wooster et al., 1969 doi: 10.4319/lo.1969.14.3.0437. There are standard names for the precisely defined salinity quantities sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_practical_salinity, S_P, sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_* and sea_water_reference_salinity. Salinity quantities that do not match any of the precise definitions should be given the more general standard name of sea_water_salinity." label="SeaWaterCoxSalinity" title="Sea Water Cox Salinity" uid="sea_water_cox_salinity" units="1e-3"/>
<item description="Sea water density is the in-situ density (not the potential density). If 1000 kg m-3 is subtracted, the standard name sea_water_sigma_t should be chosen instead." label="SeaWaterDensity" title="Sea Water Density" uid="sea_water_density" units="kg m-3"/>
<item description="" label="SeaWaterElectricalConductivity" title="Sea Water Electrical Conductivity" uid="sea_water_electrical_conductivity" units="S m-1"/>
<item description="Knudsen Salinity, S_K, is defined unitless as a mass fraction per mil (0/00) or &quot;parts per thousand&quot;, and was calculated from the titration of inorganic salts from a sample of sea water after a commission to study the problem of determining salinity and density was initiated by the International Council for the Exploration of the Sea (ICES) in 1899. S_K was the standard salinity measure until S_C (Cox Salinity) was established in 1967. Since the work of Knudsen (1901), chlorinity is converted into Knudsen Salinity using S_K = 0.030 + 1.805 Cl. This type of salinity was called simply &quot;salinity&quot; from 1901 to 1966. From the 1960s on, electrical conductivity began to be used to estimate the Knudsen Salinity, rather than chemical titration. Knudsen Salinity was replaced by Cox Salinity in 1967 which was in turn replaced by Practical Salinity, S_P, in 1978. Conversion of Knudsen Salinity to Practical Salinity follows S_P = (S_K - 0.03) * (1.80655 / 1.805). Reference: Knudsen, 1901; Thomas et al., 1934 doi: 10.1093/icesjms/9.1.28; Lyman, 1969 doi: 10.4319/lo.1969.14.6.0928; Wooster et al., 1969 doi: 10.4319/lo.1969.14.3.0437; Lewis, 1980 doi: 10.1109/JOE.1980.1145448; Millero et al., 2008 doi: 10.1016/j.dsr.2007.10.001. There are standard names for the precisely defined salinity quantities sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P, sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_* and sea_water_reference_salinity. Salinity quantities that do not match any of the precise definitions should be given the more general standard name of sea_water_salinity." label="SeaWaterKnudsenSalinity" title="Sea Water Knudsen Salinity" uid="sea_water_knudsen_salinity" units="1e-3"/>
<item description="The quantity with standard name &quot;sea_water_mass&quot; is the total mass of liquid seawater in the global oceans, including enclosed seas." label="SeaWaterMass" title="Sea Water Mass" uid="sea_water_mass" units="kg"/>
<item description="Sea_water_mass_per_unit_area is the mass per unit area of the sea water contained within each grid cell." label="SeaWaterMassPerUnitArea" title="Sea Water Mass Per Unit Area" uid="sea_water_mass_per_unit_area" units="kg m-2"/>
<item description="&quot;Neutral density&quot; is a variable designed so that a surface of constant neutral density everywhere has a local slope that is close to the local slope of the neutral tangent plane. At the sea surface in the equatorial Pacific neutral density is very close to the potential density anomaly. At other locations, this is not the case. For example, along a neutral density surface there is a difference of up to 0.14 kg/m^3 in the potential density anomaly at the outcrops in the Southern and Northern hemispheres. Refer to Jackett &amp; McDougall (1997; Journal of Physical Oceanography, Vol 27, doi: 10.1175/1520-0485(1997)027&lt;0237:ANDVFT&gt;2.0.CO;2) for more information." label="SeaWaterNeutralDensity" title="Sea Water Neutral Density" uid="sea_water_neutral_density" units="kg m-3"/>
<item description="'sea_water_pH_reported_on_total_scale' is the measure of acidity of seawater, defined as the negative logarithm of the activity of dissolved hydrogen ions plus bisulfate ions in a sea water medium; it can be measured or calculated; when measured the scale is defined according to a series of buffers prepared in artificial seawater containing bisulfate.  The quantity may be written as pH(total) = -log([H+](free) + [HSO4-])." label="SeaWaterPhReportedOnTotalScale" title="Sea Water Ph Reported on Total Scale" uid="sea_water_ph_reported_on_total_scale" units="1"/>
<item description="Potential density is the density a parcel of air or sea water would have if moved adiabatically to a reference pressure, by default assumed to be sea level pressure. For sea water potential density, if 1000 kg m-3 is subtracted, the standard name sea_water_sigma_theta should be chosen instead." label="SeaWaterPotentialDensity" title="Sea Water Potential Density" uid="sea_water_potential_density" units="kg m-3"/>
<item description="Potential temperature is the temperature a parcel of air or sea water would have if moved adiabatically to sea level pressure." label="SeaWaterPotentialTemperature" title="Sea Water Potential Temperature" uid="sea_water_potential_temperature" units="K"/>
<item description="Potential temperature is the temperature a parcel of air or sea water would have if moved adiabatically to sea level pressure. The potential temperature at the sea floor is that adjacent to the ocean bottom, which would be the deepest grid cell in an ocean model." label="SeaWaterPotentialTemperatureAtSeaFloor" title="Sea Water Potential Temperature At Sea Floor" uid="sea_water_potential_temperature_at_sea_floor" units="K"/>
<item description="Practical Salinity, S_P, is a determination of the salinity of sea water, based on its electrical conductance. The measured conductance, corrected for temperature and pressure, is compared to the conductance of a standard potassium chloride solution, producing a value on the Practical Salinity Scale of 1978 (PSS-78). This name should not be used to describe salinity observations made before 1978, or ones not based on conductance measurements. Conversion of Practical Salinity to other precisely defined salinity measures should use the appropriate formulas specified by TEOS-10. Other standard names for precisely defined salinity quantities are sea_water_absolute_salinity (S_A); sea_water_preformed_salinity (S_*),  sea_water_reference_salinity (S_R); sea_water_cox_salinity (S_C),  used for salinity observations between 1967 and 1977; and sea_water_knudsen_salinity (S_K), used for salinity observations between 1901 and 1966. Salinity quantities that do not match any of the precise definitions shoul d be given the more general standard name of sea_water_salinity. Reference: www.teos-10.org; Lewis, 1980 doi:10.1109/JOE.1980.1145448." label="SeaWaterPracticalSalinity" title="Sea Water Practical Salinity" uid="sea_water_practical_salinity" units="1"/>
<item description="Preformed Salinity, S*, is defined as part of the Thermodynamic Equation of Seawater 2010 (TEOS-10) which was adopted in 2010 by the Intergovernmental Oceanographic Commission (IOC). Preformed Salinity is a salinity variable that is designed to be as conservative as possible, by removing the estimated biogeochemical influences on the sea water composition. Preformed Salinity is Absolute Salinity, S_A (which has the standard name sea_water_absolute_salinity), minus all contributions to sea water composition from biogeochemical processes. Preformed Salinity is the mass fraction of dissolved material in sea water. Reference: www.teos-10.org; Pawlowicz et al., 2011 doi: 10.5194/os-7-363-2011; Wright et al., 2011 doi: 10.5194/os-7-1-2011. There are also standard names for the precisely defined salinity quantities sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 onwards), and sea_water_reference_salinity. Salinity quantities that do not match any of the precise definitions should be given the more general standard name of sea_water_salinity." label="SeaWaterPreformedSalinity" title="Sea Water Preformed Salinity" uid="sea_water_preformed_salinity" units="g kg-1"/>
<item description="&quot;Sea water pressure&quot; is the pressure that exists in the medium of sea water.  It includes the pressure due to overlying sea water, sea ice, air and any other medium that may be present. For sea water pressure excluding the pressure due to overlying media other than sea water, the standard name sea_water_pressure_due_to_sea_water should be used." label="SeaWaterPressure" title="Sea Water Pressure" uid="sea_water_pressure" units="dbar"/>
<item description="&quot;Sea water pressure&quot; is the pressure that exists in the medium of sea water.  It includes the pressure due to overlying sea water, sea ice, air and any other medium that may be present." label="SeaWaterPressureAtSeaFloor" title="Sea Water Pressure At Sea Floor" uid="sea_water_pressure_at_sea_floor" units="dbar"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  &quot;Sea water pressure&quot; is the pressure that exists in the medium of sea water.  It includes the pressure due to overlying sea water, sea ice, air and any other medium that may be present." label="SeaWaterPressureAtSeaWaterSurface" title="Sea Water Pressure At Sea Water Surface" uid="sea_water_pressure_at_sea_water_surface" units="dbar"/>
<item description="The pressure that exists in the medium of sea water due to overlying sea water. Excludes the pressure due to sea ice, air and any other medium that may be present. For sea water pressure including the pressure due to overlying media other than sea water, the standard name sea_water_pressure should be used." label="SeaWaterPressureDueToSeaWater" title="Sea Water Pressure Due To Sea Water" uid="sea_water_pressure_due_to_sea_water" units="dbar"/>
<item description="If a sea water sample has the Reference Composition (defined in Millero et al., 2008), then its Reference Salinity is the best available estimate of its Absolute Salinity. For general purposes, Reference Salinity is (35.16504 g kg-1)/35 times Practical Salinity. Reference: www.teos-10.org; Millero et al., 2008 doi: 10.1016/j.dsr.2007.10.001. There are also standard names for the precisely defined salinity quantities sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity (used for salinity observations from 1978 onwards), sea_water_absolute_salinity, S_A, and sea_water_preformed_salinity, S_*. Salinity quantities that do not match any of the precise definitions should be given the more general standard name of sea_water_salinity." label="SeaWaterReferenceSalinity" title="Sea Water Reference Salinity" uid="sea_water_reference_salinity" units="g kg-1"/>
<item description="Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and the units attribute should normally be given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966),  sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="SeaWaterSalinity" title="Sea Water Salinity" uid="sea_water_salinity" units="1e-3"/>
<item description="Sigma-t of sea water is the density of water at atmospheric pressure (i.e. the surface) having the same temperature and salinity, minus 1000 kg m-3. Note that sea water sigma is not the same quantity as the dimensionless ocean sigma coordinate (see Appendix D of the CF convention), for which there is another standard name." label="SeaWaterSigmaT" title="Sea Water Sigma T" uid="sea_water_sigma_t" units="kg m-3"/>
<item description="Sigma-theta of sea water is the potential density (i.e. the density when moved adiabatically to a reference pressure) of water having the same temperature and salinity, minus 1000 kg m-3. Note that sea water sigma is not the same quantity as the dimensionless ocean sigma coordinate (see Appendix D of the CF convention), for which there is another standard name." label="SeaWaterSigmaTheta" title="Sea Water Sigma Theta" uid="sea_water_sigma_theta" units="kg m-3"/>
<item description="The potential enthalpy of a sea water parcel is the specific enthalpy after an adiabatic and isohaline change in pressure from its in situ pressure to the sea pressure p = 0 dbar. &quot;specific&quot; means per unit mass. Reference: www.teos-10.org; McDougall, 2003 doi: 10.1175/1520-0485(2003)033&lt;0945:PEACOV&gt;2.0.CO;2." label="SeaWaterSpecificPotentialEnthalpy" title="Sea Water Specific Potential Enthalpy" uid="sea_water_specific_potential_enthalpy" units="J kg-1"/>
<item description="Speed is the magnitude of velocity." label="SeaWaterSpeed" title="Sea Water Speed" uid="sea_water_speed" units="m s-1"/>
<item description="Sea water temperature is the in situ temperature of the sea water. To specify the depth at which the temperature applies use a vertical coordinate variable or scalar coordinate variable. There are standard names for sea_surface_temperature, sea_surface_skin_temperature, sea_surface_subskin_temperature and sea_surface_foundation_temperature which can be used to describe data located at the specified surfaces. For observed data, depending on the period during which the observation was made, the measured in situ temperature was recorded against standard &quot;scales&quot;. These historical scales include the International Practical Temperature Scale of 1948 (IPTS-48; 1948-1967), the International Practical Temperature Scale of 1968 (IPTS-68, Barber, 1969; 1968-1989) and the International Temperature Scale of 1990 (ITS-90, Saunders 1990; 1990 onwards). Conversion of data between these scales follows t68 = t48 - (4.4 x 10e-6) * t48(100 - t - 48); t90 = 0.99976 * t68. Observations made prior to 1948 (IPTS-48) have not been documented and therefore a conversion cannot be certain. Differences between t90 and t68 can be up to 0.01 at temperatures of 40 C and above; differences of 0.002-0.007 occur across the standard range of ocean temperatures (-10 - 30 C). The International Equation of State of Seawater 1980 (EOS-80, UNESCO, 1981) and the Practical Salinity Scale (PSS-78) were both based on IPTS-68, while the Thermodynamic Equation of Seawater 2010 (TEOS-10) is based on ITS-90. References: Barber, 1969, doi: 10.1088/0026-1394/5/2/001; UNESCO, 1981; Saunders, 1990, WOCE Newsletter, 10, September 1990." label="SeaWaterTemperature" title="Sea Water Temperature" uid="sea_water_temperature" units="K"/>
<item description="Transport across_line means that which crosses a particular line on the Earth's surface; formally this means the integral along the line of the normal component of the transport." label="SeaWaterTransportAcrossLine" title="Sea Water Transport Across Line" uid="sea_water_transport_across_line" units="kg s-1"/>
<item description="Turbidity is a dimensionless quantity which is expressed in NTU (Nephelometric Turbidity Units). Turbidity expressed in NTU is the proportion of white light scattered back to a transceiver by the particulate load in a body of water, represented on an arbitrary scale referenced against measurements made in the laboratory on aqueous suspensions of formazine beads. Sea water turbidity may also be measured by the quantity with standard name secchi_depth_of_sea_water." label="SeaWaterTurbidity" title="Sea Water Turbidity" uid="sea_water_turbidity" units="1"/>
<item description="The quantity with standard name &quot;sea_water_volume&quot; is the total volume of liquid seawater in the global oceans, including enclosed seas." label="SeaWaterVolume" title="Sea Water Volume" uid="sea_water_volume" units="m3"/>
<item description="A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x." label="SeaWaterXVelocity" title="Sea Water X Velocity" uid="sea_water_x_velocity" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y." label="SeaWaterYVelocity" title="Sea Water Y Velocity" uid="sea_water_y_velocity" units="m s-1"/>
<item description="Depth is the vertical distance below the surface. A Secchi disk is a patterned disk that is used to measure water transparency, also called turbidity, in oceans and lakes. The disk is lowered into the water and the depth at which the pattern is no longer visible is the called the secchi depth. Sea water turbidity may also be measured by the quantity with standard name sea_water_turbidity." label="SecchiDepthOfSeaWater" title="Secchi Depth of Sea Water" uid="secchi_depth_of_sea_water" units="m"/>
<item description="sensor_azimuth_angle is the horizontal angle between the line of sight from the observation point to the sensor and a reference direction at the observation point, which is often due north. The angle is measured clockwise positive, starting from the reference direction. A comment attribute should be added to a data variable with this standard name to specify the reference direction. A standard name also exists for platform_azimuth_angle, where &quot;platform&quot; refers to the vehicle from which observations are made e.g. aeroplane, ship, or satellite. For some viewing geometries the sensor and the platform cannot be assumed to be close enough to neglect the difference in calculated azimuth angle." label="SensorAzimuthAngle" title="Sensor Azimuth Angle" uid="sensor_azimuth_angle" units="degree"/>
<item description="sensor_band_central_radiation_frequency is the central frequency of a sensor's band, calculated as the first moment of the band's normalized spectral response function." label="SensorBandCentralRadiationFrequency" title="Sensor Band Central Radiation Frequency" uid="sensor_band_central_radiation_frequency" units="s-1"/>
<item description="sensor_band_central_radiation_wavelength is the central wavelength of a sensor's band, calculated as the first moment of the band's normalized spectral response function." label="SensorBandCentralRadiationWavelength" title="Sensor Band Central Radiation Wavelength" uid="sensor_band_central_radiation_wavelength" units="m"/>
<item description="sensor_band_central_radiation_wavenumber is the central wavenumber of a sensor's band, calculated as the first moment of the band's normalized spectral response function." label="SensorBandCentralRadiationWavenumber" title="Sensor Band Central Radiation Wavenumber" uid="sensor_band_central_radiation_wavenumber" units="m-1"/>
<item description="A variable with the standard name of sensor_band_identifier contains strings which give the alphanumeric identifier of a sensor band. These strings have not yet been standardised. " label="SensorBandIdentifier" title="Sensor Band Identifier" uid="sensor_band_identifier" units=""/>
<item description="Sensor view angle is the angle between the line of sight from the sensor and the direction straight vertically down. Zero view angle means looking directly beneath the sensor. There is no standardized sign convention for sensor_view_angle. A standard name also exists for platform_view_angle, where &quot;platform&quot; refers to the vehicle from which observations are made e.g. aeroplane, ship, or satellite. For some viewing geometries the sensor and the platform cannot be assumed to be close enough to neglect the difference in calculated view angle." label="SensorViewAngle" title="Sensor View Angle" uid="sensor_view_angle" units="degree"/>
<item description="sensor_zenith_angle is the angle between the line of sight to the sensor and the local zenith at the observation target. This angle is measured starting from directly overhead and its range is from zero (directly overhead the observation target) to 180 degrees (directly below the observation target). Local zenith is a line perpendicular to the Earth's surface at a given location. &quot;Observation target&quot; means a location on the Earth defined by the sensor performing the observations.  A standard name also exists for platform_zenith_angle, where &quot;platform&quot; refers to the vehicle from which observations are made e.g. aeroplane, ship, or satellite. For some viewing geometries the sensor and the platform cannot be assumed to be close enough to neglect the difference in calculated zenith angle." label="SensorZenithAngle" title="Sensor Zenith Angle" uid="sensor_zenith_angle" units="degree"/>
<item description="&quot;Time fraction&quot; means a fraction of a time interval. The interval in question must be specified by the values or bounds of the time coordinate variable associated with the data. &quot;X_time_fraction&quot; means the fraction of the time interval during which X occurs." label="ShallowConvectionTimeFraction" title="Shallow Convection Time Fraction" uid="shallow_convection_time_fraction" units="1"/>
<item description="Convective precipitation is that produced by the convection schemes in an atmosphere model. Some atmosphere models differentiate between shallow and deep convection. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ShallowConvectivePrecipitationFlux" title="Shallow Convective Precipitation Flux" uid="shallow_convective_precipitation_flux" units="kg m-2 s-1"/>
<item description="&quot;Single scattering albedo&quot; is the fraction of radiation in an incident light beam scattered by the particles of an aerosol reference volume for a given wavelength. It is the ratio of the scattering and the extinction coefficients of the aerosol particles in the reference volume. A coordinate variable with a standard name of radiation_wavelength or radiation_frequency should be included to specify either the wavelength or frequency. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="SingleScatteringAlbedoInAirDueToAmbientAerosolParticles" title="Single Scattering Albedo in Air Due To Ambient Aerosol Particles" uid="single_scattering_albedo_in_air_due_to_ambient_aerosol_particles" units="1"/>
<item description="The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.   'Sinking' is the gravitational settling of particulate matter suspended in a liquid. A sinking flux is positive downwards and is calculated relative to the movement of the surrounding fluid. Aragonite is a mineral that is a polymorph of calcium carbonate. The chemical formula of aragonite is CaCO3. Standard names also exist for calcite, another polymorph of calcium carbonate." label="SinkingMoleFluxOfAragoniteExpressedAsCarbonInSeaWater" title="Sinking Mole Flux of Aragonite Expressed As Carbon in Sea Water" uid="sinking_mole_flux_of_aragonite_expressed_as_carbon_in_sea_water" units="mol m-2 s-1"/>
<item description="The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.   'Sinking' is the gravitational settling of particulate matter suspended in a liquid. A sinking flux is positive downwards and is calculated relative to the movement of the surrounding fluid. Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate." label="SinkingMoleFluxOfCalciteExpressedAsCarbonInSeaWater" title="Sinking Mole Flux of Calcite Expressed As Carbon in Sea Water" uid="sinking_mole_flux_of_calcite_expressed_as_carbon_in_sea_water" units="mol m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.   'Sinking' is the gravitational settling of particulate matter suspended in a liquid. A sinking flux is positive downwards and is calculated relative to the movement of the surrounding fluid." label="SinkingMoleFluxOfParticulateIronInSeaWater" title="Sinking Mole Flux of Particulate Iron in Sea Water" uid="sinking_mole_flux_of_particulate_iron_in_sea_water" units="mol m-2 s-1"/>
<item description="The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.   'Sinking' is the gravitational settling of particulate matter suspended in a liquid. A sinking flux is positive downwards and is calculated relative to the movement of the surrounding fluid." label="SinkingMoleFluxOfParticulateOrganicMatterExpressedAsCarbonInSeaWater" title="Sinking Mole Flux of Particulate Organic Matter Expressed As Carbon in Sea Water" uid="sinking_mole_flux_of_particulate_organic_matter_expressed_as_carbon_in_sea_water" units="mol m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.   'Sinking' is the gravitational settling of particulate matter suspended in a liquid. A sinking flux is positive downwards and is calculated relative to the movement of the surrounding fluid." label="SinkingMoleFluxOfParticulateOrganicNitrogenInSeaWater" title="Sinking Mole Flux of Particulate Organic Nitrogen in Sea Water" uid="sinking_mole_flux_of_particulate_organic_nitrogen_in_sea_water" units="mol m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.   'Sinking' is the gravitational settling of particulate matter suspended in a liquid. A sinking flux is positive downwards and is calculated relative to the movement of the surrounding fluid." label="SinkingMoleFluxOfParticulateOrganicPhosphorusInSeaWater" title="Sinking Mole Flux of Particulate Organic Phosphorus in Sea Water" uid="sinking_mole_flux_of_particulate_organic_phosphorus_in_sea_water" units="mol m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.   'Sinking' is the gravitational settling of particulate matter suspended in a liquid. A sinking flux is positive downwards and is calculated relative to the movement of the surrounding fluid." label="SinkingMoleFluxOfParticulateSiliconInSeaWater" title="Sinking Mole Flux of Particulate Silicon in Sea Water" uid="sinking_mole_flux_of_particulate_silicon_in_sea_water" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;soil content&quot; of a quantity refers to the vertical integral from the surface down to the bottom of the soil model. For the content between specified levels in the soil, standard names including content_of_soil_layer are used.  &quot;Soil carbon&quot; is the organic matter present in soil quantified by the mass of carbon it contains. Soil carbon is returned to the atmosphere as the organic matter decays. The decay process takes varying amounts of time depending on the composition of the organic matter, the temperature and the availability of moisture. A carbon &quot;soil pool&quot; means the carbon contained in organic matter which has a characteristic period over which it decays and releases carbon into the atmosphere. &quot;Slow soil pool&quot; refers to the decay of organic matter in soil with a characteristic period of more than a hundred years under reference climate conditions of a temperature of 20 degrees Celsius and no water limitations." label="SlowSoilPoolCarbonContent" title="Slow Soil Pool Carbon Content" uid="slow_soil_pool_carbon_content" units="kg m-2"/>
<item description="" label="SnowDensity" title="Snow Density" uid="snow_density" units="kg m-3"/>
<item description="" label="SnowGrainSize" title="Snow Grain Size" uid="snow_grain_size" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area." label="SnowfallAmount" title="Snowfall Amount" uid="snowfall_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SnowfallFlux" title="Snowfall Flux" uid="snowfall_flux" units="kg m-2 s-1"/>
<item description="Soil albedo is the albedo of the soil surface assuming no snow." label="SoilAlbedo" title="Soil Albedo" uid="soil_albedo" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;soil content&quot; of a quantity refers to the vertical integral from the surface down to the bottom of the soil model. For the content between specified levels in the soil, standard names including content_of_soil_layer are used." label="SoilCarbonContent" title="Soil Carbon Content" uid="soil_carbon_content" units="kg m-2"/>
<item description="&quot;frozen_water&quot; means ice. &quot;Content&quot; indicates a quantity per unit area. The &quot;soil content&quot; of a quantity refers to the vertical integral from the surface down to the bottom of the soil model. For the content between specified levels in the soil, standard names including content_of_soil_layer are used." label="SoilFrozenWaterContent" title="Soil Frozen Water Content" uid="soil_frozen_water_content" units="kg m-2"/>
<item description="Hydraulic conductivity is the constant k in Darcy's Law q=-k grad h for fluid flow q (volume transport per unit area i.e. velocity) through a porous medium, where h is the hydraulic head (pressure expressed as an equivalent depth of water)." label="SoilHydraulicConductivityAtSaturation" title="Soil Hydraulic Conductivity At Saturation" uid="soil_hydraulic_conductivity_at_saturation" units="m s-1"/>
<item description="&quot;moisture&quot; means water in all phases contained in soil. &quot;Content&quot; indicates a quantity per unit area. The &quot;soil content&quot; of a quantity refers to the vertical integral from the surface down to the bottom of the soil model. For the content between specified levels in the soil, standard names including content_of_soil_layer are used." label="SoilMoistureContent" title="Soil Moisture Content" uid="soil_moisture_content" units="kg m-2"/>
<item description="&quot;moisture&quot; means water in all phases contained in soil. &quot;Content&quot; indicates a quantity per unit area. The &quot;soil content&quot; of a quantity refers to the vertical integral from the surface down to the bottom of the soil model. For the content between specified levels in the soil, standard names including content_of_soil_layer are used. The field capacity of soil is the maximum content of water it can retain against gravitational drainage." label="SoilMoistureContentAtFieldCapacity" title="Soil Moisture Content At Field Capacity" uid="soil_moisture_content_at_field_capacity" units="kg m-2"/>
<item description="The soil porosity is the proportion of its total volume not occupied by soil solids." label="SoilPorosity" title="Soil Porosity" uid="soil_porosity" units="1"/>
<item description="&quot;Respiration carbon&quot; refers to the rate at which biomass is respired expressed as the mass of carbon which it contains. Soil respiration is the sum of respiration in the soil by animals and decomposers of litter (heterotrophs or &quot;consumers&quot;), which have not produced the biomass they respire, and respiration by the roots of plants (autotrophs or &quot;producers&quot;), which have themselves produced the biomass they respire. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SoilRespirationCarbonFlux" title="Soil Respiration Carbon Flux" uid="soil_respiration_carbon_flux" units="kg m-2 s-1"/>
<item description="Soil suction is the tensile stress on water in soil due to molecular forces acting at the water-soil particle boundary. The forces may cause water to be drawn into the spaces within the soil matrix or cause it to be held in the soil without draining. Soil suction occurs in soil above the water table." label="SoilSuctionAtSaturation" title="Soil Suction At Saturation" uid="soil_suction_at_saturation" units="Pa"/>
<item description="Soil temperature is the bulk temperature of the soil, not the surface (skin) temperature." label="SoilTemperature" title="Soil Temperature" uid="soil_temperature" units="K"/>
<item description="Thermal capacity, or heat capacity, is the amount of heat energy required to increase the temperature of 1 kg of material by 1 K. It is a property of the material." label="SoilThermalCapacity" title="Soil Thermal Capacity" uid="soil_thermal_capacity" units="J kg-1 K-1"/>
<item description="Thermal conductivity is the constant k in the formula q = -k grad T where q is the heat transfer per unit time per unit area of a surface normal to the direction of transfer and grad T is the temperature gradient. Thermal conductivity is a property of the material." label="SoilThermalConductivity" title="Soil Thermal Conductivity" uid="soil_thermal_conductivity" units="W m-1 K-1"/>
<item description="A variable with the standard name of soil_type contains strings which indicate the character of the soil e.g. clay. These strings have not yet been standardised. Alternatively, the data variable may contain integers which can be translated to strings using flag_values and flag_meanings attributes." label="SoilType" title="Soil Type" uid="soil_type" units="1"/>
<item description="Solar azimuth angle is the horizontal angle between the line of sight to the sun and a reference direction which is often due north. The angle is measured clockwise." label="SolarAzimuthAngle" title="Solar Azimuth Angle" uid="solar_azimuth_angle" units="degree"/>
<item description="Solar elevation angle is the angle between the line of sight to the sun and the local horizontal." label="SolarElevationAngle" title="Solar Elevation Angle" uid="solar_elevation_angle" units="degree"/>
<item description="The quantity with standard name solar_irradiance, often called Total Solar Irradiance (TSI), is the radiation from the sun integrated over the whole electromagnetic spectrum and over the entire solar disk. The quantity applies outside the atmosphere, by default at a distance of one astronomical unit from the sun, but a coordinate or scalar coordinate variable of distance_from_sun can be used to specify a value other than the default. &quot;Irradiance&quot; means the power per unit area (called radiative flux in other standard names), the area being normal to the direction of flow of the radiant energy." label="SolarIrradiance" title="Solar Irradiance" uid="solar_irradiance" units="W m-2"/>
<item description="The quantity with standard name solar_irradiance_per_unit_wavelength, often called Solar Spectral Irradiance (SSI), is the radiation from the sun as a function of wavelength integrated over the entire solar disk. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength. The quantity applies outside the atmosphere, by default at a distance of one astronomical unit from the sun, but a coordinate or scalar coordinate variable of distance_from_sun can be used to specify a value other than the default. &quot;Irradiance&quot; means the power per unit area (called radiative flux in other standard names), the area being normal to the direction of flow of the radiant energy." label="SolarIrradiancePerUnitWavelength" title="Solar Irradiance Per Unit Wavelength" uid="solar_irradiance_per_unit_wavelength" units="W m-2 m-1"/>
<item description="Solar zenith angle is the the angle between the line of sight to the sun and the local vertical." label="SolarZenithAngle" title="Solar Zenith Angle" uid="solar_zenith_angle" units="degree"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SootContentOfSurfaceSnow" title="Soot Content of Surface Snow" uid="soot_content_of_surface_snow" units="kg m-2"/>
<item description="Frequency is the number of oscillations of a wave per unit time." label="SoundFrequency" title="Sound Frequency" uid="sound_frequency" units="s-1"/>
<item description="Sound intensity is the sound energy per unit time per unit area." label="SoundIntensityInAir" title="Sound Intensity in Air" uid="sound_intensity_in_air" units="W m-2"/>
<item description="Sound intensity is the sound energy per unit time per unit area." label="SoundIntensityInWater" title="Sound Intensity in Water" uid="sound_intensity_in_water" units="W m-2"/>
<item description="Sound intensity is the sound energy per unit time per unit area. Sound intensity level in air is expressed on a logarithmic scale with reference to a sound intensity of 1e-12 W m-2. LI = 10 log10(I/I0) where LI is sound intensity level, I is sound intensity and I0 is the reference sound intensity." label="SoundIntensityLevelInAir" title="Sound Intensity Level in Air" uid="sound_intensity_level_in_air" units="dB"/>
<item description="Sound intensity is the sound energy per unit time per unit area. Sound intensity level in water is expressed on a logarithmic scale with reference to a sound intensity of 6.7e-19 W m-2. LI = 10 log10(I/I0) where LI is sound intensity level, I is sound intensity and I0 is the reference sound intensity." label="SoundIntensityLevelInWater" title="Sound Intensity Level in Water" uid="sound_intensity_level_in_water" units="dB"/>
<item description="Sound pressure is the difference from the local ambient pressure caused by a sound wave at a particular location and time." label="SoundPressureInAir" title="Sound Pressure in Air" uid="sound_pressure_in_air" units="Pa"/>
<item description="Sound pressure is the difference from the local ambient pressure caused by a sound wave at a particular location and time." label="SoundPressureInWater" title="Sound Pressure in Water" uid="sound_pressure_in_water" units="Pa"/>
<item description="Sound pressure is the difference from the local ambient pressure caused by a sound wave at a particular location and time. Sound pressure level in air is expressed on a logarithmic scale with reference to a sound pressure of 2e-5 Pa. Lp = 20 log10(p/p0) where Lp is the sound pressure level, p is the rms sound pressure and p0 is the reference sound pressure." label="SoundPressureLevelInAir" title="Sound Pressure Level in Air" uid="sound_pressure_level_in_air" units="dB"/>
<item description="Sound pressure is the difference from the local ambient pressure caused by a sound wave at a particular location and time. Sound pressure level in water is expressed on a logarithmic scale with reference to a sound pressure of 1e-6 Pa. Lp = 20 log10(p/p0) where Lp is the sound pressure level, p is the rms sound pressure and p0 is the reference sound pressure." label="SoundPressureLevelInWater" title="Sound Pressure Level in Water" uid="sound_pressure_level_in_water" units="dB"/>
<item description="An auxiliary coordinate variable with a standard name of source contains string values which describe the method of production of the original data with which the coordinate variable is associated. If the data were model-generated, source should name the model and its version, as specifically as could be useful. If the data are observational, source should characterize them (e.g., &quot;surface observation&quot;, &quot;radiosonde&quot;). The use of source as the standard name for an auxiliary coordinate variable permits the aggregation of data from multiple sources within a single data file." label="Source" title="Source" uid="source" units=""/>
<item description="&quot;specific&quot; means per unit mass. Dry energy is the sum of dry static energy and kinetic energy. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="SpecificDryEnergyOfAir" title="Specific Dry Energy of Air" uid="specific_dry_energy_of_air" units="m2 s-2"/>
<item description="&quot;specific&quot; means per unit mass. Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)" label="SpecificGravitationalPotentialEnergy" title="Specific Gravitational Potential Energy" uid="specific_gravitational_potential_energy" units="J kg-1"/>
<item description="&quot;specific&quot; means per unit mass. Specific humidity is the mass fraction of water vapor in (moist) air." label="SpecificHumidity" title="Specific Humidity" uid="specific_humidity" units="1"/>
<item description="&quot;specific&quot; means per unit mass." label="SpecificKineticEnergyOfAir" title="Specific Kinetic Energy of Air" uid="specific_kinetic_energy_of_air" units="m2 s-2"/>
<item description="&quot;specific&quot; means per unit mass." label="SpecificKineticEnergyOfSeaWater" title="Specific Kinetic Energy of Sea Water" uid="specific_kinetic_energy_of_sea_water" units="m2 s-2"/>
<item description="&quot;Specific&quot; means per unit mass. &quot;Turbulent kinetic energy&quot; is the kinetic energy of chaotic fluctuations of the fluid flow. The dissipation of kinetic energy arises in ocean models as a result of the viscosity of sea water." label="SpecificTurbulentKineticEnergyDissipationInSeaWater" title="Specific Turbulent Kinetic Energy Dissipation in Sea Water" uid="specific_turbulent_kinetic_energy_dissipation_in_sea_water" units="W kg-1"/>
<item description="&quot;Specific&quot; means per unit mass. &quot;Turbulent kinetic energy&quot; is the kinetic energy of chaotic fluctuations of the fluid flow." label="SpecificTurbulentKineticEnergyOfSeaWater" title="Specific Turbulent Kinetic Energy of Sea Water" uid="specific_turbulent_kinetic_energy_of_sea_water" units="m2 s-2"/>
<item description="Speed is the magnitude of velocity." label="SpeedOfSoundInAir" title="Speed of Sound in Air" uid="speed_of_sound_in_air" units="m s-1"/>
<item description="Speed is the magnitude of velocity." label="SpeedOfSoundInSeaWater" title="Speed of Sound in Sea Water" uid="speed_of_sound_in_sea_water" units="m s-1"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature.  A spell is the number of consecutive days on which the condition X_below|above_threshold is satisified.  A variable whose standard name has the form spell_length_of_days_with_X_below|above_threshold must have a coordinate variable or scalar coordinate variable with the a standard name of X to supply the threshold(s). It must have a climatological time variable, and a cell_method entry for within days which describes the processing of quantity X before the threshold is applied. A spell_length_of_days is an intensive quantity in time, and the cell_methods entry for over days can be any of the methods listed in Appendix E appropriate for intensive quantities e.g. &quot;maximum&quot;, &quot;minimum&quot; or &quot;mean&quot;." label="SpellLengthOfDaysWithAirTemperatureAboveThreshold" title="Spell Length of Days With Air Temperature Above Threshold" uid="spell_length_of_days_with_air_temperature_above_threshold" units="day"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature.  A spell is the number of consecutive days on which the condition X_below|above_threshold is satisified.  A variable whose standard name has the form spell_length_of_days_with_X_below|above_threshold must have a coordinate variable or scalar coordinate variable with the a standard name of X to supply the threshold(s). It must have a climatological time variable, and a cell_method entry for within days which describes the processing of quantity X before the threshold is applied. A spell_length_of_days is an intensive quantity in time, and the cell_methods entry for over days can be any of the methods listed in Appendix E appropriate for intensive quantities e.g. &quot;maximum&quot;, &quot;minimum&quot; or &quot;mean&quot;." label="SpellLengthOfDaysWithAirTemperatureBelowThreshold" title="Spell Length of Days With Air Temperature Below Threshold" uid="spell_length_of_days_with_air_temperature_below_threshold" units="day"/>
<item description="&quot;Amount&quot; means mass per unit area.  The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area.  &quot;lwe&quot; means liquid water equivalent.  A spell is the number of consecutive days on which the condition X_below|above_threshold is satisified.  A variable whose standard name has the form spell_length_of_days_with_X_below|above_threshold must have a coordinate variable or scalar coordinate variable with the a standard name of X to supply the threshold(s). It must have a climatological time variable, and a cell_method entry for within days which describes the processing of quantity X before the threshold is applied. A spell_length_of_days is an intensive quantity in time, and the cell_methods entry for over days can be any of the methods listed in Appendix E appropriate for intensive quantities e.g. &quot;maximum&quot;, &quot;minimum&quot; or &quot;mean&quot;." label="SpellLengthOfDaysWithLweThicknessOfPrecipitationAmountAboveThreshold" title="Spell Length of Days With Lwe Thickness of Precipitation Amount Above Threshold" uid="spell_length_of_days_with_lwe_thickness_of_precipitation_amount_above_threshold" units="day"/>
<item description="&quot;Amount&quot; means mass per unit area.  The construction lwe_thickness_of_X_amount or _content means the vertical extent of a layer of liquid water having the same mass per unit area.  &quot;lwe&quot; means liquid water equivalent.  A spell is the number of consecutive days on which the condition X_below|above_threshold is satisified.  A variable whose standard name has the form spell_length_of_days_with_X_below|above_threshold must have a coordinate variable or scalar coordinate variable with the a standard name of X to supply the threshold(s). It must have a climatological time variable, and a cell_method entry for within days which describes the processing of quantity X before the threshold is applied. A spell_length_of_days is an intensive quantity in time, and the cell_methods entry for over days can be any of the methods listed in Appendix E appropriate for intensive quantities e.g. &quot;maximum&quot;, &quot;minimum&quot; or &quot;mean&quot;." label="SpellLengthOfDaysWithLweThicknessOfPrecipitationAmountBelowThreshold" title="Spell Length of Days With Lwe Thickness of Precipitation Amount Below Threshold" uid="spell_length_of_days_with_lwe_thickness_of_precipitation_amount_below_threshold" units="day"/>
<item description="&quot;square_of_X&quot; means X*X. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="SquareOfAirTemperature" title="Square of Air Temperature" uid="square_of_air_temperature" units="K2"/>
<item description="&quot;square_of_X&quot; means X*X. Frequency is the number of oscillations of a wave per unit time." label="SquareOfBruntVaisalaFrequencyInAir" title="Square of Brunt Vaisala Frequency in Air" uid="square_of_brunt_vaisala_frequency_in_air" units="s-2"/>
<item description="&quot;square_of_X&quot; means X*X. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="SquareOfEastwardWind" title="Square of Eastward Wind" uid="square_of_eastward_wind" units="m2 s-2"/>
<item description="&quot;square_of_X&quot; means X*X. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. Geopotential height is the geopotential divided by the standard acceleration due to gravity. It is numerically similar to the altitude (or geometric height) and not to the quantity with standard name height, which is relative to the surface." label="SquareOfGeopotentialHeight" title="Square of Geopotential Height" uid="square_of_geopotential_height" units="m2"/>
<item description="&quot;square_of_X&quot; means X*X. &quot;tendency_of_X&quot; means derivative of X with respect to time. The Lagrangian tendency of a quantity is its rate of change following the motion of the fluid, also called the &quot;material derivative&quot; or &quot;convective derivative&quot;. The Lagrangian tendency of air pressure, often called &quot;omega&quot;, plays the role of the upward component of air velocity when air pressure is being used as the vertical coordinate. If the vertical air velocity is upwards, it is negative when expressed as a tendency of air pressure; downwards is positive." label="SquareOfLagrangianTendencyOfAirPressure" title="Square of Lagrangian Tendency of Air Pressure" uid="square_of_lagrangian_tendency_of_air_pressure" units="Pa2 s-2"/>
<item description="&quot;square_of_X&quot; means X*X. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="SquareOfNorthwardWind" title="Square of Northward Wind" uid="square_of_northward_wind" units="m2 s-2"/>
<item description="The ocean mixed layer is the upper part of the ocean, regarded as being well-mixed.  The base of the mixed layer defined by temperature, sigma, sigma_theta or sigma_t is the level at which the quantity indicated differs from its surface value by a certain amount.  &quot;Thickness&quot; means the vertical extent of a layer.  &quot;square_of_X&quot; means X*X." label="SquareOfOceanMixedLayerThicknessDefinedBySigmaT" title="Square of Ocean Mixed Layer Thickness Defined by Sigma T" uid="square_of_ocean_mixed_layer_thickness_defined_by_sigma_t" units="m2"/>
<item description="The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. (The volume enclosed between the geoid and the sea floor equals the mean volume of water in the ocean.) In an ocean GCM the geoid is the surface of zero depth, or the rigid lid if the model uses that approximation.  &quot;Sea surface height&quot; is a time-varying quantity.  &quot;square_of_X&quot; means X*X." label="SquareOfSeaSurfaceHeightAboveGeoid" title="Square of Sea Surface Height Above Geoid" uid="square_of_sea_surface_height_above_geoid" units="m2"/>
<item description="Sea surface temperature is usually abbreviated as &quot;SST&quot;. It is the temperature of sea water near the surface (including the part under sea-ice, if any), and not the skin temperature, whose standard name is surface_temperature. For the temperature of sea water at a particular depth or layer, a data variable of sea_water_temperature with a vertical coordinate axis should be used.  &quot;square_of_X&quot; means X*X." label="SquareOfSeaSurfaceTemperature" title="Square of Sea Surface Temperature" uid="square_of_sea_surface_temperature" units="K2"/>
<item description="&quot;square_of_X&quot; means X*X. A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Upward air velocity is the vertical component of the 3D air velocity vector." label="SquareOfUpwardAirVelocity" title="Square of Upward Air Velocity" uid="square_of_upward_air_velocity" units="m2 s-2"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  Ocean transport means transport by all processes, both sea water and sea ice.  &quot;square_of_X&quot; means X*X." label="SquareOfUpwardOceanMassTransport" title="Square of Upward Ocean Mass Transport" uid="square_of_upward_ocean_mass_transport" units="kg2 s-2"/>
<item description="A variable with the standard name of status_flag contains an indication of quality or other status of another data variable. The linkage between the data variable and the variable with the standard_name of status_flag is achieved using the ancillary_variables attribute." label="StatusFlag" title="Status Flag" uid="status_flag" units="1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X.  Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;.  The cloud area fraction is for the whole atmosphere column, as seen from the surface or the top of the atmosphere. The cloud area fraction in a layer of the atmosphere has the standard name cloud_area_fraction_in_atmosphere_layer.  In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes)." label="StratiformCloudAreaFraction" title="Stratiform Cloud Area Fraction" uid="stratiform_cloud_area_fraction" units="1"/>
<item description="&quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. Cloud area fraction is also called &quot;cloud amount&quot; and &quot;cloud cover&quot;. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes)." label="StratiformCloudAreaFractionInAtmosphereLayer" title="Stratiform Cloud Area Fraction in Atmosphere Layer" uid="stratiform_cloud_area_fraction_in_atmosphere_layer" units="1"/>
<item description="Emissivity is the ratio of the power emitted by an object to the power that would be emitted by a perfect black body having the same temperature as the object. The emissivity is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength or radiation_frequency is included to specify either the wavelength or frequency. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  &quot;longwave&quot; means longwave radiation." label="StratiformCloudLongwaveEmissivity" title="Stratiform Cloud Longwave Emissivity" uid="stratiform_cloud_longwave_emissivity" units="1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="StratiformGraupelFlux" title="Stratiform Graupel Flux" uid="stratiform_graupel_flux" units="kg m-2 s-1"/>
<item description="Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud.  &quot;Amount&quot; means mass per unit area." label="StratiformPrecipitationAmount" title="Stratiform Precipitation Amount" uid="stratiform_precipitation_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="StratiformPrecipitationFlux" title="Stratiform Precipitation Flux" uid="stratiform_precipitation_flux" units="kg m-2 s-1"/>
<item description="Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud.  &quot;Amount&quot; means mass per unit area." label="StratiformRainfallAmount" title="Stratiform Rainfall Amount" uid="stratiform_rainfall_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="StratiformRainfallFlux" title="Stratiform Rainfall Flux" uid="stratiform_rainfall_flux" units="kg m-2 s-1"/>
<item description="Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="StratiformRainfallRate" title="Stratiform Rainfall Rate" uid="stratiform_rainfall_rate" units="m s-1"/>
<item description="Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud.  &quot;Amount&quot; means mass per unit area." label="StratiformSnowfallAmount" title="Stratiform Snowfall Amount" uid="stratiform_snowfall_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="StratiformSnowfallFlux" title="Stratiform Snowfall Flux" uid="stratiform_snowfall_flux" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;stratosphere content&quot; of a quantity refers to the vertical integral from the tropopause to the stratopause. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for nitrogen_dioxide is NO2." label="StratosphereMoleContentOfNitrogenDioxide" title="Stratosphere Mole Content of Nitrogen Dioxide" uid="stratosphere_mole_content_of_nitrogen_dioxide" units="mol m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  &quot;Litter carbon&quot; is dead plant material in or above the soil quantified as the mass of carbon which it contains.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SubsurfaceLitterCarbonContent" title="Subsurface Litter Carbon Content" uid="subsurface_litter_carbon_content" units="kg m-2"/>
<item description="&quot;Amount&quot; means mass per unit area. Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage." label="SubsurfaceRunoffAmount" title="Subsurface Runoff Amount" uid="subsurface_runoff_amount" units="kg m-2"/>
<item description="Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SubsurfaceRunoffFlux" title="Subsurface Runoff Flux" uid="subsurface_runoff_flux" units="kg m-2 s-1"/>
<item description="The angle between an incident beam of solar radiation and the outgoing beam specularly reflected at a sea surface." label="SunglintAngle" title="Sunglint Angle" uid="sunglint_angle" units="rad"/>
<item description="X_binary_mask has 1 where condition X is met, 0 elsewhere." label="SunlitBinaryMask" title="Sunlit Binary Mask" uid="sunlit_binary_mask" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceAirPressure" title="Surface Air Pressure" uid="surface_air_pressure" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceAlbedo" title="Surface Albedo" uid="surface_albedo" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition." label="SurfaceAlbedoAssumingDeepSnow" title="Surface Albedo Assuming Deep Snow" uid="surface_albedo_assuming_deep_snow" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition." label="SurfaceAlbedoAssumingNoSnow" title="Surface Albedo Assuming No Snow" uid="surface_albedo_assuming_no_snow" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." label="SurfaceAltitude" title="Surface Altitude" uid="surface_altitude" units="m"/>
<item description="The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength is included to specify the wavelength. Scattering of radiation is its deflection from its incident path without loss of energy. Backwards scattering refers to the sum of scattering into all backward angles i.e. scattering_angle exceeding pi/2 radians. A scattering_angle should not be specified with this quantity." label="SurfaceBackwardsScatteringCoefficientOfRadarWave" title="Surface Backwards Scattering Coefficient of Radar Wave" uid="surface_backwards_scattering_coefficient_of_radar_wave" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Bidirectional_reflectance&quot; depends on the angles of incident and measured radiation. Reflectance is the ratio of the energy of the reflected to the incident radiation. A coordinate variable of radiation_wavelength or radiation_frequency can be used to specify the wavelength or frequency, respectively, of the radiation." label="SurfaceBidirectionalReflectance" title="Surface Bidirectional Reflectance" uid="surface_bidirectional_reflectance" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere.The brightness temperature of a body is the temperature of a black body which radiates the same power per unit solid angle per unit area." label="SurfaceBrightnessTemperature" title="Surface Brightness Temperature" uid="surface_brightness_temperature" units="K"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The chemical formula for carbon dioxide is CO2. In ocean biogeochemistry models, an &quot;abiotic analogue&quot; is used to simulate the effect on a modelled variable when biological effects on ocean carbon concentration and alkalinity are ignored. The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume. The partial pressure of a dissolved gas in sea water is the partial pressure in air with which it would be in equilibrium. The partial pressure difference between sea water and air is positive when the partial pressure of the dissolved gas in sea water is greater than the partial pressure in air." label="SurfaceCarbonDioxideAbioticAnaloguePartialPressureDifferenceBetweenSeaWaterAndAir" title="Surface Carbon Dioxide Abiotic Analogue Partial Pressure Difference Between Sea Water And Air" uid="surface_carbon_dioxide_abiotic_analogue_partial_pressure_difference_between_sea_water_and_air" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The chemical formula for carbon dioxide is CO2. In ocean biogeochemistry models, a &quot;natural analogue&quot; is used to simulate the effect on a modelled variable of imposing preindustrial atmospheric carbon dioxide concentrations, even when the model as a whole may be subjected to varying forcings. The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume. The partial pressure of a dissolved gas in sea water is the partial pressure in air with which it would be in equilibrium. The partial pressure difference between sea water and air is positive when the partial pressure of the dissolved gas in sea water is greater than the partial pressure in air." label="SurfaceCarbonDioxideNaturalAnaloguePartialPressureDifferenceBetweenSeaWaterAndAir" title="Surface Carbon Dioxide Natural Analogue Partial Pressure Difference Between Sea Water And Air" uid="surface_carbon_dioxide_natural_analogue_partial_pressure_difference_between_sea_water_and_air" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume." label="SurfaceCarbonDioxidePartialPressureDifferenceBetweenAirAndSeaWater" title="Surface Carbon Dioxide Partial Pressure Difference Between Air And Sea Water" uid="surface_carbon_dioxide_partial_pressure_difference_between_air_and_sea_water" units="Pa"/>
<item description="The partial pressure of a dissolved gas in sea water is the partial pressure in air with which it would be in equilibrium.  The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The chemical formula for carbon dioxide is CO2." label="SurfaceCarbonDioxidePartialPressureDifferenceBetweenSeaWaterAndAir" title="Surface Carbon Dioxide Partial Pressure Difference Between Sea Water And Air" uid="surface_carbon_dioxide_partial_pressure_difference_between_sea_water_and_air" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. &quot;Diffuse&quot; radiation is radiation that has been scattered by particles in the atmosphere such as cloud droplets and aerosols. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDiffuseDownwellingPhotosyntheticRadiativeFluxInAir" title="Surface Diffuse Downwelling Photosynthetic Radiative Flux in Air" uid="surface_diffuse_downwelling_photosynthetic_radiative_flux_in_air" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;.  &quot;Diffuse&quot; radiation is radiation that has been scattered by particles in the atmosphere such as cloud droplets and aerosols. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.  In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  &quot;shortwave&quot; means shortwave radiation." label="SurfaceDiffuseDownwellingShortwaveFluxInAir" title="Surface Diffuse Downwelling Shortwave Flux in Air" uid="surface_diffuse_downwelling_shortwave_flux_in_air" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.  In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. &quot;Diffuse&quot; radiation is radiation that has been scattered by particles in the atmosphere such as cloud droplets and aerosols. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called  &quot;flux density&quot; in physics. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A phrase &quot;assuming_condition&quot; indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;shortwave&quot; means shortwave radiation." label="SurfaceDiffuseDownwellingShortwaveFluxInAirAssumingClearSky" title="Surface Diffuse Downwelling Shortwave Flux in Air Assuming Clear Sky" uid="surface_diffuse_downwelling_shortwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Direct&quot; (also known as &quot;beam&quot;) radiation is radiation that has followed a direct path from the sun and is alternatively known as &quot;direct insolation&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;shortwave&quot; means shortwave radiation." label="SurfaceDirectDownwellingShortwaveFluxInAir" title="Surface Direct Downwelling Shortwave Flux in Air" uid="surface_direct_downwelling_shortwave_flux_in_air" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). &quot;Downward eastward&quot; indicates the ZX component of a tensor. A downward eastward stress is a downward flux of eastward momentum, which accelerates the lower medium eastward and the upper medium westward. The surface downward stress is the windstress on the surface." label="SurfaceDownwardEastwardStress" title="Surface Downward Eastward Stress" uid="surface_downward_eastward_stress" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). The vertical heat flux in air is the sum of all heat fluxes i.e. radiative, latent and sensible. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwardHeatFluxInAir" title="Surface Downward Heat Flux in Air" uid="surface_downward_heat_flux_in_air" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwardHeatFluxInSeaWater" title="Surface Downward Heat Flux in Sea Water" uid="surface_downward_heat_flux_in_sea_water" units="W m-2"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceDownwardHeatFluxInSnow" title="Surface Downward Heat Flux in Snow" uid="surface_downward_heat_flux_in_snow" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). The surface latent heat flux is the exchange of heat between the surface and the air on account of evaporation (including sublimation). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwardLatentHeatFlux" title="Surface Downward Latent Heat Flux" uid="surface_downward_latent_heat_flux" units="W m-2"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The chemical formula for ammonia is NH3." label="SurfaceDownwardMassFluxOfAmmonia" title="Surface Downward Mass Flux of Ammonia" uid="surface_downward_mass_flux_of_ammonia" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. In ocean biogeochemistry models, an &quot;abiotic analogue&quot; is used to simulate the effect on a modelled variable when biological effects on ocean carbon concentration and alkalinity are ignored. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The chemical formula for carbon dioxide is CO2." label="SurfaceDownwardMassFluxOfCarbonDioxideAbioticAnalogueExpressedAsCarbon" title="Surface Downward Mass Flux of Carbon Dioxide Abiotic Analogue Expressed As Carbon" uid="surface_downward_mass_flux_of_carbon_dioxide_abiotic_analogue_expressed_as_carbon" units="kg m-2 s-1"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The chemical formula for carbon dioxide is CO2." label="SurfaceDownwardMassFluxOfCarbonDioxideExpressedAsCarbon" title="Surface Downward Mass Flux of Carbon Dioxide Expressed As Carbon" uid="surface_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. In ocean biogeochemistry models, a &quot;natural analogue&quot; is used to simulate the effect on a modelled variable of imposing preindustrial atmospheric carbon dioxide concentrations, even when the model as a whole may be subjected to varying forcings. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The chemical formula for carbon dioxide is CO2." label="SurfaceDownwardMassFluxOfCarbonDioxideNaturalAnalogueExpressedAsCarbon" title="Surface Downward Mass Flux of Carbon Dioxide Natural Analogue Expressed As Carbon" uid="surface_downward_mass_flux_of_carbon_dioxide_natural_analogue_expressed_as_carbon" units="kg m-2 s-1"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). The surface called &quot;surface&quot; means the lower boundary of the atmosphere. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Irrigation&quot; includes water used to sustain crops, trees, pastures and urban lawns." label="SurfaceDownwardMassFluxOfWaterDueToIrrigation" title="Surface Downward Mass Flux of Water Due To Irrigation" uid="surface_downward_mass_flux_of_water_due_to_irrigation" units="kg m-2 s-1"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The chemical formula for carbon dioxide is CO2. The standard name surface_upward_mole_flux_of_carbon_dioxide should be used to label data in which the flux is positive when directed upward. The standard name &quot;surface_carbon_dioxide_mole_flux&quot; is deprecated because it does not specify in which direction the flux is positive.  Any data having the standard name &quot;surface_carbon_dioxide_mole_flux&quot; should be examined carefully to determine which sign convention was used." label="SurfaceDownwardMoleFluxOfCarbonDioxide" title="Surface Downward Mole Flux of Carbon Dioxide" uid="surface_downward_mole_flux_of_carbon_dioxide" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The chemical formula of CFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="SurfaceDownwardMoleFluxOfCfc11" title="Surface Downward Mole Flux of Cfc11" uid="surface_downward_mole_flux_of_cfc11" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The chemical formula for CFC12 is CF2Cl2. The IUPAC name for CFC12 is dichloro-difluoro-methane." label="SurfaceDownwardMoleFluxOfCfc12" title="Surface Downward Mole Flux of Cfc12" uid="surface_downward_mole_flux_of_cfc12" units="mol m-2 s-1"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceDownwardMoleFluxOfMolecularOxygen" title="Surface Downward Mole Flux of Molecular Oxygen" uid="surface_downward_mole_flux_of_molecular_oxygen" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The chemical formula of sulfur hexafluoride is SF6." label="SurfaceDownwardMoleFluxOfSulfurHexafluoride" title="Surface Downward Mole Flux of Sulfur Hexafluoride" uid="surface_downward_mole_flux_of_sulfur_hexafluoride" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). &quot;Downward northward&quot; indicates the ZY component of a tensor. A downward northward stress is a downward flux of northward momentum, which accelerates the lower medium northward and the upper medium southward. The surface downward stress is the windstress on the surface." label="SurfaceDownwardNorthwardStress" title="Surface Downward Northward Stress" uid="surface_downward_northward_stress" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). The surface sensible heat flux, also called &quot;turbulent&quot; heat flux, is the exchange of heat between the surface and the air by motion of air. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwardSensibleHeatFlux" title="Surface Downward Sensible Heat Flux" uid="surface_downward_sensible_heat_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). The surface water flux is the result of precipitation and evaporation. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwardWaterFlux" title="Surface Downward Water Flux" uid="surface_downward_water_flux" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward)." label="SurfaceDownwardXStress" title="Surface Downward X Stress" uid="surface_downward_x_stress" units="Pa"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A downward x stress is a downward flux of momentum towards the positive direction of the model's x-axis." label="SurfaceDownwardXStressCorrection" title="Surface Downward X Stress Correction" uid="surface_downward_x_stress_correction" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward)." label="SurfaceDownwardYStress" title="Surface Downward Y Stress" uid="surface_downward_y_stress" units="Pa"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A downward y stress is a downward flux of momentum towards the positive direction of the model's y-axis." label="SurfaceDownwardYStressCorrection" title="Surface Downward Y Stress Correction" uid="surface_downward_y_stress_correction" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;longwave&quot; means longwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingLongwaveFluxInAir" title="Surface Downwelling Longwave Flux in Air" uid="surface_downwelling_longwave_flux_in_air" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;longwave&quot; means longwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingLongwaveFluxInAirAssumingClearSky" title="Surface Downwelling Longwave Flux in Air Assuming Clear Sky" uid="surface_downwelling_longwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. A photon flux is specified in terms of numbers of photons expressed in moles. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingPhotonFluxInSeaWater" title="Surface Downwelling Photon Flux in Sea Water" uid="surface_downwelling_photon_flux_in_sea_water" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. A photon flux is specified in terms of numbers of photons expressed in moles. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceDownwellingPhotonFluxPerUnitWavelengthInSeaWater" title="Surface Downwelling Photon Flux Per Unit Wavelength in Sea Water" uid="surface_downwelling_photon_flux_per_unit_wavelength_in_sea_water" units="mol m-2 s-1 m-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Photon radiance is the photon flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A photon flux is specified in terms of numbers of photons expressed in moles." label="SurfaceDownwellingPhotonRadianceInSeaWater" title="Surface Downwelling Photon Radiance in Sea Water" uid="surface_downwelling_photon_radiance_in_sea_water" units="mol m-2 s-1 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Photon radiance is the photon flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A photon flux is specified in terms of numbers of photons expressed in moles. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceDownwellingPhotonRadiancePerUnitWavelengthInSeaWater" title="Surface Downwelling Photon Radiance Per Unit Wavelength in Sea Water" uid="surface_downwelling_photon_radiance_per_unit_wavelength_in_sea_water" units="mol m-2 s-1 m-1 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Photon spherical irradiance is the photon flux incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. A photon flux is specified in terms of numbers of photons expressed in moles." label="SurfaceDownwellingPhotonSphericalIrradianceInSeaWater" title="Surface Downwelling Photon Spherical Irradiance in Sea Water" uid="surface_downwelling_photon_spherical_irradiance_in_sea_water" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Photon spherical irradiance is the photon flux incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. A photon flux is specified in terms of numbers of photons expressed in moles. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceDownwellingPhotonSphericalIrradiancePerUnitWavelengthInSeaWater" title="Surface Downwelling Photon Spherical Irradiance Per Unit Wavelength in Sea Water" uid="surface_downwelling_photon_spherical_irradiance_per_unit_wavelength_in_sea_water" units="mol m-2 s-1 m-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. A photon flux is specified in terms of numbers of photons expressed in moles. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingPhotosyntheticPhotonFluxInAir" title="Surface Downwelling Photosynthetic Photon Flux in Air" uid="surface_downwelling_photosynthetic_photon_flux_in_air" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. A photon flux is specified in terms of numbers of photons expressed in moles. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingPhotosyntheticPhotonFluxInSeaWater" title="Surface Downwelling Photosynthetic Photon Flux in Sea Water" uid="surface_downwelling_photosynthetic_photon_flux_in_sea_water" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Photon radiance is the photon flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. A photon flux is specified in terms of numbers of photons expressed in moles." label="SurfaceDownwellingPhotosyntheticPhotonRadianceInSeaWater" title="Surface Downwelling Photosynthetic Photon Radiance in Sea Water" uid="surface_downwelling_photosynthetic_photon_radiance_in_sea_water" units="mol m-2 s-1 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. Photon spherical irradiance is the photon flux incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. The direction (&quot;up/downwelling&quot;) is specified. Radiation incident on a 4-pi collector has standard names of &quot;omnidirectional spherical irradiance&quot;. A photon flux is specified in terms of numbers of photons expressed in moles." label="SurfaceDownwellingPhotosyntheticPhotonSphericalIrradianceInSeaWater" title="Surface Downwelling Photosynthetic Photon Spherical Irradiance in Sea Water" uid="surface_downwelling_photosynthetic_photon_spherical_irradiance_in_sea_water" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingPhotosyntheticRadianceInSeaWater" title="Surface Downwelling Photosynthetic Radiance in Sea Water" uid="surface_downwelling_photosynthetic_radiance_in_sea_water" units="W m-2 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingPhotosyntheticRadiativeFluxInAir" title="Surface Downwelling Photosynthetic Radiative Flux in Air" uid="surface_downwelling_photosynthetic_radiative_flux_in_air" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingPhotosyntheticRadiativeFluxInSeaWater" title="Surface Downwelling Photosynthetic Radiative Flux in Sea Water" uid="surface_downwelling_photosynthetic_radiative_flux_in_sea_water" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. Spherical irradiance is the radiation incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. It is sometimes called &quot;scalar irradiance&quot;. The direction (up/downwelling) is specified. Radiation incident on a 4-pi collector has standard names of &quot;omnidirectional spherical irradiance&quot;." label="SurfaceDownwellingPhotosyntheticSphericalIrradianceInSeaWater" title="Surface Downwelling Photosynthetic Spherical Irradiance in Sea Water" uid="surface_downwelling_photosynthetic_spherical_irradiance_in_sea_water" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="SurfaceDownwellingRadianceInSeaWater" title="Surface Downwelling Radiance in Sea Water" uid="surface_downwelling_radiance_in_sea_water" units="W m-2 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction from which it is coming must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceDownwellingRadiancePerUnitWavelengthInSeaWater" title="Surface Downwelling Radiance Per Unit Wavelength in Sea Water" uid="surface_downwelling_radiance_per_unit_wavelength_in_sea_water" units="W m-2 m-1 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiative flux is the sum of shortwave and longwave radiative fluxes. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingRadiativeFluxInSeaWater" title="Surface Downwelling Radiative Flux in Sea Water" uid="surface_downwelling_radiative_flux_in_sea_water" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceDownwellingRadiativeFluxPerUnitWavelengthInAir" title="Surface Downwelling Radiative Flux Per Unit Wavelength in Air" uid="surface_downwelling_radiative_flux_per_unit_wavelength_in_air" units="W m-2 m-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceDownwellingRadiativeFluxPerUnitWavelengthInSeaWater" title="Surface Downwelling Radiative Flux Per Unit Wavelength in Sea Water" uid="surface_downwelling_radiative_flux_per_unit_wavelength_in_sea_water" units="W m-2 m-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;shortwave&quot; means shortwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Surface downwelling shortwave is the sum of direct and diffuse solar radiation incident on the surface, and is sometimes called &quot;global radiation&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingShortwaveFluxInAir" title="Surface Downwelling Shortwave Flux in Air" uid="surface_downwelling_shortwave_flux_in_air" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;shortwave&quot; means shortwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Surface downwelling shortwave is the sum of direct and diffuse solar radiation incident on the surface, and is sometimes called &quot;global radiation&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceDownwellingShortwaveFluxInAirAssumingClearSky" title="Surface Downwelling Shortwave Flux in Air Assuming Clear Sky" uid="surface_downwelling_shortwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Spherical irradiance is the radiation incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. It is sometimes called &quot;scalar irradiance&quot;. The direction (up/downwelling) is specified. Radiation incident on a 4-pi collector has standard names of &quot;omnidirectional spherical irradiance&quot;." label="SurfaceDownwellingSphericalIrradianceInSeaWater" title="Surface Downwelling Spherical Irradiance in Sea Water" uid="surface_downwelling_spherical_irradiance_in_sea_water" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Spherical irradiance is the radiation incident on unit area of a hemispherical (or &quot;2-pi&quot;) collector. It is sometimes called &quot;scalar irradiance&quot;. The direction (up/downwelling) is specified. Radiation incident on a 4-pi collector has standard names of &quot;omnidirectional spherical irradiance&quot;. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceDownwellingSphericalIrradiancePerUnitWavelengthInSeaWater" title="Surface Downwelling Spherical Irradiance Per Unit Wavelength in Sea Water" uid="surface_downwelling_spherical_irradiance_per_unit_wavelength_in_sea_water" units="W m-2 m-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceDragCoefficientForHeatInAir" title="Surface Drag Coefficient For Heat in Air" uid="surface_drag_coefficient_for_heat_in_air" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceDragCoefficientForMomentumInAir" title="Surface Drag Coefficient For Momentum in Air" uid="surface_drag_coefficient_for_momentum_in_air" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceDragCoefficientInAir" title="Surface Drag Coefficient in Air" uid="surface_drag_coefficient_in_air" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward)." label="SurfaceEastwardSeaWaterVelocity" title="Surface Eastward Sea Water Velocity" uid="surface_eastward_sea_water_velocity" units="m s-1"/>
<item description="&quot;Amount&quot; means mass per unit area. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The chemical formula for carbon dioxide is CO2. Frozen carbon dioxide is found on the surface of Mars." label="SurfaceFrozenCarbonDioxideAmount" title="Surface Frozen Carbon Dioxide Amount" uid="surface_frozen_carbon_dioxide_amount" units="kg m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy." label="SurfaceGeopotential" title="Surface Geopotential" uid="surface_geopotential" units="m2 s-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars. surface_geostrophic_eastward_sea_water_velocity is the sum of a variable part, surface_geostrophic_eastward_sea_water_velocity_assuming_sea_level_for_geoid, and a constant part due to the stationary component of ocean circulation." label="SurfaceGeostrophicEastwardSeaWaterVelocity" title="Surface Geostrophic Eastward Sea Water Velocity" uid="surface_geostrophic_eastward_sea_water_velocity" units="m s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A velocity is a vector quantity. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars. &quot;sea_level&quot; means mean sea level. The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. (The volume enclosed between the geoid and the sea floor equals the mean volume of water in the ocean.) In an ocean GCM the geoid is the surface of zero depth, or the rigid lid if the model uses that approximation. surface_geostrophic_eastward_sea_water_velocity_assuming_sea_level_for_geoid is the variable part of surface_geostrophic_eastward_sea_water_velocity. The assumption that sea level is equal to the geoid means that the stationary component of ocean circulation is equal to zero." label="SurfaceGeostrophicEastwardSeaWaterVelocityAssumingSeaLevelForGeoid" title="Surface Geostrophic Eastward Sea Water Velocity Assuming Sea Level For Geoid" uid="surface_geostrophic_eastward_sea_water_velocity_assuming_sea_level_for_geoid" units="m s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars. surface_geostrophic_northward_sea_water_velocity is the sum of a variable part, surface_geostrophic_northward_sea_water_velocity_assuming_sea_level_for_geoid, and a constant part due to the stationary component of ocean circulation." label="SurfaceGeostrophicNorthwardSeaWaterVelocity" title="Surface Geostrophic Northward Sea Water Velocity" uid="surface_geostrophic_northward_sea_water_velocity" units="m s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars. &quot;sea_level&quot; means mean sea level. The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. (The volume enclosed between the geoid and the sea floor equals the mean volume of water in the ocean.) In an ocean GCM the geoid is the surface of zero depth, or the rigid lid if the model uses that approximation. surface_geostrophic_northward_sea_water_velocity_assuming_sea_level_for_geoid is the variable part of surface_geostrophic_northward_sea_water_velocity. The assumption that sea level is equal to the geoid means that the stationary component of ocean circulation is equal to zero." label="SurfaceGeostrophicNorthwardSeaWaterVelocityAssumingSeaLevelForGeoid" title="Surface Geostrophic Northward Sea Water Velocity Assuming Sea Level For Geoid" uid="surface_geostrophic_northward_sea_water_velocity_assuming_sea_level_for_geoid" units="m s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars. surface_geostrophic_sea_water_x_velocity is the sum of a variable part, surface_geostrophic_sea_water_x_velocity_assuming_sea_level_for_geoid, and a constant part due to the stationary component of ocean circulation." label="SurfaceGeostrophicSeaWaterXVelocity" title="Surface Geostrophic Sea Water X Velocity" uid="surface_geostrophic_sea_water_x_velocity" units="m s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars. &quot;sea_level&quot; means mean sea level. The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. (The volume enclosed between the geoid and the sea floor equals the mean volume of water in the ocean.) In an ocean GCM the geoid is the surface of zero depth, or the rigid lid if the model uses that approximation. surface_geostrophic_sea_water_x_velocity_assuming_sea_level_for_geoid is the variable part of surface_geostrophic_sea_water_x_velocity. The assumption that sea level is equal to the geoid means that the stationary component of ocean circulation is equal to zero." label="SurfaceGeostrophicSeaWaterXVelocityAssumingSeaLevelForGeoid" title="Surface Geostrophic Sea Water X Velocity Assuming Sea Level For Geoid" uid="surface_geostrophic_sea_water_x_velocity_assuming_sea_level_for_geoid" units="m s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars. surface_geostrophic_sea_water_y_velocity is the sum of a variable part, surface_geostrophic_sea_water_y_velocity_assuming_sea_level_for_geoid, and a constant part due to the stationary component of ocean circulation." label="SurfaceGeostrophicSeaWaterYVelocity" title="Surface Geostrophic Sea Water Y Velocity" uid="surface_geostrophic_sea_water_y_velocity" units="m s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Geostrophic&quot; indicates that geostrophic balance is assumed, i.e. that the pressure gradient force and the Coriolis force are balanced and the large scale fluid flow is parallel to the isobars. &quot;sea_level&quot; means mean sea level. The geoid is a surface of constant geopotential with which mean sea level would coincide if the ocean were at rest. surface_geostrophic_sea_water_y_velocity_assuming_sea_level_for_geoid is the variable part of surface_geostrophic_sea_water_y_velocity. The assumption that sea level is equal to the geoid means that the stationary component of ocean circulation is equal to zero." label="SurfaceGeostrophicSeaWaterYVelocityAssumingSeaLevelForGeoid" title="Surface Geostrophic Sea Water Y Velocity Assuming Sea Level For Geoid" uid="surface_geostrophic_sea_water_y_velocity_assuming_sea_level_for_geoid" units="m s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  &quot;Litter carbon&quot; is dead plant material in or above the soil quantified as the mass of carbon which it contains.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceLitterCarbonContent" title="Surface Litter Carbon Content" uid="surface_litter_carbon_content" units="kg m-2"/>
<item description="Emissivity is the ratio of the power emitted by an object to the power that would be emitted by a perfect black body having the same temperature as the object. The emissivity is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength or radiation_frequency is included to specify either the wavelength or frequency. The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  &quot;longwave&quot; means longwave radiation." label="SurfaceLongwaveEmissivity" title="Surface Longwave Emissivity" uid="surface_longwave_emissivity" units="1"/>
<item description="Emissivity is the ratio of the power emitted by an object to the power that would be emitted by a perfect black body having the same temperature as the object. The emissivity is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength or radiation_frequency is included to specify either the wavelength or frequency. The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceMicrowaveEmissivity" title="Surface Microwave Emissivity" uid="surface_microwave_emissivity" units="1"/>
<item description="The partial pressure of a dissolved gas in sea water is the partial pressure in air with which it would be in equilibrium.  The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceMolecularOxygenPartialPressureDifferenceBetweenSeaWaterAndAir" title="Surface Molecular Oxygen Partial Pressure Difference Between Sea Water And Air" uid="surface_molecular_oxygen_partial_pressure_difference_between_sea_water_and_air" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;longwave&quot; means longwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceNetDownwardLongwaveFlux" title="Surface Net Downward Longwave Flux" uid="surface_net_downward_longwave_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;longwave&quot; means longwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceNetDownwardLongwaveFluxAssumingClearSky" title="Surface Net Downward Longwave Flux Assuming Clear Sky" uid="surface_net_downward_longwave_flux_assuming_clear_sky" units="W m-2"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward mass flux is the difference between downward_mass_flux and upward_mass_flux. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Bidirectional surface exchange&quot; is the exchange of a chemical species between the atmosphere and biosphere as simulated by bidirectional surface flux models. It refers to exchange through stomata and soil surfaces and is the net result of emission and dry deposition. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The chemical formula for ammonia is NH3." label="SurfaceNetDownwardMassFluxOfAmmoniaDueToBidirectionalSurfaceExchange" title="Surface Net Downward Mass Flux of Ammonia Due To Bidirectional Surface Exchange" uid="surface_net_downward_mass_flux_of_ammonia_due_to_bidirectional_surface_exchange" units="kg m-2 s-1"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;All land processes&quot; means plant and soil respiration, photosynthesis, animal grazing, crop harvesting, natural fires and anthropogenic land use change. &quot;Anthropogenic land use change&quot; means human changes to land, excluding forest regrowth. It includes fires ignited by humans for the purpose of land use change and the processes of eventual disposal and decomposition of wood products such as paper, cardboard, furniture and timber for construction. The quantity with standard name surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes is  equal to the difference  between the quantities with standard names surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes_excluding_anthropogenic_land_use_change and surface_net_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_anthropogenic_land_use_change. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  The chemical formula for carbon dioxide is CO2." label="SurfaceNetDownwardMassFluxOfCarbonDioxideExpressedAsCarbonDueToAllLandProcesses" title="Surface Net Downward Mass Flux of Carbon Dioxide Expressed As Carbon Due To All Land Processes" uid="surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes" units="kg m-2 s-1"/>
<item description="&quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;All land processes&quot; means plant and soil respiration, photosynthesis, animal grazing, crop harvesting, natural fires and anthropogenic land use change. &quot;Anthropogenic land use change&quot; means human changes to land, excluding forest regrowth. It includes fires ignited by humans for the purpose of land use change and the processes of eventual disposal and decomposition of wood products such as paper, cardboard, furniture and timber for construction. The quantity with standard name surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes is  equal to the difference  between the quantities with standard names surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes_excluding_anthropogenic_land_use_change and surface_net_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_anthropogenic_land_use_change. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  The chemical formula for carbon dioxide is CO2." label="SurfaceNetDownwardMassFluxOfCarbonDioxideExpressedAsCarbonDueToAllLandProcessesExcludingAnthropogenicLandUseChange" title="Surface Net Downward Mass Flux of Carbon Dioxide Expressed As Carbon Due To All Land Processes Excluding Anthropogenic Land Use Change" uid="surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes_excluding_anthropogenic_land_use_change" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. Unless indicated in the cell_methods attribute, a quantity is assumed to apply to the whole area of each horizontal grid box. Previously, the qualifier where_type was used to specify that the quantity applies only to the part of the grid box of the named type.  Names containing the where_type qualifier are deprecated and newly created data should use the cell_methods attribute to indicate the horizontal area to which the quantity applies." label="SurfaceNetDownwardRadiativeFlux" title="Surface Net Downward Radiative Flux" uid="surface_net_downward_radiative_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;shortwave&quot; means shortwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceNetDownwardShortwaveFlux" title="Surface Net Downward Shortwave Flux" uid="surface_net_downward_shortwave_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;shortwave&quot; means shortwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceNetDownwardShortwaveFluxAssumingClearSky" title="Surface Net Downward Shortwave Flux Assuming Clear Sky" uid="surface_net_downward_shortwave_flux_assuming_clear_sky" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;longwave&quot; means longwave radiation. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceNetUpwardLongwaveFlux" title="Surface Net Upward Longwave Flux" uid="surface_net_upward_longwave_flux" units="W m-2"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Anthropogenic land use change&quot; means human changes to land, excluding forest regrowth. It includes fires ignited by humans for the purpose of land use change and the processes of eventual disposal and decomposition of wood products such as paper, cardboard, furniture and timber for construction. The quantity with standard name surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes is  equal to the difference  between the quantities with standard names surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes_excluding_anthropogenic_land_use_change and surface_net_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_anthropogenic_land_use_change. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon dioxide is CO2." label="SurfaceNetUpwardMassFluxOfCarbonDioxideExpressedAsCarbonDueToEmissionFromAnthropogenicLandUseChange" title="Surface Net Upward Mass Flux of Carbon Dioxide Expressed As Carbon Due To Emission From Anthropogenic Land Use Change" uid="surface_net_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_anthropogenic_land_use_change" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceNetUpwardRadiativeFlux" title="Surface Net Upward Radiative Flux" uid="surface_net_upward_radiative_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;shortwave&quot; means shortwave radiation. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceNetUpwardShortwaveFlux" title="Surface Net Upward Shortwave Flux" uid="surface_net_upward_shortwave_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. A velocity is a vector quantity. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward)." label="SurfaceNorthwardSeaWaterVelocity" title="Surface Northward Sea Water Velocity" uid="surface_northward_sea_water_velocity" units="m s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The chemical formula for carbon dioxide is CO2. In ocean biogeochemistry models, an &quot;abiotic analogue&quot; is used to simulate the effect on a modelled variable when biological effects on ocean carbon concentration and alkalinity are ignored. The partial pressure of a dissolved gas in sea water is the partial pressure in air with which it would be in equilibrium. The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume." label="SurfacePartialPressureOfCarbonDioxideAbioticAnalogueInSeaWater" title="Surface Partial Pressure of Carbon Dioxide Abiotic Analogue in Sea Water" uid="surface_partial_pressure_of_carbon_dioxide_abiotic_analogue_in_sea_water" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume." label="SurfacePartialPressureOfCarbonDioxideInAir" title="Surface Partial Pressure of Carbon Dioxide in Air" uid="surface_partial_pressure_of_carbon_dioxide_in_air" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. The partial pressure of a dissolved gas in sea water is the partial pressure in air with which it would be in equilibrium. The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume." label="SurfacePartialPressureOfCarbonDioxideInSeaWater" title="Surface Partial Pressure of Carbon Dioxide in Sea Water" uid="surface_partial_pressure_of_carbon_dioxide_in_sea_water" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The chemical formula for carbon dioxide is CO2. In ocean biogeochemistry models, a &quot;natural analogue&quot; is used to simulate the effect on a modelled variable of imposing preindustrial atmospheric carbon dioxide concentrations, even when the model as a whole may be subjected to varying forcings. The partial pressure of a dissolved gas in sea water is the partial pressure in air with which it would be in equilibrium. The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume." label="SurfacePartialPressureOfCarbonDioxideNaturalAnalogueInSeaWater" title="Surface Partial Pressure of Carbon Dioxide Natural Analogue in Sea Water" uid="surface_partial_pressure_of_carbon_dioxide_natural_analogue_in_sea_water" units="Pa"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  &quot;ratio_of_X_to_Y&quot;  means X/Y.  Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;.  Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;.    Radiance is the radiative flux in a particular direction, per unit of solid angle.  The direction towards which it is going must be specified, for instance with a coordinate of angle_of_emergence.  Radiative flux is the sum of shortwave and longwave radiative fluxes.  When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.   In relation to satellite ocean color products the quantity named surface_ratio_of_upwelling_radiance_emerging_from_sea_water_to_downwelling_radiative_flux_in_air is sometimes called &quot;remote sensing reflectance&quot; and has a  bidirectional dependence. The direction of the downwelling flux can be specified using a coordinate with the standard name angle_of_incidence." label="SurfaceRatioOfUpwellingRadianceEmergingFromSeaWaterToDownwellingRadiativeFluxInAir" title="Surface Ratio of Upwelling Radiance Emerging From Sea Water To Downwelling Radiative Flux in Air" uid="surface_ratio_of_upwelling_radiance_emerging_from_sea_water_to_downwelling_radiative_flux_in_air" units="sr^-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceRoughnessLength" title="Surface Roughness Length" uid="surface_roughness_length" units="m"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceRoughnessLengthForHeatInAir" title="Surface Roughness Length For Heat in Air" uid="surface_roughness_length_for_heat_in_air" units="m"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SurfaceRoughnessLengthForMomentumInAir" title="Surface Roughness Length For Momentum in Air" uid="surface_roughness_length_for_momentum_in_air" units="m"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Amount&quot; means mass per unit area. Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage." label="SurfaceRunoffAmount" title="Surface Runoff Amount" uid="surface_runoff_amount" units="kg m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceRunoffFlux" title="Surface Runoff Flux" uid="surface_runoff_flux" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Amount&quot; means mass per unit area. Surface amount refers to the amount on the ground, excluding that on the plant or vegetation canopy." label="SurfaceSnowAmount" title="Surface Snow Amount" uid="surface_snow_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Surface snow and ice melt flux&quot; means the mass flux of all melting at the surface." label="SurfaceSnowAndIceMeltFlux" title="Surface Snow And Ice Melt Flux" uid="surface_snow_and_ice_melt_flux" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The snow and ice melt heat flux is the supply of latent heat which is melting snow and ice at freezing point. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceSnowAndIceMeltHeatFlux" title="Surface Snow And Ice Melt Heat Flux" uid="surface_snow_and_ice_melt_heat_flux" units="W m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Surface snow and ice refreezing flux&quot; means the mass flux of surface  meltwater which refreezes within the snow or firn." label="SurfaceSnowAndIceRefreezingFlux" title="Surface Snow And Ice Refreezing Flux" uid="surface_snow_and_ice_refreezing_flux" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Sublimation is the conversion of solid into vapor. The snow and ice sublimation  flux is the loss of snow and ice mass resulting from their conversion to water vapor. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceSnowAndIceSublimationFlux" title="Surface Snow And Ice Sublimation Flux" uid="surface_snow_and_ice_sublimation_flux" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell." label="SurfaceSnowAreaFraction" title="Surface Snow Area Fraction" uid="surface_snow_area_fraction" units="1"/>
<item description="X&quot;_binary_mask&quot; has 1 where condition X is met, 0 elsewhere. The value is 1 where the snow cover area fraction is greater than a threshold, and 0 elsewhere. The threshold must be specified by associating a coordinate variable or scalar coordinate variable with the data variable and giving the coordinate variable a standard name of surface_snow_area_fraction. The values of the coordinate variable are the threshold values for the corresponding subarrays of the data variable." label="SurfaceSnowBinaryMask" title="Surface Snow Binary Mask" uid="surface_snow_binary_mask" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Amount&quot; means mass per unit area." label="SurfaceSnowMeltAmount" title="Surface Snow Melt Amount" uid="surface_snow_melt_amount" units="kg m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Sublimation is the conversion of solid into vapor. The snow melt and sublimation heat flux is the supply of latent heat which converting snow to liquid water (melting) and water vapor (sublimation). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceSnowMeltAndSublimationHeatFlux" title="Surface Snow Melt And Sublimation Heat Flux" uid="surface_snow_melt_and_sublimation_heat_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceSnowMeltFlux" title="Surface Snow Melt Flux" uid="surface_snow_melt_flux" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The snow melt heat flux is the supply of latent heat which is melting snow at freezing point. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceSnowMeltHeatFlux" title="Surface Snow Melt Heat Flux" uid="surface_snow_melt_heat_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Amount&quot; means mass per unit area. Sublimation is the conversion of solid into vapor." label="SurfaceSnowSublimationAmount" title="Surface Snow Sublimation Amount" uid="surface_snow_sublimation_amount" units="kg m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Sublimation is the conversion of solid into vapor. The snow sublimation heat flux is the supply of latent heat which is causing evaporation of snow to water vapor. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceSnowSublimationHeatFlux" title="Surface Snow Sublimation Heat Flux" uid="surface_snow_sublimation_heat_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Unless indicated in the cell_methods attribute, a quantity is assumed to apply to the whole area of each horizontal grid box. Previously, the qualifier where_type was used to specify that the quantity applies only to the part of the grid box of the named type.  Names containing the where_type qualifier are deprecated and newly created data should use the cell_methods attribute to indicate the horizontal area to which the quantity applies." label="SurfaceSnowThickness" title="Surface Snow Thickness" uid="surface_snow_thickness" units="m"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;specific&quot; means per unit mass. Specific humidity is the mass fraction of water vapor in (moist) air." label="SurfaceSpecificHumidity" title="Surface Specific Humidity" uid="surface_specific_humidity" units="1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The surface temperature is the temperature at the interface, not the bulk temperature of the medium above or below. Unless indicated in the cell_methods attribute, a quantity is assumed to apply to the whole area of each horizontal grid box. Previously, the qualifier where_type was used to specify that the quantity applies only to the part of the grid box of the named type.  Names containing the where_type qualifier are deprecated and newly created data should use the cell_methods attribute to indicate the horizontal area to which the quantity applies." label="SurfaceTemperature" title="Surface Temperature" uid="surface_temperature" units="K"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;anomaly&quot; means difference from climatology. The surface temperature is the (skin) temperature at the interface, not the bulk temperature of the medium above or below." label="SurfaceTemperatureAnomaly" title="Surface Temperature Anomaly" uid="surface_temperature_anomaly" units="K"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  Plant respiration is the sum of respiration by parts of plants both above and below the soil. Plants which photosynthesise are autotrophs i.e.&quot;producers&quot; of the biomass which they respire from inorganic precursors using sunlight for energy.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="SurfaceUpwardCarbonMassFluxDueToPlantRespirationForBiomassGrowth" title="Surface Upward Carbon Mass Flux Due To Plant Respiration For Biomass Growth" uid="surface_upward_carbon_mass_flux_due_to_plant_respiration_for_biomass_growth" units="kg m-2 s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  Plant respiration is the sum of respiration by parts of plants both above and below the soil. Plants which photosynthesise are autotrophs i.e.&quot;producers&quot; of the biomass which they respire from inorganic precursors using sunlight for energy.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="SurfaceUpwardCarbonMassFluxDueToPlantRespirationForBiomassMaintenance" title="Surface Upward Carbon Mass Flux Due To Plant Respiration For Biomass Maintenance" uid="surface_upward_carbon_mass_flux_due_to_plant_respiration_for_biomass_maintenance" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The vertical heat flux in air is the sum of all heat fluxes i.e. radiative, latent and sensible. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity. The heat flux due to anthropogenic energy consumption results from non-renewable human primary energy consumption, including energy use by vehicles, commercial and residential buildings, industry, and power plants. Primary energy refers to energy in natural resources, fossil and non-fossil, before conversion into other forms, such as electricity." label="SurfaceUpwardHeatFluxDueToAnthropogenicEnergyConsumption" title="Surface Upward Heat Flux Due To Anthropogenic Energy Consumption" uid="surface_upward_heat_flux_due_to_anthropogenic_energy_consumption" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The vertical heat flux in air is the sum of all heat fluxes i.e. radiative, latent and sensible. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceUpwardHeatFluxInAir" title="Surface Upward Heat Flux in Air" uid="surface_upward_heat_flux_in_air" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The surface latent heat flux is the exchange of heat between the surface and the air on account of evaporation (including sublimation). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceUpwardLatentHeatFlux" title="Surface Upward Latent Heat Flux" uid="surface_upward_latent_heat_flux" units="W m-2"/>
<item description="Upward&quot; indicates a vector component which is positive when directed upward (negative downward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The surface called &quot;surface&quot; means the lower boundary of the atmosphere. The chemical formula for ammonia is NH3." label="SurfaceUpwardMassFluxOfAmmonia" title="Surface Upward Mass Flux of Ammonia" uid="surface_upward_mass_flux_of_ammonia" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The chemical formula for carbon dioxide is CO2. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity.  &quot;Anthropogenic land use change&quot; means human changes to land, excluding forest regrowth. It includes fires ignited by humans for the purpose of land use change and the processes of eventual disposal and decomposition of wood products such as paper, cardboard, furniture and timber for construction." label="SurfaceUpwardMassFluxOfCarbonDioxideExpressedAsCarbonDueToAnthropogenicLandUseOrLandCoverChange" title="Surface Upward Mass Flux of Carbon Dioxide Expressed As Carbon Due To Anthropogenic Land Use Or Land Cover Change" uid="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_anthropogenic_land_use_or_land_cover_change" units="kg m-2 s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon dioxide is CO2." label="SurfaceUpwardMassFluxOfCarbonDioxideExpressedAsCarbonDueToEmissionFromCropHarvesting" title="Surface Upward Mass Flux of Carbon Dioxide Expressed As Carbon Due To Emission From Crop Harvesting" uid="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_crop_harvesting" units="kg m-2 s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Fires excluding anthropogenic land use change&quot; means all natural fires and human ignited fires that are not associated with change of land use. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon dioxide is CO2. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity." label="SurfaceUpwardMassFluxOfCarbonDioxideExpressedAsCarbonDueToEmissionFromFiresExcludingAnthropogenicLandUseChange" title="Surface Upward Mass Flux of Carbon Dioxide Expressed As Carbon Due To Emission From Fires Excluding Anthropogenic Land Use Change" uid="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_fires_excluding_anthropogenic_land_use_change" units="kg m-2 s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon dioxide is CO2." label="SurfaceUpwardMassFluxOfCarbonDioxideExpressedAsCarbonDueToEmissionFromGrazing" title="Surface Upward Mass Flux of Carbon Dioxide Expressed As Carbon Due To Emission From Grazing" uid="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_grazing" units="kg m-2 s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon dioxide is CO2." label="SurfaceUpwardMassFluxOfCarbonDioxideExpressedAsCarbonDueToEmissionFromNaturalSources" title="Surface Upward Mass Flux of Carbon Dioxide Expressed As Carbon Due To Emission From Natural Sources" uid="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_natural_sources" units="kg m-2 s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The chemical formula for carbon dioxide is CO2. The standard name surface_downward_mole_flux_of_carbon_dioxide should be used to label data in which the flux is positive when directed downward. The standard name &quot;surface_carbon_dioxide_mole_flux&quot; is deprecated because it does not specify in which direction the flux is positive.  Any data having the standard name &quot;surface_carbon_dioxide_mole_flux&quot; should be examined carefully to determine which sign convention was used." label="SurfaceUpwardMoleFluxOfCarbonDioxide" title="Surface Upward Mole Flux of Carbon Dioxide" uid="surface_upward_mole_flux_of_carbon_dioxide" units="mol m-2 s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  Thechemical formula for dimethyl sulfide is (CH3)2S.  Dimethyl sulfide is sometimes referredto as DMS." label="SurfaceUpwardMoleFluxOfDimethylSulfide" title="Surface Upward Mole Flux of Dimethyl Sulfide" uid="surface_upward_mole_flux_of_dimethyl_sulfide" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The surface sensible heat flux, also called &quot;turbulent&quot; heat flux, is the exchange of heat between the surface and the air by motion of air. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. Unless indicated in the cell_methods attribute, a quantity is assumed to apply to the whole area of each horizontal grid box. Previously, the qualifier where_type was used to specify that the quantity applies only to the part of the grid box of the named type.  Names containing the where_type qualifier are deprecated and newly created data should use the cell_methods attribute to indicate the horizontal area to which the quantity applies." label="SurfaceUpwardSensibleHeatFlux" title="Surface Upward Sensible Heat Flux" uid="surface_upward_sensible_heat_flux" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The surface water flux is the result of precipitation and evaporation. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceUpwardWaterFlux" title="Surface Upward Water Flux" uid="surface_upward_water_flux" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceUpwardWaterVaporFluxInAir" title="Surface Upward Water Vapor Flux in Air" uid="surface_upward_water_vapor_flux_in_air" units="kg m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;longwave&quot; means longwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceUpwellingLongwaveFluxInAir" title="Surface Upwelling Longwave Flux in Air" uid="surface_upwelling_longwave_flux_in_air" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;longwave&quot; means longwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceUpwellingLongwaveFluxInAirAssumingClearSky" title="Surface Upwelling Longwave Flux in Air Assuming Clear Sky" uid="surface_upwelling_longwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. &quot;Photosynthetic&quot; radiation is the part of the spectrum which is used in photosynthesis e.g. 400-700 nm. The range of wavelengths could be specified precisely by the bounds of a coordinate of radiation_wavelength. A photon flux is specified in terms of numbers of photons expressed in moles. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceUpwellingPhotosyntheticPhotonFluxInAir" title="Surface Upwelling Photosynthetic Photon Flux in Air" uid="surface_upwelling_photosynthetic_photon_flux_in_air" units="mol m-2 s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="SurfaceUpwellingRadianceInAir" title="Surface Upwelling Radiance in Air" uid="surface_upwelling_radiance_in_air" units="W m-2 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="SurfaceUpwellingRadianceInAirEmergingFromSeaWater" title="Surface Upwelling Radiance in Air Emerging From Sea Water" uid="surface_upwelling_radiance_in_air_emerging_from_sea_water" units="W m-2 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="SurfaceUpwellingRadianceInAirReflectedBySeaWater" title="Surface Upwelling Radiance in Air Reflected by Sea Water" uid="surface_upwelling_radiance_in_air_reflected_by_sea_water" units="W m-2 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="SurfaceUpwellingRadianceInSeaWater" title="Surface Upwelling Radiance in Sea Water" uid="surface_upwelling_radiance_in_sea_water" units="W m-2 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceUpwellingRadiancePerUnitWavelengthInAir" title="Surface Upwelling Radiance Per Unit Wavelength in Air" uid="surface_upwelling_radiance_per_unit_wavelength_in_air" units="W m-2 m-1 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceUpwellingRadiancePerUnitWavelengthInAirEmergingFromSeaWater" title="Surface Upwelling Radiance Per Unit Wavelength in Air Emerging From Sea Water" uid="surface_upwelling_radiance_per_unit_wavelength_in_air_emerging_from_sea_water" units="W m-2 m-1 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceUpwellingRadiancePerUnitWavelengthInAirReflectedBySeaWater" title="Surface Upwelling Radiance Per Unit Wavelength in Air Reflected by Sea Water" uid="surface_upwelling_radiance_per_unit_wavelength_in_air_reflected_by_sea_water" units="W m-2 m-1 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceUpwellingRadiancePerUnitWavelengthInSeaWater" title="Surface Upwelling Radiance Per Unit Wavelength in Sea Water" uid="surface_upwelling_radiance_per_unit_wavelength_in_sea_water" units="W m-2 m-1 sr-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceUpwellingRadiativeFluxPerUnitWavelengthInAir" title="Surface Upwelling Radiative Flux Per Unit Wavelength in Air" uid="surface_upwelling_radiative_flux_per_unit_wavelength_in_air" units="W m-2 m-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="SurfaceUpwellingRadiativeFluxPerUnitWavelengthInSeaWater" title="Surface Upwelling Radiative Flux Per Unit Wavelength in Sea Water" uid="surface_upwelling_radiative_flux_per_unit_wavelength_in_sea_water" units="W m-2 m-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;shortwave&quot; means shortwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceUpwellingShortwaveFluxInAir" title="Surface Upwelling Shortwave Flux in Air" uid="surface_upwelling_shortwave_flux_in_air" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;shortwave&quot; means shortwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="SurfaceUpwellingShortwaveFluxInAirAssumingClearSky" title="Surface Upwelling Shortwave Flux in Air Assuming Clear Sky" uid="surface_upwelling_shortwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;Amount&quot; means mass per unit area. &quot;Water&quot; means water in all phases, including frozen i.e. ice and snow. Surface amount refers to the amount on the ground, excluding that on the plant or vegetation canopy." label="SurfaceWaterAmount" title="Surface Water Amount" uid="surface_water_amount" units="kg m-2"/>
<item description="The quantity with standard name temperature_at_base_of_ice_sheet_model is the lower boundary temperature that is used to force ice sheet models. Beneath ice shelves it is the temperature at the ice-ocean interface. Beneath grounded ice, it is the temperature at the ice-bedrock interface. In all instances the temperature is that of the interface itself and not that of the medium above or below the interface." label="TemperatureAtBaseOfIceSheetModel" title="Temperature At Base of Ice Sheet Model" uid="temperature_at_base_of_ice_sheet_model" units="K"/>
<item description="The quantity with standard name temperature_at_top_of_ice_sheet_model is the upper boundary temperature that is used to force ice sheet models. It is the temperature at the interface between the ice sheet and the overlying medium which may be snow or the atmosphere. In all instances the temperature is that of the interface itself and not that of the medium above or below the interface." label="TemperatureAtTopOfIceSheetModel" title="Temperature At Top of Ice Sheet Model" uid="temperature_at_top_of_ice_sheet_model" units="K"/>
<item description="This quantity is defined as the temperature difference between a parcel of air lifted adiabatically from a starting air pressure to a finishing air pressure in the troposphere and the ambient air temperature at the finishing air pressure in the troposphere. It is often called the lifted index (LI) and provides a measure of the instability of the atmosphere. The air parcel is &quot;lifted&quot; by moving the air parcel from the starting air pressure to the Lifting Condensation Level (dry adiabatically) and then from the Lifting Condensation Level to the finishing air pressure (wet adiabatically). Air temperature is the bulk temperature of the air. Coordinate variables of original_air_pressure_of_lifted_parcel and final_air_pressure_of_lifted_parcel should be specified to indicate the specific air pressures at which the parcel lifting starts (starting air pressure) and the temperature difference is calculated at (finishing air pressure), respectively." label="TemperatureDifferenceBetweenAmbientAirAndAirLiftedAdiabatically" title="Temperature Difference Between Ambient Air And Air Lifted Adiabatically" uid="temperature_difference_between_ambient_air_and_air_lifted_adiabatically" units="K"/>
<item description="This quantity is defined as the temperature difference between a parcel of air lifted adiabatically from the surface to a finishing air pressure in the troposphere and the ambient air temperature at the finishing air pressure in the troposphere. It is often called the lifted index (LI) and provides a measure of the instability of the atmosphere. The air parcel is &quot;lifted&quot; by moving the air parcel from the surface to the Lifting Condensation Level (dry adiabatically) and then from the Lifting Condensation Level to the finishing air pressure (wet adiabatically). Air temperature is the bulk temperature of the air, not the surface (skin) temperature. The term &quot;surface&quot; means the lower boundary of the atmosphere. A coordinate variable of  final_air_pressure_of_lifted_parcel should be specified to indicate the specific air pressure that the temperature difference is calculated at." label="TemperatureDifferenceBetweenAmbientAirAndAirLiftedAdiabaticallyFromTheSurface" title="Temperature Difference Between Ambient Air And Air Lifted Adiabatically From The Surface" uid="temperature_difference_between_ambient_air_and_air_lifted_adiabatically_from_the_surface" units="K"/>
<item description="Evaporation is the conversion of liquid or solid into vapor.  (The conversion of solid alone into vapor is called &quot;sublimation&quot;.)  The quantity with standard name temperature_flux_due_to_evaporation_expressed_as_heat_flux_out_of_sea_water is the heat energy carried by the transfer of water away from the liquid ocean through the process of evaporation.  It is distinct from the transfer of latent heat and is calculated relative to the heat that would be transported by water evaporating at zero degrees Celsius. It is calculated as the product QevapCpTevap, where Qevap is the mass flux of evaporating water (kg m-2 s-1), Cp is the specific heat capacity of water and Tevap is the temperature in degrees Celsius of the evaporating water. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="TemperatureFluxDueToEvaporationExpressedAsHeatFluxOutOfSeaWater" title="Temperature Flux Due To Evaporation Expressed As Heat Flux Out of Sea Water" uid="temperature_flux_due_to_evaporation_expressed_as_heat_flux_out_of_sea_water" units="W m-2"/>
<item description="The quantity with standard name temperature_flux_due_to_rainfall_expressed_as_heat_flux_into_sea_water is the heat energy carried by rainfall entering the sea at the sea surface.  It is calculated relative to the heat that would be carried by rainfall entering the sea at zero degrees Celsius.  It is calculated as the product QrainCpTrain, where Qrain is the mass flux of rainfall entering the sea (kg m-2 s-1), Cp is the specific heat capacity of water and Train is the temperature in degrees Celsius of the rain water entering the sea surface. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="TemperatureFluxDueToRainfallExpressedAsHeatFluxIntoSeaWater" title="Temperature Flux Due To Rainfall Expressed As Heat Flux Into Sea Water" uid="temperature_flux_due_to_rainfall_expressed_as_heat_flux_into_sea_water" units="W m-2"/>
<item description="Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage.  The quantity with standard name temperature_flux_due_to_runoff_expressed_as_heat_flux_into_sea_water is the heat carried by the transfer of water into the liquid ocean by the process of runoff. This quantity additonally includes melt water from sea ice and icebergs. It is calculated relative to the heat that would be transported by runoff water entering the sea at zero degrees Celsius.  It is calculated as the product QrunoffCpTrunoff, where Q runoff is the mass flux of liquid runoff entering the sea water (kg m-2 s-1), Cp is the specific heat capacity of water, and Trunoff is the temperature in degrees Celsius of the runoff water. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="TemperatureFluxDueToRunoffExpressedAsHeatFluxIntoSeaWater" title="Temperature Flux Due To Runoff Expressed As Heat Flux Into Sea Water" uid="temperature_flux_due_to_runoff_expressed_as_heat_flux_into_sea_water" units="W m-2"/>
<item description="&quot;Temperature in surface snow&quot; is the bulk temperature of the snow, not the surface (skin) temperature.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="TemperatureInSurfaceSnow" title="Temperature in Surface Snow" uid="temperature_in_surface_snow" units="K"/>
<item description="Temperature_of_sensor_for_oxygen_in_sea_water is the instrument temperature used in calculating the concentration of oxygen in sea water; it is not a measurement of the ambient water temperature." label="TemperatureOfSensorForOxygenInSeaWater" title="Temperature of Sensor For Oxygen in Sea Water" uid="temperature_of_sensor_for_oxygen_in_sea_water" units="K"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAirDensity" title="Tendency of Air Density" uid="tendency_of_air_density" units="kg m-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAirPressure" title="Tendency of Air Pressure" uid="tendency_of_air_pressure" units="Pa s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperature" title="Tendency of Air Temperature" uid="tendency_of_air_temperature" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToAdvection" title="Tendency of Air Temperature Due To Advection" uid="tendency_of_air_temperature_due_to_advection" units="K s-1"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAirTemperatureDueToConvection" title="Tendency of Air Temperature Due To Convection" uid="tendency_of_air_temperature_due_to_convection" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToDiabaticProcesses" title="Tendency of Air Temperature Due To Diabatic Processes" uid="tendency_of_air_temperature_due_to_diabatic_processes" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToDiffusion" title="Tendency of Air Temperature Due To Diffusion" uid="tendency_of_air_temperature_due_to_diffusion" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToDryConvection" title="Tendency of Air Temperature Due To Dry Convection" uid="tendency_of_air_temperature_due_to_dry_convection" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;longwave&quot; means longwave radiation. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToLongwaveHeating" title="Tendency of Air Temperature Due To Longwave Heating" uid="tendency_of_air_temperature_due_to_longwave_heating" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;longwave&quot; means longwave radiation. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToLongwaveHeatingAssumingClearSky" title="Tendency of Air Temperature Due To Longwave Heating Assuming Clear Sky" uid="tendency_of_air_temperature_due_to_longwave_heating_assuming_clear_sky" units="K s-1"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAirTemperatureDueToModelPhysics" title="Tendency of Air Temperature Due To Model Physics" uid="tendency_of_air_temperature_due_to_model_physics" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToMoistConvection" title="Tendency of Air Temperature Due To Moist Convection" uid="tendency_of_air_temperature_due_to_moist_convection" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToRadiativeHeating" title="Tendency of Air Temperature Due To Radiative Heating" uid="tendency_of_air_temperature_due_to_radiative_heating" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;shortwave&quot; means shortwave radiation. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToShortwaveHeating" title="Tendency of Air Temperature Due To Shortwave Heating" uid="tendency_of_air_temperature_due_to_shortwave_heating" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;shortwave&quot; means shortwave radiation. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToShortwaveHeatingAssumingClearSky" title="Tendency of Air Temperature Due To Shortwave Heating Assuming Clear Sky" uid="tendency_of_air_temperature_due_to_shortwave_heating_assuming_clear_sky" units="K s-1"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature.  In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAirTemperatureDueToStratiformCloudAndPrecipitationAndBoundaryLayerMixing" title="Tendency of Air Temperature Due To Stratiform Cloud And Precipitation And Boundary Layer Mixing" uid="tendency_of_air_temperature_due_to_stratiform_cloud_and_precipitation_and_boundary_layer_mixing" units="K s-1"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes). The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAirTemperatureDueToStratiformPrecipitation" title="Tendency of Air Temperature Due To Stratiform Precipitation" uid="tendency_of_air_temperature_due_to_stratiform_precipitation" units="K s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TendencyOfAirTemperatureDueToTurbulence" title="Tendency of Air Temperature Due To Turbulence" uid="tendency_of_air_temperature_due_to_turbulence" units="K s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Dry energy is the sum of dry static energy and kinetic energy. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="TendencyOfAtmosphereDryEnergyContent" title="Tendency of Atmosphere Dry Energy Content" uid="tendency_of_atmosphere_dry_energy_content" units="W m-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="TendencyOfAtmosphereEnthalpyContentDueToAdvection" title="Tendency of Atmosphere Enthalpy Content Due To Advection" uid="tendency_of_atmosphere_enthalpy_content_due_to_advection" units="W m-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="TendencyOfAtmosphereKineticEnergyContentDueToAdvection" title="Tendency of Atmosphere Kinetic Energy Content Due To Advection" uid="tendency_of_atmosphere_kinetic_energy_content_due_to_advection" units="W m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for acetaldehyde is CH3CHO. The IUPAC name for acetaldehyde is ethanal." label="TendencyOfAtmosphereMassContentOfAcetaldehydeDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Acetaldehyde Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_acetaldehyde_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for acetaldehyde is CH3CHO. The IUPAC name for acetaldehyde is ethanal." label="TendencyOfAtmosphereMassContentOfAcetaldehydeDueToEmission" title="Tendency of Atmosphere Mass Content of Acetaldehyde Due To Emission" uid="tendency_of_atmosphere_mass_content_of_acetaldehyde_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for acetaldehyde is CH3CHO. The IUPAC name for acetaldehyde is ethanal." label="TendencyOfAtmosphereMassContentOfAcetaldehydeDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Acetaldehyde Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_acetaldehyde_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for acetic_acid is CH3COOH. The IUPAC name for acetic acid is ethanoic acid." label="TendencyOfAtmosphereMassContentOfAceticAcidDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Acetic Acid Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_acetic_acid_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Wet deposition&quot; means deposition by precipitation. The chemical formula for acetic_acid is CH3COOH. The IUPAC name for acetic acid is ethanoic acid." label="TendencyOfAtmosphereMassContentOfAceticAcidDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Acetic Acid Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_acetic_acid_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for aceto-nitrile is CH3CN. The IUPAC name for aceto-nitrile is ethanenitrile." label="TendencyOfAtmosphereMassContentOfAcetoNitrileDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Aceto Nitrile Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_aceto_nitrile_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. Acetone is an organic molecule with the chemical formula CH3CH3CO. The IUPAC name for acetone is propan-2-one. Acetone is a member of the group of organic compounds known as ketones. There are standard names for the ketone group as well as for some of the individual species." label="TendencyOfAtmosphereMassContentOfAcetoneDueToEmission" title="Tendency of Atmosphere Mass Content of Acetone Due To Emission" uid="tendency_of_atmosphere_mass_content_of_acetone_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Alcohols include all organic compounds with an alcoholic (OH) group. In standard names &quot;alcohols&quot; is the term used to describe the group of chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAlcoholsDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Alcohols Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_alcohols_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Alcohols include all organic compounds with an alcoholic (OH) group. In standard names &quot;alcohols&quot; is the term used to describe the group of chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAlcoholsDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Alcohols Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_alcohols_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Alcohols include all organic compounds with an alcoholic (OH) group. In standard names &quot;alcohols&quot; is the term used to describe the group of chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAlcoholsDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Alcohols Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_alcohols_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Alcohols include all organic compounds with an alcoholic (OH) group. In standard names &quot;alcohols&quot; is the term used to describe the group of chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAlcoholsDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Alcohols Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_alcohols_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Alcohols include all organic compounds with an alcoholic (OH) group. In standard names &quot;alcohols&quot; is the term used to describe the group of chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAlcoholsDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Alcohols Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_alcohols_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Alcohols include all organic compounds with an alcoholic (OH) group. In standard names &quot;alcohols&quot; is the term used to describe the group of chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAlcoholsDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Alcohols Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_alcohols_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Alcohols include all organic compounds with an alcoholic (OH) group. In standard names &quot;alcohols&quot; is the term used to describe the group of chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAlcoholsDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Alcohols Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_alcohols_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Alcohols include all organic compounds with an alcoholic (OH) group. In standard names &quot;alcohols&quot; is the term used to describe the group of chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;solvent production and use&quot; sector comprises industrial processes related to the consumption of halocarbons, SF6, solvent and other product use. &quot;Solvent production and use&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 2F and 3 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAlcoholsDueToEmissionFromSolventProductionAndUse" title="Tendency of Atmosphere Mass Content of Alcohols Due To Emission From Solvent Production And Use" uid="tendency_of_atmosphere_mass_content_of_alcohols_due_to_emission_from_solvent_production_and_use" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Alcohols include all organic compounds with an alcoholic (OH) group. In standard names &quot;alcohols&quot; is the term used to describe the group of chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.   The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAlcoholsDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Alcohols Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_alcohols_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time. Aldehydes are organic compounds with a CHO group; &quot;aldehydes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual aldehyde species, e.g., formaldehyde and acetyladehyde." label="TendencyOfAtmosphereMassContentOfAldehydesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Aldehydes Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_aldehydes_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. Aldehydes are organic compounds with a CHO group; &quot;aldehydes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual aldehyde species, e.g., formaldehyde and acetyladehyde." label="TendencyOfAtmosphereMassContentOfAldehydesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Aldehydes Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_aldehydes_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. Alkanes are saturated hydrocarbons, i.e. they do not contain any chemical double bonds. &quot;Hydrocarbon&quot; means a compound containing hydrogen and carbon. Alkanes contain only hydrogen and carbon combined in the general proportions C(n)H(2n+2); &quot;alkanes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkane species, e.g., methane and ethane." label="TendencyOfAtmosphereMassContentOfAlkanesDueToEmission" title="Tendency of Atmosphere Mass Content of Alkanes Due To Emission" uid="tendency_of_atmosphere_mass_content_of_alkanes_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. Alkenes are unsaturated hydrocarbons as they contain chemical double bonds between adjacent carbon atoms. &quot;Hydrocarbon&quot; means a compound containing hydrogen and carbon. Alkenes contain only hydrogen and carbon combined in the general proportions C(n)H(2n); &quot;alkenes&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual alkene species, e.g., ethene and propene." label="TendencyOfAtmosphereMassContentOfAlkenesDueToEmission" title="Tendency of Atmosphere Mass Content of Alkenes Due To Emission" uid="tendency_of_atmosphere_mass_content_of_alkenes_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfAlphaHexachlorocyclohexaneDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Alpha Hexachlorocyclohexane Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_alpha_hexachlorocyclohexane_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfAlphaHexachlorocyclohexaneDueToEmission" title="Tendency of Atmosphere Mass Content of Alpha Hexachlorocyclohexane Due To Emission" uid="tendency_of_atmosphere_mass_content_of_alpha_hexachlorocyclohexane_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Re-emission&quot; refers to emission that is not from a primary source; it refers to emission of a species that has previously been deposited and accumulated in soils or water.  &quot;Re-emission&quot; is a process entirely distinct from &quot;emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfAlphaHexachlorocyclohexaneDueToReEmission" title="Tendency of Atmosphere Mass Content of Alpha Hexachlorocyclohexane Due To Re Emission" uid="tendency_of_atmosphere_mass_content_of_alpha_hexachlorocyclohexane_due_to_re_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfAlphaHexachlorocyclohexaneDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Alpha Hexachlorocyclohexane Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_alpha_hexachlorocyclohexane_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for alpha_pinene is C10H16. The IUPAC name for alpha-pinene is (1S,5S)-2,6,6-trimethylbicyclo[3.1.1]hept-2-ene." label="TendencyOfAtmosphereMassContentOfAlphaPineneDueToEmission" title="Tendency of Atmosphere Mass Content of Alpha Pinene Due To Emission" uid="tendency_of_atmosphere_mass_content_of_alpha_pinene_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Ammonia Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToEmission" title="Tendency of Atmosphere Mass Content of Ammonia Due To Emission" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ammonia is NH3. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Ammonia Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ammonia is NH3. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Ammonia Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ammonia is NH3. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Ammonia Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. he chemical formula for ammonia is NH3. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Ammonia Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ammonia is NH3. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Ammonia Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ammonia is NH3. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Ammonia Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ammonia is NH3. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Ammonia Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ammonia is NH3. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Ammonia Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfAmmoniaDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Ammonia Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_ammonia_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for ammonium is NH4." label="TendencyOfAtmosphereMassContentOfAmmoniumDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Ammonium Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_ammonium_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles.  &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for ammonium is NH4." label="TendencyOfAtmosphereMassContentOfAmmoniumDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Ammonium Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_ammonium_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. Aromatic compounds in organic chemistry are compounds that contain at least one benzene ring of six carbon atoms joined by alternating single and double covalent bonds. The simplest aromatic compound is benzene itself. In standard names &quot;aromatic_compounds&quot; is the term used to describe the group of aromatic chemical species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual aromatic species, e.g. benzene and xylene." label="TendencyOfAtmosphereMassContentOfAromaticCompoundsDueToEmission" title="Tendency of Atmosphere Mass Content of Aromatic Compounds Due To Emission" uid="tendency_of_atmosphere_mass_content_of_aromatic_compounds_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6.  Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmission" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6. Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6. Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6. Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6. Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6. Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6. Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6. Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6. Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for benzene is C6H6. Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfBenzeneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Benzene Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_benzene_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for beta_pinene is C10H16.  The IUPAC name for beta-pinene is (1S,5S)-6,6-dimethyl-2-methylenebicyclo[3.1.1]heptane." label="TendencyOfAtmosphereMassContentOfBetaPineneDueToEmission" title="Tendency of Atmosphere Mass Content of Beta Pinene Due To Emission" uid="tendency_of_atmosphere_mass_content_of_beta_pinene_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Biogenic&quot; means influenced, caused, or created by natural processes. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfBiogenicNmvocExpressedAsCarbonDueToEmission" title="Tendency of Atmosphere Mass Content of Biogenic Nmvoc Expressed As Carbon Due To Emission" uid="tendency_of_atmosphere_mass_content_of_biogenic_nmvoc_expressed_as_carbon_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfAtmosphereMassContentOfButaneDueToEmission" title="Tendency of Atmosphere Mass Content of Butane Due To Emission" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species.   The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfButaneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Butane Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_butane_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon dioxide is CO2." label="TendencyOfAtmosphereMassContentOfCarbonDioxideDueToEmission" title="Tendency of Atmosphere Mass Content of Carbon Dioxide Due To Emission" uid="tendency_of_atmosphere_mass_content_of_carbon_dioxide_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon dioxide is CO2. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity. Anthropogenic emission of carbon dioxide includes fossil fuel use, cement production, agricultural burning and sources associated with anthropogenic land use change, except forest regrowth." label="TendencyOfAtmosphereMassContentOfCarbonDioxideExpressedAsCarbonDueToAnthropogenicEmission" title="Tendency of Atmosphere Mass Content of Carbon Dioxide Expressed As Carbon Due To Anthropogenic Emission" uid="tendency_of_atmosphere_mass_content_of_carbon_dioxide_expressed_as_carbon_due_to_anthropogenic_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The chemical formula for carbon dioxide is CO2. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Examples of &quot;forestry and agricultural products&quot; are paper, cardboard, furniture, timber for construction, biofuels and food for both humans and livestock. Models that simulate land use changes have one or more pools of carbon that represent these products in order to conserve carbon and allow its eventual release into the atmosphere, for example, when the products decompose in landfill sites." label="TendencyOfAtmosphereMassContentOfCarbonDioxideExpressedAsCarbonDueToEmissionFromForestryAndAgriculturalProducts" title="Tendency of Atmosphere Mass Content of Carbon Dioxide Expressed As Carbon Due To Emission From Forestry And Agricultural Products" uid="tendency_of_atmosphere_mass_content_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_forestry_and_agricultural_products" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon dioxide is CO2. Fossil fuel combustion includes cement production and flaring of natural gas." label="TendencyOfAtmosphereMassContentOfCarbonDioxideExpressedAsCarbonDueToEmissionFromFossilFuelCombustion" title="Tendency of Atmosphere Mass Content of Carbon Dioxide Expressed As Carbon Due To Emission From Fossil Fuel Combustion" uid="tendency_of_atmosphere_mass_content_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_fossil_fuel_combustion" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula of carbon monoxide is CO." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmission" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon monoxide is CO. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon monoxide is CO. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon monoxide is CO. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon monoxide is CO. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon monoxide is CO. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon monoxide is CO.   The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon monoxide is CO. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon monoxide is CO. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon monoxide is CO. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for carbon monoxide is CO. The &quot;solvent production and use&quot; sector comprises industrial processes related to the consumption of halocarbons, SF6, solvent and other product use. &quot;Solvent production and use&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 2F and 3 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromSolventProductionAndUse" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Solvent Production And Use" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_solvent_production_and_use" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon monoxide is CO. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfCarbonMonoxideDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Carbon Monoxide Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of carbon tetrachloride is CCl4." label="TendencyOfAtmosphereMassContentOfCarbonTetrachlorideDueToEmission" title="Tendency of Atmosphere Mass Content of Carbon Tetrachloride Due To Emission" uid="tendency_of_atmosphere_mass_content_of_carbon_tetrachloride_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of CFC113 is CCl2FCClF2. The IUPAC name for CFC113 is 1,1,2-trichloro-1,2,2-trifluoro-ethane." label="TendencyOfAtmosphereMassContentOfCfc113DueToEmission" title="Tendency of Atmosphere Mass Content of Cfc113 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_cfc113_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of CFC113a CCl3CF3.  The IUPAC name for CFC113a is 1,1,1-trichloro-2,2,2-trifluoro-ethane." label="TendencyOfAtmosphereMassContentOfCfc113aDueToEmission" title="Tendency of Atmosphere Mass Content of Cfc113a Due To Emission" uid="tendency_of_atmosphere_mass_content_of_cfc113a_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of CFC114 is CClF2CClF2. The IUPAC name for CFC114 is 1,2-dichloro-1,1,2,2-tetrafluoro-ethane." label="TendencyOfAtmosphereMassContentOfCfc114DueToEmission" title="Tendency of Atmosphere Mass Content of Cfc114 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_cfc114_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of CFC115 is CClF2CF3. The IUPAC name for CFC115 is 1-chloro-1,1,2,2,2-pentafluoro-ethane." label="TendencyOfAtmosphereMassContentOfCfc115DueToEmission" title="Tendency of Atmosphere Mass Content of Cfc115 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_cfc115_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula of CFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="TendencyOfAtmosphereMassContentOfCfc11DueToEmission" title="Tendency of Atmosphere Mass Content of Cfc11 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_cfc11_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for CFC12 is CF2Cl2.  The IUPAC name for CFC12 is dichloro-difluoro-methane." label="TendencyOfAtmosphereMassContentOfCfc12DueToEmission" title="Tendency of Atmosphere Mass Content of Cfc12 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_cfc12_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Chlorinated hydrocarbons are a group of chemicals composed of carbon, chlorine and hydrogen. As pesticides, they are also referred to by several other names, including chlorinated organics, chlorinated insecticides and chlorinated synthetics. In standard names &quot;chlorinated_hydrocarbons&quot; is the term used to describe the group of chlorinated hydrocarbon species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfChlorinatedHydrocarbonsDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Chlorinated Hydrocarbons Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_chlorinated_hydrocarbons_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Chlorinated hydrocarbons are a group of chemicals composed of carbon, chlorine and hydrogen. As pesticides, they are also referred to by several other names, including chlorinated organics, chlorinated insecticides and chlorinated synthetics. In standard names &quot;chlorinated_hydrocarbons&quot; is the term used to describe the group of chlorinated hydrocarbon species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.   The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfChlorinatedHydrocarbonsDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Chlorinated Hydrocarbons Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_chlorinated_hydrocarbons_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Chlorinated hydrocarbons are a group of chemicals composed of carbon, chlorine and hydrogen. As pesticides, they are also referred to by several other names, including chlorinated organics, chlorinated insecticides and chlorinated synthetics. In standard names &quot;chlorinated_hydrocarbons&quot; is the term used to describe the group of chlorinated hydrocarbon species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfChlorinatedHydrocarbonsDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Chlorinated Hydrocarbons Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_chlorinated_hydrocarbons_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Chlorinated hydrocarbons are a group of chemicals composed of carbon, chlorine and hydrogen. As pesticides, they are also referred to by several other names, including chlorinated organics, chlorinated insecticides and chlorinated synthetics. In standard names &quot;chlorinated_hydrocarbons&quot; is the term used to describe the group of chlorinated hydrocarbon species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;solvent production and use&quot; sector comprises industrial processes related to the consumption of halocarbons, SF6, solvent and other product use. &quot;Solvent production and use&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 2F and 3 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfChlorinatedHydrocarbonsDueToEmissionFromSolventProductionAndUse" title="Tendency of Atmosphere Mass Content of Chlorinated Hydrocarbons Due To Emission From Solvent Production And Use" uid="tendency_of_atmosphere_mass_content_of_chlorinated_hydrocarbons_due_to_emission_from_solvent_production_and_use" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Chlorinated hydrocarbons are a group of chemicals composed of carbon, chlorine and hydrogen. As pesticides, they are also referred to by several other names, including chlorinated organics, chlorinated insecticides and chlorinated synthetics. In standard names &quot;chlorinated_hydrocarbons&quot; is the term used to describe the group of chlorinated hydrocarbon species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfChlorinatedHydrocarbonsDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Chlorinated Hydrocarbons Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_chlorinated_hydrocarbons_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfDimethylSulfideDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Dimethyl Sulfide Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_dimethyl_sulfide_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfDimethylSulfideDueToEmission" title="Tendency of Atmosphere Mass Content of Dimethyl Sulfide Due To Emission" uid="tendency_of_atmosphere_mass_content_of_dimethyl_sulfide_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for dimethyl sulfide is (CH3)2S. Dimethyl sulfide is sometimes referred to as DMS. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfDimethylSulfideDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Dimethyl Sulfide Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_dimethyl_sulfide_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for dimethyl sulfide is (CH3)2S. Dimethyl sulfide is sometimes referred to as DMS. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfDimethylSulfideDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Dimethyl Sulfide Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_dimethyl_sulfide_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfDimethylSulfideDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Dimethyl Sulfide Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_dimethyl_sulfide_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfDustDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Dust Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles.  &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfDustDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Dust Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfDustDryAerosolParticlesDueToGravitationalSettling" title="Tendency of Atmosphere Mass Content of Dust Dry Aerosol Particles Due To Gravitational Settling" uid="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_gravitational_settling" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfDustDryAerosolParticlesDueToTurbulentDeposition" title="Tendency of Atmosphere Mass Content of Dust Dry Aerosol Particles Due To Turbulent Deposition" uid="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_turbulent_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfDustDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Dust Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X  with respect to time. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol partilces&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The mass is the total mass of the particles. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time. The sum of turbulent deposition and gravitational settling is dry deposition. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToGravitationalSettling" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Gravitational Settling" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_gravitational_settling" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the molecules. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToTurbulentDeposition" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Turbulent Deposition" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_turbulent_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfAtmosphereMassContentOfElementalCarbonDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Elemental Carbon Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Esters in organic chemistry are chemical compounds derived by reacting an oxoacid with a hydroxyl compound such as an alcohol or phenol. Esters are usually derived from an inorganic acid or organic acid in which at least one -OH (hydroxyl) group is replaced by an -O-alkyl (alkoxy) group, and most commonly from carboxylic acids and alcohols. That is, esters are formed by condensing an acid with an alcohol. In standard names &quot;esters&quot; is the term used to describe the group of ester species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEstersDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Esters Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_esters_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Esters in organic chemistry are chemical compounds derived by reacting an oxoacid with a hydroxyl compound such as an alcohol or phenol. Esters are usually derived from an inorganic acid or organic acid in which at least one -OH (hydroxyl) group is replaced by an -O-alkyl (alkoxy) group, and most commonly from carboxylic acids and alcohols. That is, esters are formed by condensing an acid with an alcohol. In standard names &quot;esters&quot; is the term used to describe the group of ester species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;solvent production and use&quot; sector comprises industrial processes related to the consumption of halocarbons, SF6, solvent and other product use. &quot;Solvent production and use&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 2F and 3 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEstersDueToEmissionFromSolventProductionAndUse" title="Tendency of Atmosphere Mass Content of Esters Due To Emission From Solvent Production And Use" uid="tendency_of_atmosphere_mass_content_of_esters_due_to_emission_from_solvent_production_and_use" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Esters in organic chemistry are chemical compounds derived by reacting an oxoacid with a hydroxyl compound such as an alcohol or phenol. Esters are usually derived from an inorganic acid or organic acid in which at least one -OH (hydroxyl) group is replaced by an -O-alkyl (alkoxy) group, and most commonly from carboxylic acids and alcohols. That is, esters are formed by condensing an acid with an alcohol. In standard names &quot;esters&quot; is the term used to describe the group of ester species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEstersDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Esters Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_esters_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmission" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthaneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Ethane Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_ethane_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethanol is C2H5OH." label="TendencyOfAtmosphereMassContentOfEthanolDueToEmission" title="Tendency of Atmosphere Mass Content of Ethanol Due To Emission" uid="tendency_of_atmosphere_mass_content_of_ethanol_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmission" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names.   The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEtheneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Ethene Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_ethene_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Ethers are a class of organic compounds that contain an ether group - an oxygen atom connected to two alkyl or aryl groups - of general formula R-O-R. In standard names &quot;ethers&quot; is the term used to describe the group of ether species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthersDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Ethers Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_ethers_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Ethers are a class of organic compounds that contain an ether group - an oxygen atom connected to two alkyl or aryl groups - of general formula R-O-R. In standard names &quot;ethers&quot; is the term used to describe the group of ether species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthersDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Ethers Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_ethers_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Ethers are a class of organic compounds that contain an ether group - an oxygen atom connected to two alkyl or aryl groups - of general formula R-O-R. In standard names &quot;ethers&quot; is the term used to describe the group of ether species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.   The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthersDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Ethers Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_ethers_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Ethers are a class of organic compounds that contain an ether group - an oxygen atom connected to two alkyl or aryl groups - of general formula R-O-R. In standard names &quot;ethers&quot; is the term used to describe the group of ether species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthersDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Ethers Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_ethers_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Ethers are a class of organic compounds that contain an ether group - an oxygen atom connected to two alkyl or aryl groups - of general formula R-O-R. In standard names &quot;ethers&quot; is the term used to describe the group of ether species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthersDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Ethers Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_ethers_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Ethers are a class of organic compounds that contain an ether group - an oxygen atom connected to two alkyl or aryl groups - of general formula R-O-R. In standard names &quot;ethers&quot; is the term used to describe the group of ether species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;solvent production and use&quot; sector comprises industrial processes related to the consumption of halocarbons, SF6, solvent and other product use. &quot;Solvent production and use&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 2F and 3 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthersDueToEmissionFromSolventProductionAndUse" title="Tendency of Atmosphere Mass Content of Ethers Due To Emission From Solvent Production And Use" uid="tendency_of_atmosphere_mass_content_of_ethers_due_to_emission_from_solvent_production_and_use" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Ethers are a class of organic compounds that contain an ether group - an oxygen atom connected to two alkyl or aryl groups - of general formula R-O-R. In standard names &quot;ethers&quot; is the term used to describe the group of ether species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute.   The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthersDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Ethers Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_ethers_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H.  Ethyne is the IUPAC name for this species, which is also commonly known as acetylene." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmission" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for ethyne is HC2H. Ethyne is the IUPAC name for this species, which is also commonly known as acetylene. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfEthyneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Ethyne Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_ethyne_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmission" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal.   The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="TendencyOfAtmosphereMassContentOfFormaldehydeDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Formaldehyde Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_formaldehyde_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for formic acid is HCOOH.  The IUPAC name for formic acid is methanoic acid." label="TendencyOfAtmosphereMassContentOfFormicAcidDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Formic Acid Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_formic_acid_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Wet deposition&quot; means deposition by precipitation. The chemical formula for formic acid is HCOOH.  The IUPAC name for formic acid is methanoic acid." label="TendencyOfAtmosphereMassContentOfFormicAcidDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Formic Acid Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_formic_acid_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s) in a salt or to other atom(s) in a molecule. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfGaseousDivalentMercuryDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Gaseous Divalent Mercury Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_gaseous_divalent_mercury_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s) in a salt or to other atom(s) in a molecule. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfGaseousDivalentMercuryDueToEmission" title="Tendency of Atmosphere Mass Content of Gaseous Divalent Mercury Due To Emission" uid="tendency_of_atmosphere_mass_content_of_gaseous_divalent_mercury_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s) in a salt or to other atom(s) in a molecule.  &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfGaseousDivalentMercuryDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Gaseous Divalent Mercury Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_gaseous_divalent_mercury_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfGaseousElementalMercuryDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Gaseous Elemental Mercury Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_gaseous_elemental_mercury_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfGaseousElementalMercuryDueToEmission" title="Tendency of Atmosphere Mass Content of Gaseous Elemental Mercury Due To Emission" uid="tendency_of_atmosphere_mass_content_of_gaseous_elemental_mercury_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfGaseousElementalMercuryDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Gaseous Elemental Mercury Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_gaseous_elemental_mercury_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for halon1202 is CBr2F2. The IUPAC name for halon1202 is dibromo-difluoro-methane." label="TendencyOfAtmosphereMassContentOfHalon1202DueToEmission" title="Tendency of Atmosphere Mass Content of Halon1202 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_halon1202_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for halon1211 is CBrClF2. The IUPAC name for halon1211 is bromo-chloro-difluoro-methane." label="TendencyOfAtmosphereMassContentOfHalon1211DueToEmission" title="Tendency of Atmosphere Mass Content of Halon1211 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_halon1211_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for halon1301 is CBrF3. The IUPAC name for halon1301 is bromo-trifluoro-methane." label="TendencyOfAtmosphereMassContentOfHalon1301DueToEmission" title="Tendency of Atmosphere Mass Content of Halon1301 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_halon1301_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for halo2402 is C2Br2F4. The IUPAC name for halon2402 is 1,2-dibromo-1,1,2,2-tetrafluoro-ethane." label="TendencyOfAtmosphereMassContentOfHalon2402DueToEmission" title="Tendency of Atmosphere Mass Content of Halon2402 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_halon2402_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for hcc140a is CH3CCl3. The IUPAC name for hcc140a is 1,1,1-trichloro-ethane." label="TendencyOfAtmosphereMassContentOfHcc140aDueToEmission" title="Tendency of Atmosphere Mass Content of Hcc140a Due To Emission" uid="tendency_of_atmosphere_mass_content_of_hcc140a_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for HCFC141b is CH3CCl2F. The IUPAC name for HCFC141b is 1,1-dichloro-1-fluoroethane." label="TendencyOfAtmosphereMassContentOfHcfc141bDueToEmission" title="Tendency of Atmosphere Mass Content of Hcfc141b Due To Emission" uid="tendency_of_atmosphere_mass_content_of_hcfc141b_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for HCFC142b is CH3CClF2. The IUPAC name for HCFC142b is 1-chloro-1,1-difluoroethane." label="TendencyOfAtmosphereMassContentOfHcfc142bDueToEmission" title="Tendency of Atmosphere Mass Content of Hcfc142b Due To Emission" uid="tendency_of_atmosphere_mass_content_of_hcfc142b_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for HCFC22 is CHClF2.  The IUPAC name for HCFC22 is chloro-difluoro-methane." label="TendencyOfAtmosphereMassContentOfHcfc22DueToEmission" title="Tendency of Atmosphere Mass Content of Hcfc22 Due To Emission" uid="tendency_of_atmosphere_mass_content_of_hcfc22_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfHexachlorobiphenylDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Hexachlorobiphenyl Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_hexachlorobiphenyl_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfHexachlorobiphenylDueToEmission" title="Tendency of Atmosphere Mass Content of Hexachlorobiphenyl Due To Emission" uid="tendency_of_atmosphere_mass_content_of_hexachlorobiphenyl_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Re-emission&quot; refers to emission that is not from a primary source; it refers to emission of a species that has previously been deposited and accumulated in soils or water.  &quot;Re-emission&quot; is a process entirely distinct from &quot;emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfHexachlorobiphenylDueToReEmission" title="Tendency of Atmosphere Mass Content of Hexachlorobiphenyl Due To Re Emission" uid="tendency_of_atmosphere_mass_content_of_hexachlorobiphenyl_due_to_re_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfHexachlorobiphenylDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Hexachlorobiphenyl Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_hexachlorobiphenyl_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for hydrogen cyanide is HCN." label="TendencyOfAtmosphereMassContentOfHydrogenCyanideDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Hydrogen Cyanide Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_hydrogen_cyanide_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for hydrogen cyanide is HCN." label="TendencyOfAtmosphereMassContentOfHydrogenCyanideDueToEmission" title="Tendency of Atmosphere Mass Content of Hydrogen Cyanide Due To Emission" uid="tendency_of_atmosphere_mass_content_of_hydrogen_cyanide_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for hydrogen peroxide is H2O2." label="TendencyOfAtmosphereMassContentOfHydrogenPeroxideDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Hydrogen Peroxide Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_hydrogen_peroxide_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for hydrogen peroxide is H2O2." label="TendencyOfAtmosphereMassContentOfHydrogenPeroxideDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Hydrogen Peroxide Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_hydrogen_peroxide_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for isoprene is CH2=C(CH3)CH=CH2. The IUPAC name for isoprene is 2-methyl-buta-1,3-diene. Isoprene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="TendencyOfAtmosphereMassContentOfIsopreneDueToEmission" title="Tendency of Atmosphere Mass Content of Isoprene Due To Emission" uid="tendency_of_atmosphere_mass_content_of_isoprene_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for isoprene is CH2=C(CH3)CH=CH2. The IUPAC name for isoprene is 2-methyl-buta-1,3-diene. Isoprene is a member of the group of hydrocarbons known as terpenes. There are standard names for the terpene group as well as for some of the individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfIsopreneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Isoprene Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_isoprene_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for isoprene is CH2=C(CH3)CH=CH2. The IUPAC name for isoprene is 2-methyl-buta-1,3-diene. Isoprene is a member of the group of hydrocarbons known as terpenes. There are standard names for the terpene group as well as for some of the individual species.   The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfIsopreneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Isoprene Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_isoprene_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;solvent production and use&quot; sector comprises industrial processes related to the consumption of halocarbons, SF6, solvent and other product use. &quot;Solvent production and use&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 2F and 3 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromSolventProductionAndUse" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Solvent Production And Use" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_solvent_production_and_use" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. In organic chemistry, a ketone is a compound with the structure RC(=O)R', where R and R' can be a variety of atoms and groups of atoms. It features a carbonyl group (C=O) bonded to two other carbon atoms. Acetone is the simplest example of a ketone. In standard names &quot;ketones&quot; is the term used to describe the group of ketone species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfKetonesDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Ketones Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_ketones_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for limonene is C10H16. The IUPAC name for limonene is 1-methyl-4-prop-1-en-2-yl-cyclohexene. Limonene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="TendencyOfAtmosphereMassContentOfLimoneneDueToEmission" title="Tendency of Atmosphere Mass Content of Limonene Due To Emission" uid="tendency_of_atmosphere_mass_content_of_limonene_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfMercuryDryAerosolDueToEmission" title="Tendency of Atmosphere Mass Content of Mercury Dry Aerosol Due To Emission" uid="tendency_of_atmosphere_mass_content_of_mercury_dry_aerosol_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfMercuryDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Mercury Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_mercury_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfMercuryDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Mercury Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_mercury_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmission" title="Tendency of Atmosphere Mass Content of Methane Due To Emission" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. he chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMethaneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Methane Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_methane_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Net chemical production&quot; means the net result of all chemical reactions within the atmosphere that produce or destroy a particular species. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for methanesulfonic acid is CH3SO3H." label="TendencyOfAtmosphereMassContentOfMethanesulfonicAcidDryAerosolParticlesDueToNetChemicalProduction" title="Tendency of Atmosphere Mass Content of Methanesulfonic Acid Dry Aerosol Particles Due To Net Chemical Production" uid="tendency_of_atmosphere_mass_content_of_methanesulfonic_acid_dry_aerosol_particles_due_to_net_chemical_production" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for methanesulfonic acid is CH3SO3H." label="TendencyOfAtmosphereMassContentOfMethanesulfonicAcidDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Methanesulfonic Acid Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_methanesulfonic_acid_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for methanesulfonic acid is CH3SO3H." label="TendencyOfAtmosphereMassContentOfMethanesulfonicAcidDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Methanesulfonic Acid Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_methanesulfonic_acid_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methanol is CH3OH." label="TendencyOfAtmosphereMassContentOfMethanolDueToEmission" title="Tendency of Atmosphere Mass Content of Methanol Due To Emission" uid="tendency_of_atmosphere_mass_content_of_methanol_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methyl bromide is CH3Br. The IUPAC name for methyl bromide is bromomethane." label="TendencyOfAtmosphereMassContentOfMethylBromideDueToEmission" title="Tendency of Atmosphere Mass Content of Methyl Bromide Due To Emission" uid="tendency_of_atmosphere_mass_content_of_methyl_bromide_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for methyl chloride is CH3Cl. The IUPAC name for methyl chloride is chloromethane." label="TendencyOfAtmosphereMassContentOfMethylChlorideDueToEmission" title="Tendency of Atmosphere Mass Content of Methyl Chloride Due To Emission" uid="tendency_of_atmosphere_mass_content_of_methyl_chloride_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for molecular hydrogen is H2." label="TendencyOfAtmosphereMassContentOfMolecularHydrogenDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Molecular Hydrogen Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_molecular_hydrogen_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for molecular hydrogen is H2." label="TendencyOfAtmosphereMassContentOfMolecularHydrogenDueToEmission" title="Tendency of Atmosphere Mass Content of Molecular Hydrogen Due To Emission" uid="tendency_of_atmosphere_mass_content_of_molecular_hydrogen_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for molecular hydrogen is H2. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMolecularHydrogenDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Molecular Hydrogen Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_molecular_hydrogen_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for molecular hydrogen is H2. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfMolecularHydrogenDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Molecular Hydrogen Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_molecular_hydrogen_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. Monoterpenes are a class of terpenes that consist of two isoprene units and have the molecular formula C10H16. Terpenes are hydrocarbons. The term &quot;monoterpenes&quot; is used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfMonoterpenesDueToEmission" title="Tendency of Atmosphere Mass Content of Monoterpenes Due To Emission" uid="tendency_of_atmosphere_mass_content_of_monoterpenes_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling.  &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the nitrate anion is NO3-." label="TendencyOfAtmosphereMassContentOfNitrateDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Nitrate Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_nitrate_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Net chemical production&quot; means the net result of all chemical reactions within the atmosphere that produce or destroy a particular species. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the nitrate anion is NO3-." label="TendencyOfAtmosphereMassContentOfNitrateDryAerosolParticlesDueToNetChemicalProduction" title="Tendency of Atmosphere Mass Content of Nitrate Dry Aerosol Particles Due To Net Chemical Production" uid="tendency_of_atmosphere_mass_content_of_nitrate_dry_aerosol_particles_due_to_net_chemical_production" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the nitrate anion is NO3-." label="TendencyOfAtmosphereMassContentOfNitrateDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Nitrate Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_nitrate_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfNitricAcidDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Nitric Acid Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_nitric_acid_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfNitricAcidDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Nitric Acid Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_nitric_acid_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfNitrogenDioxideDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Nitrogen Dioxide Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_nitrogen_dioxide_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen dioxide is NO2." label="TendencyOfAtmosphereMassContentOfNitrogenDioxideDueToEmission" title="Tendency of Atmosphere Mass Content of Nitrogen Dioxide Due To Emission" uid="tendency_of_atmosphere_mass_content_of_nitrogen_dioxide_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen dioxide is NO2. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenDioxideDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Nitrogen Dioxide Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_nitrogen_dioxide_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen dioxide is NO2. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenDioxideDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Nitrogen Dioxide Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_nitrogen_dioxide_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. &quot;tendency_of_X&quot; means derivative of X with respect to time. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Deposition&quot; is the sum of wet and dry deposition. &quot;Nitrogen&quot; summarizes all chemical species containing nitrogen atoms. Usually, particle bound and gaseous nitrogen compounds, such as atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), nitrage (NO3-), peroxynitric acid (HNO4), ammoina (NH3), ammonium (NH4+), bromine nitrate (BrONO2), chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)) are included. The list of individual species that are included in this quantity can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfNitrogenDueToDeposition" title="Tendency of Atmosphere Mass Content of Nitrogen Due To Deposition" uid="tendency_of_atmosphere_mass_content_of_nitrogen_due_to_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. &quot;tendency_of_X&quot; means derivative of X with respect to time. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;dry_deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;Nitrogen&quot; summarizes all chemical species containing nitrogen atoms. Usually, particle bound and gaseous nitrogen compounds, such as atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), nitrage (NO3-), peroxynitric acid (HNO4), ammoina (NH3), ammonium (NH4+), bromine nitrate (BrONO2), chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)) are included. The list of individual species that are included in this quantity can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfNitrogenDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Nitrogen Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_nitrogen_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. &quot;tendency_of_X&quot; means derivative of X with respect to time. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;wet_deposition&quot; means deposition by precipitation. &quot;Nitrogen&quot; summarizes all chemical species containing nitrogen atoms. Usually, particle bound and gaseous nitrogen compounds, such as atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), nitrage (NO3-), peroxynitric acid (HNO4), ammoina (NH3), ammonium (NH4+), bromine nitrate (BrONO2), chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)) are included. The list of individual species that are included in this quantity can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfNitrogenDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Nitrogen Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_nitrogen_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmission" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names.   The chemical formula for nitrogen monoxide is NO. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO.   The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNitrogenMonoxideDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Nitrogen Monoxide Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_nitrogen_monoxide_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for nitrous acid is HNO2." label="TendencyOfAtmosphereMassContentOfNitrousAcidDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Nitrous Acid Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_nitrous_acid_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrous acid is HNO2." label="TendencyOfAtmosphereMassContentOfNitrousAcidDueToEmission" title="Tendency of Atmosphere Mass Content of Nitrous Acid Due To Emission" uid="tendency_of_atmosphere_mass_content_of_nitrous_acid_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for nitrous acid is HNO2." label="TendencyOfAtmosphereMassContentOfNitrousAcidDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Nitrous Acid Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_nitrous_acid_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for nitrous oxide is N2O." label="TendencyOfAtmosphereMassContentOfNitrousOxideDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Nitrous Oxide Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_nitrous_oxide_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrous oxide is N2O." label="TendencyOfAtmosphereMassContentOfNitrousOxideDueToEmission" title="Tendency of Atmosphere Mass Content of Nitrous Oxide Due To Emission" uid="tendency_of_atmosphere_mass_content_of_nitrous_oxide_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmission" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;solvent production and use&quot; sector comprises industrial processes related to the consumption of halocarbons, SF6, solvent and other product use. &quot;Solvent production and use&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 2F and 3 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromSolventProductionAndUse" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Solvent Production And Use" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_solvent_production_and_use" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNmvocDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Nmvoc Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;nmvoc&quot; means non methane volatile organic compounds. &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfNmvocExpressedAsCarbonDueToEmission" title="Tendency of Atmosphere Mass Content of Nmvoc Expressed As Carbon Due To Emission" uid="tendency_of_atmosphere_mass_content_of_nmvoc_expressed_as_carbon_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Nox&quot; means nitric oxide (NO) and nitrogen dioxide (NO2). &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenDueToEmission" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Due To Emission" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation. &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for nitrogen monoxide is NO. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen NO+NO2." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromSoil" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Soil" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_soil" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfNoxExpressedAsNitrogenMonoxideDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Nox Expressed As Nitrogen Monoxide Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_monoxide_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;tendency_of_X&quot; means derivative of X with respect to time. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2), chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfNoyExpressedAsNitrogenDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Noy Expressed As Nitrogen Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_noy_expressed_as_nitrogen_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2), chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfNoyExpressedAsNitrogenDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Noy Expressed As Nitrogen Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_noy_expressed_as_nitrogen_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. An organic acid is an organic compound with acidic properties. The most common organic acids are the carboxylic acids, whose acidity is associated with their carboxyl group -COOH. In standard names &quot;organic_acids&quot; is the term used to describe the group of organic acid species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfOrganicAcidsDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Organic Acids Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_organic_acids_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. An organic acid is an organic compound with acidic properties. The most common organic acids are the carboxylic acids, whose acidity is associated with their carboxyl group -COOH. In standard names &quot;organic_acids&quot; is the term used to describe the group of organic acid species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfOrganicAcidsDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Organic Acids Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_organic_acids_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. An organic acid is an organic compound with acidic properties. The most common organic acids are the carboxylic acids, whose acidity is associated with their carboxyl group -COOH. In standard names &quot;organic_acids&quot; is the term used to describe the group of organic acid species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfOrganicAcidsDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Organic Acids Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_organic_acids_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. An organic acid is an organic compound with acidic properties. The most common organic acids are the carboxylic acids, whose acidity is associated with their carboxyl group -COOH. In standard names &quot;organic_acids&quot; is the term used to describe the group of organic acid species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfOrganicAcidsDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Organic Acids Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_organic_acids_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. An organic acid is an organic compound with acidic properties. The most common organic acids are the carboxylic acids, whose acidity is associated with their carboxyl group -COOH. In standard names &quot;organic_acids&quot; is the term used to describe the group of organic acid species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfOrganicAcidsDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Organic Acids Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_organic_acids_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. An organic acid is an organic compound with acidic properties. The most common organic acids are the carboxylic acids, whose acidity is associated with their carboxyl group -COOH. In standard names &quot;organic_acids&quot; is the term used to describe the group of organic acid species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfOrganicAcidsDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Organic Acids Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_organic_acids_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. An organic acid is an organic compound with acidic properties. The most common organic acids are the carboxylic acids, whose acidity is associated with their carboxyl group -COOH. In standard names &quot;organic_acids&quot; is the term used to describe the group of organic acid species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfOrganicAcidsDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Organic Acids Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_organic_acids_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. An organic acid is an organic compound with acidic properties. The most common organic acids are the carboxylic acids, whose acidity is associated with their carboxyl group -COOH. In standard names &quot;organic_acids&quot; is the term used to describe the group of organic acid species that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfOrganicAcidsDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Organic Acids Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_organic_acids_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. &quot;tendency_of_X&quot; means derivative of X with respect to time. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. Organic nitrates are nitrogen-containing compounds having the general formula RONO2, where R is an alkyl (or organic) group; &quot;organic nitrates&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfOrganicNitratesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Organic Nitrates Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_organic_nitrates_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. Organic nitrates are nitrogen-containing compounds having the general formula RONO2, where R is an alkyl (or organic) group; &quot;organic_nitrates&quot; is the term used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfOrganicNitratesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Organic Nitrates Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_organic_nitrates_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time. Organic peroxides are organic molecules containing an oxygen-oxygen bond. The general chemical formula is ROOR or ROOH, where R is an organic group." label="TendencyOfAtmosphereMassContentOfOrganicPeroxidesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Organic Peroxides Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_organic_peroxides_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. Organic peroxides are organic molecules containing an oxygen-oxygen bond. The general chemical formula is ROOR or ROOH, where R is an organic group." label="TendencyOfAtmosphereMassContentOfOrganicPeroxidesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Organic Peroxides Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_organic_peroxides_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfOzoneDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Ozone Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_ozone_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X  with respect to time.  &quot;Dry deposition&quot;is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfOzoneDueToDryDepositionIntoStomata" title="Tendency of Atmosphere Mass Content of Ozone Due To Dry Deposition Into Stomata" uid="tendency_of_atmosphere_mass_content_of_ozone_due_to_dry_deposition_into_stomata" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles.  Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X  with respect to time." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except black carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesDueToGravitationalSettling" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Due To Gravitational Settling" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_gravitational_settling" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles.  &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Net chemical production&quot; means the net result of all chemical reactions within the atmosphere that produce or destroy a particular species. &quot;tendency_of_X&quot; means derivative of X with respect to time. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesDueToNetChemicalProductionAndEmission" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Due To Net Chemical Production And Emission" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_net_chemical_production_and_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol.The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesDueToTurbulentDeposition" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Due To Turbulent Deposition" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_turbulent_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon.  It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except black carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except black carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmission" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation. &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, waste water handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfParticulateOrganicMatterDryAerosolParticlesExpressedAsCarbonDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol Particles Expressed As Carbon Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_expressed_as_carbon_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for pentane is C5H12. Pentane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPentaneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Pentane Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_pentane_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for pentane is C5H12. Pentane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPentaneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Pentane Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_pentane_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for pentane is C5H12. Pentane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPentaneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Pentane Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_pentane_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for pentane is C5H12. Pentane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPentaneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Pentane Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_pentane_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for pentane is C5H12. Pentane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPentaneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Pentane Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_pentane_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for pentane is C5H12. Pentane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfPentaneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Pentane Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_pentane_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for pentane is C5H12. Pentane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPentaneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Pentane Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_pentane_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for pentane is C5H12. Pentane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPentaneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Pentane Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_pentane_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names.  The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPentaneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Pentane Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_pentane_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for peroxyacetyl nitrate, sometimes referred to as PAN, is CH3COO2NO2.  The IUPAC name for peroxyacetyl_nitrate is nitroethaneperoxoate." label="TendencyOfAtmosphereMassContentOfPeroxyacetylNitrateDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Peroxyacetyl Nitrate Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_peroxyacetyl_nitrate_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for peroxynitric acid, sometimes referred to as PNA, is HO2NO2." label="TendencyOfAtmosphereMassContentOfPeroxynitricAcidDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Peroxynitric Acid Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_peroxynitric_acid_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm10DryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Pm10 Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_pm10_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm10DryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Pm10 Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_pm10_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm10DryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Pm10 Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_pm10_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm10DustDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Pm10 Dust Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_pm10_dust_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm10DustDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Pm10 Dust Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_pm10_dust_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm10DustDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Pm10 Dust Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_pm10_dust_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm10SeasaltDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Pm10 Seasalt Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_pm10_seasalt_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm10SeasaltDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Pm10 Seasalt Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_pm10_seasalt_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm10 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 10 micrometers. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm10SeasaltDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Pm10 Seasalt Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_pm10_seasalt_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm2p5DryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Pm2p5 Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_pm2p5_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm2p5DryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Pm2p5 Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_pm2p5_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm2p5DryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Pm2p5 Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_pm2p5_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm2p5DustDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Pm2p5 Dust Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_pm2p5_dust_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm2p5DustDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Pm2p5 Dust Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_pm2p5_dust_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm2p5DustDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Pm2p5 Dust Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_pm2p5_dust_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm2p5SeasaltDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Pm2p5 Seasalt Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_pm2p5_seasalt_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm2p5SeasaltDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Pm2p5 Seasalt Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_pm2p5_seasalt_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfPm2p5SeasaltDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Pm2p5 Seasalt Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_pm2p5_seasalt_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfPrimaryParticulateOrganicMatterDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Primary Particulate Organic Matter Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_primary_particulate_organic_matter_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself.  Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol.&quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon.  The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfPrimaryParticulateOrganicMatterDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Primary Particulate Organic Matter Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_primary_particulate_organic_matter_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfPrimaryParticulateOrganicMatterDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Primary Particulate Organic Matter Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_primary_particulate_organic_matter_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmission" title="Tendency of Atmosphere Mass Content of Propane Due To Emission" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropaneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Propane Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_propane_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmission" title="Tendency of Atmosphere Mass Content of Propene Due To Emission" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes. There are standard names for the alkene group as well as for some of the individual species. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfPropeneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Propene Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_propene_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical symbol for radon is Rn." label="TendencyOfAtmosphereMassContentOfRadonDueToEmission" title="Tendency of Atmosphere Mass Content of Radon Due To Emission" uid="tendency_of_atmosphere_mass_content_of_radon_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSeasaltDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Seasalt Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_seasalt_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSeasaltDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Seasalt Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_seasalt_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSeasaltDryAerosolParticlesDueToGravitationalSettling" title="Tendency of Atmosphere Mass Content of Seasalt Dry Aerosol Particles Due To Gravitational Settling" uid="tendency_of_atmosphere_mass_content_of_seasalt_dry_aerosol_particles_due_to_gravitational_settling" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSeasaltDryAerosolParticlesDueToTurbulentDeposition" title="Tendency of Atmosphere Mass Content of Seasalt Dry Aerosol Particles Due To Turbulent Deposition" uid="tendency_of_atmosphere_mass_content_of_seasalt_dry_aerosol_particles_due_to_turbulent_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSeasaltDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Seasalt Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_seasalt_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSecondaryParticulateOrganicMatterDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Secondary Particulate Organic Matter Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter&quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSecondaryParticulateOrganicMatterDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Secondary Particulate Organic Matter Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter&quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Net chemical production&quot; means the net result of all chemical reactions within the atmosphere that produce or destroy a particular species. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSecondaryParticulateOrganicMatterDryAerosolParticlesDueToNetChemicalProduction" title="Tendency of Atmosphere Mass Content of Secondary Particulate Organic Matter Dry Aerosol Particles Due To Net Chemical Production" uid="tendency_of_atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol_particles_due_to_net_chemical_production" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter&quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSecondaryParticulateOrganicMatterDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Secondary Particulate Organic Matter Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. Terpenes are hydrocarbons, that is, they contain only hydrogen and carbon combined in the general proportions (C5H8)n where n is an integer greater than on equal to one. Sesquiterpenes are a class of terpenes that consist of three isoprene units and have the molecular formula C15H24. Terpenes are hydrocarbons. The term &quot;sesquiterpenes&quot; is used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMassContentOfSesquiterpenesDueToEmission" title="Tendency of Atmosphere Mass Content of Sesquiterpenes Due To Emission" uid="tendency_of_atmosphere_mass_content_of_sesquiterpenes_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMassContentOfSulfateDryAerosolExpressedAsSulfurDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Sulfate Dry Aerosol Expressed As Sulfur Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_expressed_as_sulfur_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Net chemical production&quot; means the net result of all chemical reactions within the atmosphere that produce or destroy a particular species. &quot;Aqueous phase net chemical production&quot; means the net result of all aqueous chemical processes in fog and clouds that produce or destroy a species, as opposed to chemical processes in the gaseous phase. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMassContentOfSulfateDryAerosolParticlesDueToAqueousPhaseNetChemicalProduction" title="Tendency of Atmosphere Mass Content of Sulfate Dry Aerosol Particles Due To Aqueous Phase Net Chemical Production" uid="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_aqueous_phase_net_chemical_production" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMassContentOfSulfateDryAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Sulfate Dry Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMassContentOfSulfateDryAerosolParticlesDueToEmission" title="Tendency of Atmosphere Mass Content of Sulfate Dry Aerosol Particles Due To Emission" uid="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Gaseous phase net chemical production&quot; means the net result of all gaseous chemical processes in the atmosphere that produce or destroy a species, distinct from chemical processes in the aqueous phase. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMassContentOfSulfateDryAerosolParticlesDueToGaseousPhaseNetChemicalProduction" title="Tendency of Atmosphere Mass Content of Sulfate Dry Aerosol Particles Due To Gaseous Phase Net Chemical Production" uid="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_gaseous_phase_net_chemical_production" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMassContentOfSulfateDryAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Sulfate Dry Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMassContentOfSulfateDryAerosolParticlesExpressedAsSulfurDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Sulfate Dry Aerosol Particles Expressed As Sulfur Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_expressed_as_sulfur_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMassContentOfSulfateDryAerosolParticlesExpressedAsSulfurDueToGravitationalSettling" title="Tendency of Atmosphere Mass Content of Sulfate Dry Aerosol Particles Expressed As Sulfur Due To Gravitational Settling" uid="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_expressed_as_sulfur_due_to_gravitational_settling" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMassContentOfSulfateDryAerosolParticlesExpressedAsSulfurDueToTurbulentDeposition" title="Tendency of Atmosphere Mass Content of Sulfate Dry Aerosol Particles Expressed As Sulfur Due To Turbulent Deposition" uid="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_expressed_as_sulfur_due_to_turbulent_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. The chemical formula for sulfur dioxide is SO2." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmission" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for sulfur dioxide is SO2. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for sulfur dioxide is SO2. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for sulfur dioxide is SO2.   The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for sulfur dioxide is SO2. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for sulfur dioxide is SO2. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names.   The chemical formula for sulfur dioxide is SO2. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for sulfur dioxide is SO2. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for sulfur dioxide is SO2. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for sulfur dioxide is SO2. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Content&quot; indicates a quantity per unit area.  &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfSulfurDioxideDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Sulfur Dioxide Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Terpenes are hydrocarbons, that is, they contain only hydrogen and carbon combined in the general proportions (C5H8)n where n is an integer greater than on equal to one. The term &quot;terpenes&quot; is used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual terpene species, e.g., isoprene and limonene. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTerpenesDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Terpenes Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_terpenes_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. Terpenes are hydrocarbons, that is, they contain only hydrogen and carbon combined in the general proportions (C5H8)n where n is an integer greater than on equal to one. The term &quot;terpenes&quot; is used in standard names to describe the group of chemical species having this common structure that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names exist for some individual terpene species, e.g., isoprene and limonene. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTerpenesDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Terpenes Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_terpenes_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3.  Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group.  The systematic name for toluene is methylbenzene." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmission" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names.  The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;solvent production and use&quot; sector comprises industrial processes related to the consumption of halocarbons, SF6, solvent and other product use. &quot;Solvent production and use&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 2F and 3 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromSolventProductionAndUse" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Solvent Production And Use" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_solvent_production_and_use" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for toluene is C6H5CH3. Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group. The systematic name for toluene is methylbenzene. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTolueneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Toluene Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_toluene_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for trimethylbenzene is C9H12. The IUPAC names for trimethylbenzene is 1,3,5-trimethylbenzene. Trimethylbenzene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfTrimethylbenzeneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Trimethylbenzene Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_trimethylbenzene_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Water&quot; means water in all phases." label="TendencyOfAtmosphereMassContentOfWaterDueToAdvection" title="Tendency of Atmosphere Mass Content of Water Due To Advection" uid="tendency_of_atmosphere_mass_content_of_water_due_to_advection" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Atmosphere water vapor content is sometimes referred to as &quot;precipitable water&quot;, although this term does not imply the water could all be precipitated." label="TendencyOfAtmosphereMassContentOfWaterVapor" title="Tendency of Atmosphere Mass Content of Water Vapor" uid="tendency_of_atmosphere_mass_content_of_water_vapor" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Atmosphere water vapor content is sometimes referred to as &quot;precipitable water&quot;, although this term does not imply the water could all be precipitated." label="TendencyOfAtmosphereMassContentOfWaterVaporDueToAdvection" title="Tendency of Atmosphere Mass Content of Water Vapor Due To Advection" uid="tendency_of_atmosphere_mass_content_of_water_vapor_due_to_advection" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Atmosphere water vapor content is sometimes referred to as &quot;precipitable water&quot;, although this term does not imply the water could all be precipitated." label="TendencyOfAtmosphereMassContentOfWaterVaporDueToConvection" title="Tendency of Atmosphere Mass Content of Water Vapor Due To Convection" uid="tendency_of_atmosphere_mass_content_of_water_vapor_due_to_convection" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Atmosphere water vapor content is sometimes referred to as &quot;precipitable water&quot;, although this term does not imply the water could all be precipitated." label="TendencyOfAtmosphereMassContentOfWaterVaporDueToDeepConvection" title="Tendency of Atmosphere Mass Content of Water Vapor Due To Deep Convection" uid="tendency_of_atmosphere_mass_content_of_water_vapor_due_to_deep_convection" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Atmosphere water vapor content is sometimes referred to as &quot;precipitable water&quot;, although this term does not imply the water could all be precipitated." label="TendencyOfAtmosphereMassContentOfWaterVaporDueToShallowConvection" title="Tendency of Atmosphere Mass Content of Water Vapor Due To Shallow Convection" uid="tendency_of_atmosphere_mass_content_of_water_vapor_due_to_shallow_convection" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Atmosphere water vapor content is sometimes referred to as &quot;precipitable water&quot;, although this term does not imply the water could all be precipitated." label="TendencyOfAtmosphereMassContentOfWaterVaporDueToTurbulence" title="Tendency of Atmosphere Mass Content of Water Vapor Due To Turbulence" uid="tendency_of_atmosphere_mass_content_of_water_vapor_due_to_turbulence" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmission" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;agricultural production&quot; sector comprises the agricultural processes of enteric fermentation, manure management, rice cultivation, agricultural soils and other. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in agriculture-related inventory data. &quot;Agricultural production&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 4A, 4B, 4C, 4D and 4G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromAgriculturalProduction" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Agricultural Production" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_agricultural_production" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;agricultural waste burning&quot; sector comprises field burning of agricultural residues. &quot;Agricultural waste burning&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 4F as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromAgriculturalWasteBurning" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Agricultural Waste Burning" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_agricultural_waste_burning" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;energy production and distribution&quot; sector comprises fuel combustion activities related to energy industries and fugitive emissions from fuels. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in energy-related inventory data. &quot;Energy production and distribution&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A1 and 1B as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromEnergyProductionAndDistribution" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Energy Production And Distribution" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_energy_production_and_distribution" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;forest fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in forests. &quot;Forest fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromForestFires" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Forest Fires" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_forest_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;industrial processes and combustion&quot; sector comprises fuel combustion activities related to manufacturing industries and construction, industrial processes related to mineral products, the chemical industry, metal production, the production of pulp, paper, food and drink, and non-energy industry use of lubricants and waxes. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in industry-related inventory data. &quot;Industrial processes and combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A2, 2A, 2B, 2C, 2D and 2G as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromIndustrialProcessesAndCombustion" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Industrial Processes And Combustion" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_industrial_processes_and_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;land transport&quot; sector includes fuel combustion activities related to road transportation, railways and other transportation.  &quot;Land transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A3b, 1A3c and 1A3e as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromLandTransport" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Land Transport" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_land_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;maritime transport&quot; sector includes fuel combustion activities related to maritime transport. &quot;Maritime transport&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3d as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromMaritimeTransport" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Maritime Transport" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_maritime_transport" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;residential and commercial combustion&quot; sector comprises fuel combustion activities related to the commercial/institutional sector, the residential sector and the agriculture/forestry/fishing sector. It may also include any not-classified or &quot;other&quot; combustion, which is commonly included in the inventory data. &quot;Residential and commercial combustion&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 1A4a, 1A4b and 1A4c as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromResidentialAndCommercialCombustion" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Residential And Commercial Combustion" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_residential_and_commercial_combustion" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;savanna and grassland fires&quot; sector comprises the burning (natural and human-induced) of living or dead vegetation in non-forested areas. It excludes field burning of agricultural residues. &quot;Savanna and grassland fires&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 5 as defined in the 2006 IPCC guidelines for national greenhouse gas Inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromSavannaAndGrasslandFires" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Savanna And Grassland Fires" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_savanna_and_grassland_fires" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;solvent production and use&quot; sector comprises industrial processes related to the consumption of halocarbons, SF6, solvent and other product use. &quot;Solvent production and use&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 2F and 3 as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromSolventProductionAndUse" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Solvent Production And Use" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_solvent_production_and_use" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species. The &quot;waste treatment and disposal&quot; sector comprises solid waste disposal on land, wastewater handling, waste incineration and other waste disposal. &quot;Waste treatment and disposal&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source categories 6A, 6B, 6C and 6D as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfAtmosphereMassContentOfXyleneDueToEmissionFromWasteTreatmentAndDisposal" title="Tendency of Atmosphere Mass Content of Xylene Due To Emission From Waste Treatment And Disposal" uid="tendency_of_atmosphere_mass_content_of_xylene_due_to_emission_from_waste_treatment_and_disposal" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell." label="TendencyOfAtmosphereMassPerUnitArea" title="Tendency of Atmosphere Mass Per Unit Area" uid="tendency_of_atmosphere_mass_per_unit_area" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell." label="TendencyOfAtmosphereMassPerUnitAreaDueToAdvection" title="Tendency of Atmosphere Mass Per Unit Area Due To Advection" uid="tendency_of_atmosphere_mass_per_unit_area_due_to_advection" units="kg m-2 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Chemical destruction&quot; means the result of all chemical reactions within the medium (here, atmosphere) that remove a certain amount of a particular species from the medium. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes. There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfAtmosphereMoleConcentrationOfMethaneDueToChemicalDestruction" title="Tendency of Atmosphere Mole Concentration of Methane Due To Chemical Destruction" uid="tendency_of_atmosphere_mole_concentration_of_methane_due_to_chemical_destruction" units="mole m-3 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;tendency_of_X&quot; means derivative of X with respect to time. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Chemical destruction&quot; means the result of all chemical reactions within the medium (here, atmosphere) that remove a certain amount of a particular species from the medium. The chemical formula for ozone is O3. The IUPAC name for ozone is trioxygen." label="TendencyOfAtmosphereMoleConcentrationOfOzoneDueToChemicalDestruction" title="Tendency of Atmosphere Mole Concentration of Ozone Due To Chemical Destruction" uid="tendency_of_atmosphere_mole_concentration_of_ozone_due_to_chemical_destruction" units="mole m-3 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Chemical production&quot; means the result of all chemical reactions within the medium (here, atmosphere) that produce a certain amount of the particular species. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for ozone is O3. The IUPAC name for ozone is trioxygen." label="TendencyOfAtmosphereMoleConcentrationOfOzoneDueToChemicalProduction" title="Tendency of Atmosphere Mole Concentration of Ozone Due To Chemical Production" uid="tendency_of_atmosphere_mole_concentration_of_ozone_due_to_chemical_production" units="mole m-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for acetic_acid is CH3COOH. The IUPAC name for acetic acid is ethanoic acid." label="TendencyOfAtmosphereMolesOfAceticAcid" title="Tendency of Atmosphere Moles of Acetic Acid" uid="tendency_of_atmosphere_moles_of_acetic_acid" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for aceto-nitrile is CH3CN. The IUPAC name for aceto-nitrile is ethanenitrile." label="TendencyOfAtmosphereMolesOfAcetoNitrile" title="Tendency of Atmosphere Moles of Aceto Nitrile" uid="tendency_of_atmosphere_moles_of_aceto_nitrile" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for alpha_hexachlorocyclohexane is C6H6Cl6." label="TendencyOfAtmosphereMolesOfAlphaHexachlorocyclohexane" title="Tendency of Atmosphere Moles of Alpha Hexachlorocyclohexane" uid="tendency_of_atmosphere_moles_of_alpha_hexachlorocyclohexane" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for alpha_pinene is C10H16. The IUPAC name for alpha-pinene is (1S,5S)-2,6,6-trimethylbicyclo[3.1.1]hept-2-ene." label="TendencyOfAtmosphereMolesOfAlphaPinene" title="Tendency of Atmosphere Moles of Alpha Pinene" uid="tendency_of_atmosphere_moles_of_alpha_pinene" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ammonia is NH3." label="TendencyOfAtmosphereMolesOfAmmonia" title="Tendency of Atmosphere Moles of Ammonia" uid="tendency_of_atmosphere_moles_of_ammonia" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Anthropogenic&quot; means influenced, caused, or created by human activity." label="TendencyOfAtmosphereMolesOfAnthropogenicNmvocExpressedAsCarbon" title="Tendency of Atmosphere Moles of Anthropogenic Nmvoc Expressed As Carbon" uid="tendency_of_atmosphere_moles_of_anthropogenic_nmvoc_expressed_as_carbon" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for atomic bromine is Br." label="TendencyOfAtmosphereMolesOfAtomicBromine" title="Tendency of Atmosphere Moles of Atomic Bromine" uid="tendency_of_atmosphere_moles_of_atomic_bromine" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for atomic chlorine is Cl." label="TendencyOfAtmosphereMolesOfAtomicChlorine" title="Tendency of Atmosphere Moles of Atomic Chlorine" uid="tendency_of_atmosphere_moles_of_atomic_chlorine" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for atomic nitrogen is N." label="TendencyOfAtmosphereMolesOfAtomicNitrogen" title="Tendency of Atmosphere Moles of Atomic Nitrogen" uid="tendency_of_atmosphere_moles_of_atomic_nitrogen" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for benzene is C6H6.  Benzene is the simplest aromatic hydrocarbon and has a ring structure consisting of six carbon atoms joined by alternating single and double chemical bonds. Each carbon atom is additionally bonded to one hydrogen atom. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="TendencyOfAtmosphereMolesOfBenzene" title="Tendency of Atmosphere Moles of Benzene" uid="tendency_of_atmosphere_moles_of_benzene" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for beta_pinene is C10H16.  The IUPAC name for beta-pinene is (1S,5S)-6,6-dimethyl-2-methylenebicyclo[3.1.1]heptane." label="TendencyOfAtmosphereMolesOfBetaPinene" title="Tendency of Atmosphere Moles of Beta Pinene" uid="tendency_of_atmosphere_moles_of_beta_pinene" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Biogenic&quot; means influenced, caused, or created by natural processes." label="TendencyOfAtmosphereMolesOfBiogenicNmvocExpressedAsCarbon" title="Tendency of Atmosphere Moles of Biogenic Nmvoc Expressed As Carbon" uid="tendency_of_atmosphere_moles_of_biogenic_nmvoc_expressed_as_carbon" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for bromine chloride is BrCl." label="TendencyOfAtmosphereMolesOfBromineChloride" title="Tendency of Atmosphere Moles of Bromine Chloride" uid="tendency_of_atmosphere_moles_of_bromine_chloride" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for bromine monoxide is BrO." label="TendencyOfAtmosphereMolesOfBromineMonoxide" title="Tendency of Atmosphere Moles of Bromine Monoxide" uid="tendency_of_atmosphere_moles_of_bromine_monoxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for bromine nitrate is BrONO2." label="TendencyOfAtmosphereMolesOfBromineNitrate" title="Tendency of Atmosphere Moles of Bromine Nitrate" uid="tendency_of_atmosphere_moles_of_bromine_nitrate" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Brox&quot;  describes a family of chemical species consisting of inorganic bromine compounds with the exception of  hydrogen bromide (HBr) and bromine nitrate (BrONO2). &quot;Brox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols.  Standard names that use the term &quot;inorganic_bromine&quot; are used for quantities that contain all inorganic bromine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="TendencyOfAtmosphereMolesOfBroxExpressedAsBromine" title="Tendency of Atmosphere Moles of Brox Expressed As Bromine" uid="tendency_of_atmosphere_moles_of_brox_expressed_as_bromine" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for butane is C4H10. Butane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfAtmosphereMolesOfButane" title="Tendency of Atmosphere Moles of Butane" uid="tendency_of_atmosphere_moles_of_butane" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for carbon dioxide is CO2." label="TendencyOfAtmosphereMolesOfCarbonDioxide" title="Tendency of Atmosphere Moles of Carbon Dioxide" uid="tendency_of_atmosphere_moles_of_carbon_dioxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere,i.e. summed over the atmospheric column and over the entire globe. The chemical formula ofcarbon monoxide is CO." label="TendencyOfAtmosphereMolesOfCarbonMonoxide" title="Tendency of Atmosphere Moles of Carbon Monoxide" uid="tendency_of_atmosphere_moles_of_carbon_monoxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere,i.e. summed over the atmospheric column and over the entire globe. The chemical formula ofcarbon tetrachloride is CCl4." label="TendencyOfAtmosphereMolesOfCarbonTetrachloride" title="Tendency of Atmosphere Moles of Carbon Tetrachloride" uid="tendency_of_atmosphere_moles_of_carbon_tetrachloride" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere,i.e. summed over the atmospheric column and over the entire globe. The chemical formula ofCFC11 is CFCl3. The IUPAC name fof CFC11 is trichloro-fluoro-methane." label="TendencyOfAtmosphereMolesOfCfc11" title="Tendency of Atmosphere Moles of Cfc11" uid="tendency_of_atmosphere_moles_of_cfc11" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. Thechemical formula of CFC113 is CCl2FCClF2. The IUPAC name for CFC113 is 1,1,2-trichloro-1,2,2-trifluoro-ethane." label="TendencyOfAtmosphereMolesOfCfc113" title="Tendency of Atmosphere Moles of Cfc113" uid="tendency_of_atmosphere_moles_of_cfc113" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula of CFC113a CCl3CF3.  The IUPAC name for CFC113a is 1,1,1-trichloro-2,2,2-trifluoro-ethane." label="TendencyOfAtmosphereMolesOfCfc113a" title="Tendency of Atmosphere Moles of Cfc113a" uid="tendency_of_atmosphere_moles_of_cfc113a" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere,i.e. summed over the atmospheric column and over the entire globe. The chemical formula ofCFC114 is CClF2CClF2. The IUPAC name for CFC114 is 1,2-dichloro-1,1,2,2-tetrafluoro-ethane." label="TendencyOfAtmosphereMolesOfCfc114" title="Tendency of Atmosphere Moles of Cfc114" uid="tendency_of_atmosphere_moles_of_cfc114" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. Thechemical formula of CFC115 is CClF2CF3. The IUPAC name for CFC115 is 1-chloro-1,1,2,2,2-pentafluoro-ethane." label="TendencyOfAtmosphereMolesOfCfc115" title="Tendency of Atmosphere Moles of Cfc115" uid="tendency_of_atmosphere_moles_of_cfc115" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. Thechemical formula for CFC12 is CF2Cl2.  The IUPAC name for CFC12 is dichloro-difluoro-methane." label="TendencyOfAtmosphereMolesOfCfc12" title="Tendency of Atmosphere Moles of Cfc12" uid="tendency_of_atmosphere_moles_of_cfc12" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for chlorine dioxide is OClO." label="TendencyOfAtmosphereMolesOfChlorineDioxide" title="Tendency of Atmosphere Moles of Chlorine Dioxide" uid="tendency_of_atmosphere_moles_of_chlorine_dioxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for chlorine monoxide is ClO." label="TendencyOfAtmosphereMolesOfChlorineMonoxide" title="Tendency of Atmosphere Moles of Chlorine Monoxide" uid="tendency_of_atmosphere_moles_of_chlorine_monoxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for chlorine nitrate is ClONO2." label="TendencyOfAtmosphereMolesOfChlorineNitrate" title="Tendency of Atmosphere Moles of Chlorine Nitrate" uid="tendency_of_atmosphere_moles_of_chlorine_nitrate" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Clox&quot; describes a family of chemical species consisting of inorganic chlorine compounds with the exception of  hydrogen chloride (HCl) and chlorine nitrate (ClONO2). &quot;Clox&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity with a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols.   Standard names that use the term &quot;inorganic_chlorine&quot; are used for quantities that contain all inorganic chlorine species including HCl and ClONO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="TendencyOfAtmosphereMolesOfCloxExpressedAsChlorine" title="Tendency of Atmosphere Moles of Clox Expressed As Chlorine" uid="tendency_of_atmosphere_moles_of_clox_expressed_as_chlorine" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for dichlorine peroxide is Cl2O2." label="TendencyOfAtmosphereMolesOfDichlorinePeroxide" title="Tendency of Atmosphere Moles of Dichlorine Peroxide" uid="tendency_of_atmosphere_moles_of_dichlorine_peroxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for dimethyl sulfide is (CH3)2S.  Dimethyl sulfide is sometimes referred to as DMS." label="TendencyOfAtmosphereMolesOfDimethylSulfide" title="Tendency of Atmosphere Moles of Dimethyl Sulfide" uid="tendency_of_atmosphere_moles_of_dimethyl_sulfide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for dinitrogen pentoxide is N2O5." label="TendencyOfAtmosphereMolesOfDinitrogenPentoxide" title="Tendency of Atmosphere Moles of Dinitrogen Pentoxide" uid="tendency_of_atmosphere_moles_of_dinitrogen_pentoxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ethane is C2H6. Ethane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfAtmosphereMolesOfEthane" title="Tendency of Atmosphere Moles of Ethane" uid="tendency_of_atmosphere_moles_of_ethane" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ethanol is C2H5OH." label="TendencyOfAtmosphereMolesOfEthanol" title="Tendency of Atmosphere Moles of Ethanol" uid="tendency_of_atmosphere_moles_of_ethanol" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ethene is C2H4. Ethene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="TendencyOfAtmosphereMolesOfEthene" title="Tendency of Atmosphere Moles of Ethene" uid="tendency_of_atmosphere_moles_of_ethene" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ethyne is HC2H.  Ethyne is the IUPAC name for this species, which is also commonly known as acetylene." label="TendencyOfAtmosphereMolesOfEthyne" title="Tendency of Atmosphere Moles of Ethyne" uid="tendency_of_atmosphere_moles_of_ethyne" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="TendencyOfAtmosphereMolesOfFormaldehyde" title="Tendency of Atmosphere Moles of Formaldehyde" uid="tendency_of_atmosphere_moles_of_formaldehyde" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for formic acid is HCOOH.  The IUPAC name for formic acid is methanoic acid." label="TendencyOfAtmosphereMolesOfFormicAcid" title="Tendency of Atmosphere Moles of Formic Acid" uid="tendency_of_atmosphere_moles_of_formic_acid" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Divalent mercury&quot; means all compounds in which the mercury has two binding sites to other ion(s) in a salt or to other atom(s) in a molecule." label="TendencyOfAtmosphereMolesOfGaseousDivalentMercury" title="Tendency of Atmosphere Moles of Gaseous Divalent Mercury" uid="tendency_of_atmosphere_moles_of_gaseous_divalent_mercury" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for mercury is Hg." label="TendencyOfAtmosphereMolesOfGaseousElementalMercury" title="Tendency of Atmosphere Moles of Gaseous Elemental Mercury" uid="tendency_of_atmosphere_moles_of_gaseous_elemental_mercury" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for halon1202 is CBr2F2. The IUPAC name for halon1202 is dibromo-difluoro-methane." label="TendencyOfAtmosphereMolesOfHalon1202" title="Tendency of Atmosphere Moles of Halon1202" uid="tendency_of_atmosphere_moles_of_halon1202" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for halon1211 is CBrClF2. The IUPAC name for halon1211 is bromo-chloro-difluoro-methane." label="TendencyOfAtmosphereMolesOfHalon1211" title="Tendency of Atmosphere Moles of Halon1211" uid="tendency_of_atmosphere_moles_of_halon1211" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for halon1301 is CBrF3. The IUPAC name for halon1301 is bromo-trifluoro-methane." label="TendencyOfAtmosphereMolesOfHalon1301" title="Tendency of Atmosphere Moles of Halon1301" uid="tendency_of_atmosphere_moles_of_halon1301" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for halo2402 is C2Br2F4. The IUPAC name for halon2402 is 1,2-dibromo-1,1,2,2-tetrafluoro-ethane." label="TendencyOfAtmosphereMolesOfHalon2402" title="Tendency of Atmosphere Moles of Halon2402" uid="tendency_of_atmosphere_moles_of_halon2402" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hcc140a is CH3CCl3. The IUPAC name for hcc140a is 1,1,1-trichloro-ethane." label="TendencyOfAtmosphereMolesOfHcc140a" title="Tendency of Atmosphere Moles of Hcc140a" uid="tendency_of_atmosphere_moles_of_hcc140a" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for HCFC141b is CH3CCl2F. The IUPAC name for HCFC141b is 1,1-dichloro-1-fluoroethane." label="TendencyOfAtmosphereMolesOfHcfc141b" title="Tendency of Atmosphere Moles of Hcfc141b" uid="tendency_of_atmosphere_moles_of_hcfc141b" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for HCFC142b is CH3CClF2. The IUPAC name for HCFC142b is 1-chloro-1,1-difluoroethane." label="TendencyOfAtmosphereMolesOfHcfc142b" title="Tendency of Atmosphere Moles of Hcfc142b" uid="tendency_of_atmosphere_moles_of_hcfc142b" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for HCFC22 is CHClF2.  The IUPAC name for HCFC22 is chloro-difluoro-methane." label="TendencyOfAtmosphereMolesOfHcfc22" title="Tendency of Atmosphere Moles of Hcfc22" uid="tendency_of_atmosphere_moles_of_hcfc22" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hexachlorobiphenyl is C12H4Cl6.  This structure of this species consists of two linked benzene rings, each of which is additionally bonded to three chlorine atoms." label="TendencyOfAtmosphereMolesOfHexachlorobiphenyl" title="Tendency of Atmosphere Moles of Hexachlorobiphenyl" uid="tendency_of_atmosphere_moles_of_hexachlorobiphenyl" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;HOx&quot; means a combination of two radical species containing hydrogen and oxygen: OH and HO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="TendencyOfAtmosphereMolesOfHoxExpressedAsHydrogen" title="Tendency of Atmosphere Moles of Hox Expressed As Hydrogen" uid="tendency_of_atmosphere_moles_of_hox_expressed_as_hydrogen" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hydrogen bromide is HBr." label="TendencyOfAtmosphereMolesOfHydrogenBromide" title="Tendency of Atmosphere Moles of Hydrogen Bromide" uid="tendency_of_atmosphere_moles_of_hydrogen_bromide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hydrogen chloride is HCl." label="TendencyOfAtmosphereMolesOfHydrogenChloride" title="Tendency of Atmosphere Moles of Hydrogen Chloride" uid="tendency_of_atmosphere_moles_of_hydrogen_chloride" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hydrogen cyanide is HCN." label="TendencyOfAtmosphereMolesOfHydrogenCyanide" title="Tendency of Atmosphere Moles of Hydrogen Cyanide" uid="tendency_of_atmosphere_moles_of_hydrogen_cyanide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hydrogen peroxide is H2O2." label="TendencyOfAtmosphereMolesOfHydrogenPeroxide" title="Tendency of Atmosphere Moles of Hydrogen Peroxide" uid="tendency_of_atmosphere_moles_of_hydrogen_peroxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for the hydroperoxyl radical is HO2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="TendencyOfAtmosphereMolesOfHydroperoxylRadical" title="Tendency of Atmosphere Moles of Hydroperoxyl Radical" uid="tendency_of_atmosphere_moles_of_hydroperoxyl_radical" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for the hydroxyl radical is OH. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="TendencyOfAtmosphereMolesOfHydroxylRadical" title="Tendency of Atmosphere Moles of Hydroxyl Radical" uid="tendency_of_atmosphere_moles_of_hydroxyl_radical" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hypobromous acid is HOBr." label="TendencyOfAtmosphereMolesOfHypobromousAcid" title="Tendency of Atmosphere Moles of Hypobromous Acid" uid="tendency_of_atmosphere_moles_of_hypobromous_acid" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for hypochlorous acid is HOCl." label="TendencyOfAtmosphereMolesOfHypochlorousAcid" title="Tendency of Atmosphere Moles of Hypochlorous Acid" uid="tendency_of_atmosphere_moles_of_hypochlorous_acid" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of source gases containing bromine (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols. &quot;Inorganic bromine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;brox&quot; are used for quantities that contain all inorganic bromine species except HBr and BrONO2." label="TendencyOfAtmosphereMolesOfInorganicBromine" title="Tendency of Atmosphere Moles of Inorganic Bromine" uid="tendency_of_atmosphere_moles_of_inorganic_bromine" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Inorganic chlorine&quot;, sometimes referred to as Cly, describes a family of chemical species which result from the degradation of source gases containing chlorine (CFCs, HCFCs, VSLS) and natural inorganic chlorine sources such as seasalt and other aerosols. &quot;Inorganic chlorine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;clox&quot; are used for quantities that contain all inorganic chlorine species except HCl and ClONO2." label="TendencyOfAtmosphereMolesOfInorganicChlorine" title="Tendency of Atmosphere Moles of Inorganic Chlorine" uid="tendency_of_atmosphere_moles_of_inorganic_chlorine" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for isoprene is CH2=C(CH3)CH=CH2. The IUPAC name for isoprene is 2-methyl-buta-1,3-diene. Isoprene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="TendencyOfAtmosphereMolesOfIsoprene" title="Tendency of Atmosphere Moles of Isoprene" uid="tendency_of_atmosphere_moles_of_isoprene" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for limonene is C10H16. The IUPAC name for limonene is 1-methyl-4-prop-1-en-2-yl-cyclohexene. Limonene is a member of the group of hydrocarbons known as terpenes.  There are standard names for the terpene group as well as for some of the individual species." label="TendencyOfAtmosphereMolesOfLimonene" title="Tendency of Atmosphere Moles of Limonene" uid="tendency_of_atmosphere_moles_of_limonene" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere,i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes.  Thereare standard names for the alkane group as well as for some of the individual species." label="TendencyOfAtmosphereMolesOfMethane" title="Tendency of Atmosphere Moles of Methane" uid="tendency_of_atmosphere_moles_of_methane" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methanol is CH3OH." label="TendencyOfAtmosphereMolesOfMethanol" title="Tendency of Atmosphere Moles of Methanol" uid="tendency_of_atmosphere_moles_of_methanol" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere,i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methyl bromide is CH3Br. The IUPAC name for methyl bromide is bromomethane." label="TendencyOfAtmosphereMolesOfMethylBromide" title="Tendency of Atmosphere Moles of Methyl Bromide" uid="tendency_of_atmosphere_moles_of_methyl_bromide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X contained in the entire atmosphere, i.e, summed over the atmospheric column and over the entire globe.  The chemical formula of methyl chloride is CH3Cl. The IUPAC name for methyl chloride is chloromethane." label="TendencyOfAtmosphereMolesOfMethylChloride" title="Tendency of Atmosphere Moles of Methyl Chloride" uid="tendency_of_atmosphere_moles_of_methyl_chloride" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methyl hydroperoxide is CH3OOH." label="TendencyOfAtmosphereMolesOfMethylHydroperoxide" title="Tendency of Atmosphere Moles of Methyl Hydroperoxide" uid="tendency_of_atmosphere_moles_of_methyl_hydroperoxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methyl_peroxy_radical is CH3O2. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="TendencyOfAtmosphereMolesOfMethylPeroxyRadical" title="Tendency of Atmosphere Moles of Methyl Peroxy Radical" uid="tendency_of_atmosphere_moles_of_methyl_peroxy_radical" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X contained in the entire atmosphere, i.e, summed over the atmospheric column and over the entire globe.  The chemical formula of molecular hydrogen is H2." label="TendencyOfAtmosphereMolesOfMolecularHydrogen" title="Tendency of Atmosphere Moles of Molecular Hydrogen" uid="tendency_of_atmosphere_moles_of_molecular_hydrogen" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitrate is NO3. In chemistry, a 'radical' is a highly reactive, and therefore shortlived, species." label="TendencyOfAtmosphereMolesOfNitrateRadical" title="Tendency of Atmosphere Moles of Nitrate Radical" uid="tendency_of_atmosphere_moles_of_nitrate_radical" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitric acid is HNO3." label="TendencyOfAtmosphereMolesOfNitricAcid" title="Tendency of Atmosphere Moles of Nitric Acid" uid="tendency_of_atmosphere_moles_of_nitric_acid" units="mol s-1"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for nitric acid is HNO3. Nitric acid trihydrate, sometimes referred to as NAT, is a stable crystalline substance consisting of three molecules of water to one molecule of nitric acid." label="TendencyOfAtmosphereMolesOfNitricAcidTrihydrateAmbientAerosolParticles" title="Tendency of Atmosphere Moles of Nitric Acid Trihydrate Ambient Aerosol Particles" uid="tendency_of_atmosphere_moles_of_nitric_acid_trihydrate_ambient_aerosol_particles" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitrogen dioxide is NO2." label="TendencyOfAtmosphereMolesOfNitrogenDioxide" title="Tendency of Atmosphere Moles of Nitrogen Dioxide" uid="tendency_of_atmosphere_moles_of_nitrogen_dioxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitrogen monoxide is NO." label="TendencyOfAtmosphereMolesOfNitrogenMonoxide" title="Tendency of Atmosphere Moles of Nitrogen Monoxide" uid="tendency_of_atmosphere_moles_of_nitrogen_monoxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitrous acid is HNO2." label="TendencyOfAtmosphereMolesOfNitrousAcid" title="Tendency of Atmosphere Moles of Nitrous Acid" uid="tendency_of_atmosphere_moles_of_nitrous_acid" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X contained in the entire atmosphere, i.e, summed over the atmospheric column and over the entire globe.  The chemical formula of nitrous oxide is N2O." label="TendencyOfAtmosphereMolesOfNitrousOxide" title="Tendency of Atmosphere Moles of Nitrous Oxide" uid="tendency_of_atmosphere_moles_of_nitrous_oxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. &quot;nmvoc&quot; means non methane volatile organic compounds; &quot;nmvoc&quot; is the term used in standard names to describe the group of chemical species having this classification that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfAtmosphereMolesOfNmvocExpressedAsCarbon" title="Tendency of Atmosphere Moles of Nmvoc Expressed As Carbon" uid="tendency_of_atmosphere_moles_of_nmvoc_expressed_as_carbon" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="TendencyOfAtmosphereMolesOfNoxExpressedAsNitrogen" title="Tendency of Atmosphere Moles of Nox Expressed As Nitrogen" uid="tendency_of_atmosphere_moles_of_nox_expressed_as_nitrogen" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2) , chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="TendencyOfAtmosphereMolesOfNoyExpressedAsNitrogen" title="Tendency of Atmosphere Moles of Noy Expressed As Nitrogen" uid="tendency_of_atmosphere_moles_of_noy_expressed_as_nitrogen" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for ozone is O3." label="TendencyOfAtmosphereMolesOfOzone" title="Tendency of Atmosphere Moles of Ozone" uid="tendency_of_atmosphere_moles_of_ozone" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for peroxyacetyl nitrate, sometimes referred to as PAN, is CH3COO2NO2.  The IUPAC name for peroxyacetyl_nitrate is nitroethaneperoxoate." label="TendencyOfAtmosphereMolesOfPeroxyacetylNitrate" title="Tendency of Atmosphere Moles of Peroxyacetyl Nitrate" uid="tendency_of_atmosphere_moles_of_peroxyacetyl_nitrate" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for peroxynitric acid, sometimes referred to as PNA, is HO2NO2." label="TendencyOfAtmosphereMolesOfPeroxynitricAcid" title="Tendency of Atmosphere Moles of Peroxynitric Acid" uid="tendency_of_atmosphere_moles_of_peroxynitric_acid" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for propane is C3H8. Propane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfAtmosphereMolesOfPropane" title="Tendency of Atmosphere Moles of Propane" uid="tendency_of_atmosphere_moles_of_propane" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for propene is C3H6. Propene is a member of the group of hydrocarbons known as alkenes.  There are standard names for the alkene group as well as for some of the individual species." label="TendencyOfAtmosphereMolesOfPropene" title="Tendency of Atmosphere Moles of Propene" uid="tendency_of_atmosphere_moles_of_propene" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical symbol for radon is Rn." label="TendencyOfAtmosphereMolesOfRadon" title="Tendency of Atmosphere Moles of Radon" uid="tendency_of_atmosphere_moles_of_radon" units="mol s-1"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the sulfate anion is SO4(2-)." label="TendencyOfAtmosphereMolesOfSulfateDryAerosolParticles" title="Tendency of Atmosphere Moles of Sulfate Dry Aerosol Particles" uid="tendency_of_atmosphere_moles_of_sulfate_dry_aerosol_particles" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for sulfur dioxide is SO2." label="TendencyOfAtmosphereMolesOfSulfurDioxide" title="Tendency of Atmosphere Moles of Sulfur Dioxide" uid="tendency_of_atmosphere_moles_of_sulfur_dioxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for toluene is C6H5CH3.  Toluene has the same structure as benzene, except that one of the hydrogen atoms is replaced by a methyl group.  The systematic name for toluene is methylbenzene." label="TendencyOfAtmosphereMolesOfToluene" title="Tendency of Atmosphere Moles of Toluene" uid="tendency_of_atmosphere_moles_of_toluene" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe." label="TendencyOfAtmosphereMolesOfWaterVapor" title="Tendency of Atmosphere Moles of Water Vapor" uid="tendency_of_atmosphere_moles_of_water_vapor" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for xylene is C6H4C2H6. In chemistry, xylene is a generic term for a group of three isomers of dimethylbenzene. The IUPAC names for the isomers are 1,2-dimethylbenzene, 1,3-dimethylbenzene and 1,4-dimethylbenzene. Xylene is an aromatic hydrocarbon. There are standard names that refer to aromatic_compounds as a group, as well as those for individual species." label="TendencyOfAtmosphereMolesOfXylene" title="Tendency of Atmosphere Moles of Xylene" uid="tendency_of_atmosphere_moles_of_xylene" units="mol s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereNumberContentOfAerosolParticlesDueToDryDeposition" title="Tendency of Atmosphere Number Content of Aerosol Particles Due To Dry Deposition" uid="tendency_of_atmosphere_number_content_of_aerosol_particles_due_to_dry_deposition" units="m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereNumberContentOfAerosolParticlesDueToGravitationalSettling" title="Tendency of Atmosphere Number Content of Aerosol Particles Due To Gravitational Settling" uid="tendency_of_atmosphere_number_content_of_aerosol_particles_due_to_gravitational_settling" units="m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The sum of turbulent deposition and gravitational settling is dry deposition. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereNumberContentOfAerosolParticlesDueToTurbulentDepostion" title="Tendency of Atmosphere Number Content of Aerosol Particles Due To Turbulent Depostion" uid="tendency_of_atmosphere_number_content_of_aerosol_particles_due_to_turbulent_depostion" units="m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereNumberContentOfAerosolParticlesDueToWetDeposition" title="Tendency of Atmosphere Number Content of Aerosol Particles Due To Wet Deposition" uid="tendency_of_atmosphere_number_content_of_aerosol_particles_due_to_wet_deposition" units="m-2 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Chemical destruction&quot; means the result of all chemical reactions within the medium (here, atmosphere) that remove a certain amount of a particular species from the medium. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula of carbon monoxide is CO." label="TendencyOfAtmosphereOfMoleConcentrationOfCarbonMonoxideDueToChemicalDestruction" title="Tendency of Atmosphere of Mole Concentration of Carbon Monoxide Due To Chemical Destruction" uid="tendency_of_atmosphere_of_mole_concentration_of_carbon_monoxide_due_to_chemical_destruction" units="mole m-3 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)" label="TendencyOfAtmospherePotentialEnergyContentDueToAdvection" title="Tendency of Atmosphere Potential Energy Content Due To Advection" uid="tendency_of_atmosphere_potential_energy_content_due_to_advection" units="W m-2"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level. &quot;Bedrock&quot; is the solid Earth surface beneath land ice or ocean water." label="TendencyOfBedrockAltitude" title="Tendency of Bedrock Altitude" uid="tendency_of_bedrock_altitude" units="m s-1"/>
<item description="&quot;Amount&quot; means mass per unit area. Zero change in land ice amount is an arbitrary level. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfChangeInLandIceAmount" title="Tendency of Change in Land Ice Amount" uid="tendency_of_change_in_land_ice_amount" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Dry energy is the sum of dry static energy and kinetic energy. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="TendencyOfDryEnergyContentOfAtmosphereLayer" title="Tendency of Dry Energy Content of Atmosphere Layer" uid="tendency_of_dry_energy_content_of_atmosphere_layer" units="W m-2"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="TendencyOfDryStaticEnergyContentOfAtmosphereLayer" title="Tendency of Dry Static Energy Content of Atmosphere Layer" uid="tendency_of_dry_static_energy_content_of_atmosphere_layer" units="W m-2"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="TendencyOfEastwardWind" title="Tendency of Eastward Wind" uid="tendency_of_eastward_wind" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="TendencyOfEastwardWindDueToAdvection" title="Tendency of Eastward Wind Due To Advection" uid="tendency_of_eastward_wind_due_to_advection" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="TendencyOfEastwardWindDueToConvection" title="Tendency of Eastward Wind Due To Convection" uid="tendency_of_eastward_wind_due_to_convection" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="TendencyOfEastwardWindDueToDiffusion" title="Tendency of Eastward Wind Due To Diffusion" uid="tendency_of_eastward_wind_due_to_diffusion" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  &quot;Eliassen Palm flux&quot; is a widely used vector in the meridional plane, and the divergence of this flux appears as a forcing in the Transformed Eulerian mean formulation of the zonal mean zonal wind equation.  Thus, &quot;eastward_wind&quot; here will generally be the zonally averaged eastward wind." label="TendencyOfEastwardWindDueToEliassenPalmFluxDivergence" title="Tendency of Eastward Wind Due To Eliassen Palm Flux Divergence" uid="tendency_of_eastward_wind_due_to_eliassen_palm_flux_divergence" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)  The quantity named tendency_of_eastward_wind_due_to_gravity_wave_drag is the sum of the tendencies due to orographic and nonorographic gravity waves which have standard names of tendency_of_eastward_wind_due_to_orographic_gravity_wave_drag and tendency_of_eastward_wind_due_to_nonorographic_gravity_wave_drag, respectively." label="TendencyOfEastwardWindDueToGravityWaveDrag" title="Tendency of Eastward Wind Due To Gravity Wave Drag" uid="tendency_of_eastward_wind_due_to_gravity_wave_drag" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  The total tendency of the eastward wind due to gravity waves has the standard name tendency_of_eastward_wind_due_to_gravity_wave_drag.  It is the sum of the tendencies due to orographic gravity waves and nonorographic waves.  The tendency of eastward wind due to orographic gravity waves has the standard name tendency_of_eastward_wind_due_to_orographic_gravity_wave_drag." label="TendencyOfEastwardWindDueToNonorographicGravityWaveDrag" title="Tendency of Eastward Wind Due To Nonorographic Gravity Wave Drag" uid="tendency_of_eastward_wind_due_to_nonorographic_gravity_wave_drag" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  The total tendency of the eastward wind will include a variety of numerical and diffusive effects: a variable with this standard name is sometimes needed to allow the momentum budget to be closed." label="TendencyOfEastwardWindDueToNumericalArtefacts" title="Tendency of Eastward Wind Due To Numerical Artefacts" uid="tendency_of_eastward_wind_due_to_numerical_artefacts" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  The total tendency of the eastward wind due to gravity waves has the standard name tendency_of_eastward_wind_due_to_gravity_wave_drag.  It is the sum of the tendencies due to orographic gravity waves and nonorographic waves.  The tendency of eastward wind due to nonorographic gravity waves has the standard name tendency_of_eastward_wind_due_to_nonorographic_gravity_wave_drag." label="TendencyOfEastwardWindDueToOrographicGravityWaveDrag" title="Tendency of Eastward Wind Due To Orographic Gravity Wave Drag" uid="tendency_of_eastward_wind_due_to_orographic_gravity_wave_drag" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume." label="TendencyOfEnthalpyContentOfAtmosphereLayerDueToAdvection" title="Tendency of Enthalpy Content of Atmosphere Layer Due To Advection" uid="tendency_of_enthalpy_content_of_atmosphere_layer_due_to_advection" units="W m-2"/>
<item description="Global average sea level change is due to change in volume of the water in the ocean, caused by mass and/or density change, or to change in the volume of the ocean basins, caused by tectonics etc. It is sometimes called &quot;eustatic&quot;, which is a term that also has other definitions. It differs from the change in the global average sea surface height relative to the centre of the Earth by the global average vertical movement of the ocean floor. Zero sea level change is an arbitrary level. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfGlobalAverageSeaLevelChange" title="Tendency of Global Average Sea Level Change" uid="tendency_of_global_average_sea_level_change" units="m year-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="TendencyOfKineticEnergyContentOfAtmosphereLayerDueToAdvection" title="Tendency of Kinetic Energy Content of Atmosphere Layer Due To Advection" uid="tendency_of_kinetic_energy_content_of_atmosphere_layer_due_to_advection" units="W m-2"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. Mass balance means the net rate at which ice is accumulated. A negative value means loss of ice. &quot;tendency_of_X&quot; means derivative of X with respect to time. The tendency of land ice mass is the spatially integrated mass balance. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The tendency in ice mass due to the basal mass balance is the spatial integral of the quantity with standard name land_ice_basal_specific_mass_balance_flux. The horizontal domain over which the quantity is calculated is described by the associated coordinate variables and coordinate bounds or by a coordinate variable or scalar coordinate variable with the standard name of &quot;region&quot; supplied according to section 6.1.1 of the CF conventions." label="TendencyOfLandIceMassDueToBasalMassBalance" title="Tendency of Land Ice Mass Due To Basal Mass Balance" uid="tendency_of_land_ice_mass_due_to_basal_mass_balance" units="kg s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. &quot;tendency_of_X&quot; means derivative of X with respect to time. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The tendency in ice mass due to calving is the spatial integral of the quantity named land_ice_specific_mass_flux_due_to_calving. The horizontal domain over which the quantity is calculated is described by the associated coordinate variables and coordinate bounds or by a coordinate variable or scalar coordinate variable with the standard name of &quot;region&quot; supplied according to section 6.1.1 of the CF conventions." label="TendencyOfLandIceMassDueToCalving" title="Tendency of Land Ice Mass Due To Calving" uid="tendency_of_land_ice_mass_due_to_calving" units="kg s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves.  &quot;Thickness&quot; means the vertical extent of a layer.." label="TendencyOfLandIceThickness" title="Tendency of Land Ice Thickness" uid="tendency_of_land_ice_thickness" units="m s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The mass is the total mass of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The &quot;aviation&quot; sector includes fuel combustion activities related to civil aviation. &quot;Aviation&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3a as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="TendencyOfMassConcentrationOfElementalCarbonDryAerosolParticlesInAirDueToEmissionFromAviation" title="Tendency of Mass Concentration of Elemental Carbon Dry Aerosol Particles in Air Due To Emission From Aviation" uid="tendency_of_mass_concentration_of_elemental_carbon_dry_aerosol_particles_in_air_due_to_emission_from_aviation" units="kg m-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen dioxide is NO2. The &quot;aviation&quot; sector includes fuel combustion activities related to civil aviation. &quot;Aviation&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3a as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfMassConcentrationOfNitrogenDioxideInAirDueToEmissionFromAviation" title="Tendency of Mass Concentration of Nitrogen Dioxide in Air Due To Emission From Aviation" uid="tendency_of_mass_concentration_of_nitrogen_dioxide_in_air_due_to_emission_from_aviation" units="kg m-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The mass is the total mass of the molecules. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. The chemical formula for nitrogen monoxide is NO. The &quot;aviation&quot; sector includes fuel combustion activities related to civil aviation. &quot;Aviation&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3a as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfMassConcentrationOfNitrogenMonoxideInAirDueToEmissionFromAviation" title="Tendency of Mass Concentration of Nitrogen Monoxide in Air Due To Emission From Aviation" uid="tendency_of_mass_concentration_of_nitrogen_monoxide_in_air_due_to_emission_from_aviation" units="kg m-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. earth's surface). &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names. &quot;Nox&quot; means a combination of two radical species containing nitrogen and oxygen: NO+NO2. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The &quot;aviation&quot; sector includes fuel combustion activities related to civil aviation. &quot;Aviation&quot; is the term used in standard names to describe a collection of emission sources. A variable which has this value for the standard_name attribute should be accompanied by a comment attribute which lists the source categories and provides a reference to the categorization scheme, for example, &quot;IPCC (Intergovernmental Panel on Climate Change) source category 1A3a as defined in the 2006 IPCC guidelines for national greenhouse gas inventories&quot;." label="TendencyOfMassConcentrationOfNoxExpressedAsNitrogenMonoxideInAirDueToEmissionFromAviation" title="Tendency of Mass Concentration of Nox Expressed As Nitrogen Monoxide in Air Due To Emission From Aviation" uid="tendency_of_mass_concentration_of_nox_expressed_as_nitrogen_monoxide_in_air_due_to_emission_from_aviation" units="kg m-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="TendencyOfMassContentOfWaterVaporInAtmosphereLayer" title="Tendency of Mass Content of Water Vapor in Atmosphere Layer" uid="tendency_of_mass_content_of_water_vapor_in_atmosphere_layer" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="TendencyOfMassContentOfWaterVaporInAtmosphereLayerDueToConvection" title="Tendency of Mass Content of Water Vapor in Atmosphere Layer Due To Convection" uid="tendency_of_mass_content_of_water_vapor_in_atmosphere_layer_due_to_convection" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="TendencyOfMassContentOfWaterVaporInAtmosphereLayerDueToDeepConvection" title="Tendency of Mass Content of Water Vapor in Atmosphere Layer Due To Deep Convection" uid="tendency_of_mass_content_of_water_vapor_in_atmosphere_layer_due_to_deep_convection" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well." label="TendencyOfMassContentOfWaterVaporInAtmosphereLayerDueToShallowConvection" title="Tendency of Mass Content of Water Vapor in Atmosphere Layer Due To Shallow Convection" uid="tendency_of_mass_content_of_water_vapor_in_atmosphere_layer_due_to_shallow_convection" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary variable) as well." label="TendencyOfMassContentOfWaterVaporInAtmosphereLayerDueToTurbulence" title="Tendency of Mass Content of Water Vapor in Atmosphere Layer Due To Turbulence" uid="tendency_of_mass_content_of_water_vapor_in_atmosphere_layer_due_to_turbulence" units="kg m-2 s-1"/>
<item description="&quot;Tendency_of_X&quot; means derivative of X with respect to time. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  &quot;Condensed_water&quot; means liquid and ice." label="TendencyOfMassFractionOfCloudCondensedWaterInAir" title="Tendency of Mass Fraction of Cloud Condensed Water in Air" uid="tendency_of_mass_fraction_of_cloud_condensed_water_in_air" units="s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;condensed_water&quot; means liquid and ice. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="TendencyOfMassFractionOfCloudCondensedWaterInAirDueToAdvection" title="Tendency of Mass Fraction of Cloud Condensed Water in Air Due To Advection" uid="tendency_of_mass_fraction_of_cloud_condensed_water_in_air_due_to_advection" units="s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="TendencyOfMassFractionOfCloudIceInAir" title="Tendency of Mass Fraction of Cloud Ice in Air" uid="tendency_of_mass_fraction_of_cloud_ice_in_air" units="s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="TendencyOfMassFractionOfCloudIceInAirDueToAdvection" title="Tendency of Mass Fraction of Cloud Ice in Air Due To Advection" uid="tendency_of_mass_fraction_of_cloud_ice_in_air_due_to_advection" units="s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="TendencyOfMassFractionOfCloudIceInAirDueToDiffusion" title="Tendency of Mass Fraction of Cloud Ice in Air Due To Diffusion" uid="tendency_of_mass_fraction_of_cloud_ice_in_air_due_to_diffusion" units="s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="TendencyOfMassFractionOfCloudLiquidWaterInAir" title="Tendency of Mass Fraction of Cloud Liquid Water in Air" uid="tendency_of_mass_fraction_of_cloud_liquid_water_in_air" units="s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="TendencyOfMassFractionOfCloudLiquidWaterInAirDueToAdvection" title="Tendency of Mass Fraction of Cloud Liquid Water in Air Due To Advection" uid="tendency_of_mass_fraction_of_cloud_liquid_water_in_air_due_to_advection" units="s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X)." label="TendencyOfMassFractionOfCloudLiquidWaterInAirDueToDiffusion" title="Tendency of Mass Fraction of Cloud Liquid Water in Air Due To Diffusion" uid="tendency_of_mass_fraction_of_cloud_liquid_water_in_air_due_to_diffusion" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convectionschemes).  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;condensed_water&quot; means liquid and ice." label="TendencyOfMassFractionOfStratiformCloudCondensedWaterInAir" title="Tendency of Mass Fraction of Stratiform Cloud Condensed Water in Air" uid="tendency_of_mass_fraction_of_stratiform_cloud_condensed_water_in_air" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;condensed_water&quot; means liquid and ice." label="TendencyOfMassFractionOfStratiformCloudCondensedWaterInAirDueToAdvection" title="Tendency of Mass Fraction of Stratiform Cloud Condensed Water in Air Due To Advection" uid="tendency_of_mass_fraction_of_stratiform_cloud_condensed_water_in_air_due_to_advection" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Autoconversion is the process of collision and coalescence which results in the formation of precipitation particles from cloud water droplets or ice crystals. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;condensed_water&quot; means liquid and ice." label="TendencyOfMassFractionOfStratiformCloudCondensedWaterInAirDueToAutoconversionToRain" title="Tendency of Mass Fraction of Stratiform Cloud Condensed Water in Air Due To Autoconversion To Rain" uid="tendency_of_mass_fraction_of_stratiform_cloud_condensed_water_in_air_due_to_autoconversion_to_rain" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Autoconversion is the process of collision and coalescence which results in the formation of precipitation particles from cloud water droplets or ice crystals. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;condensed_water&quot; means liquid and ice." label="TendencyOfMassFractionOfStratiformCloudCondensedWaterInAirDueToAutoconversionToSnow" title="Tendency of Mass Fraction of Stratiform Cloud Condensed Water in Air Due To Autoconversion To Snow" uid="tendency_of_mass_fraction_of_stratiform_cloud_condensed_water_in_air_due_to_autoconversion_to_snow" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convectionschemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;condensed_water&quot; means liquid and ice." label="TendencyOfMassFractionOfStratiformCloudCondensedWaterInAirDueToBoundaryLayerMixing" title="Tendency of Mass Fraction of Stratiform Cloud Condensed Water in Air Due To Boundary Layer Mixing" uid="tendency_of_mass_fraction_of_stratiform_cloud_condensed_water_in_air_due_to_boundary_layer_mixing" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.  In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes). The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. 'cloud_microphysics' is the sum of many cloud processes such as condensation, evaporation, homogeneous nucleation, heterogeneous nucleation, deposition, sublimation, the Bergeron-Findeisen process, riming, accretion, aggregationand icefall.  The precise list of processes that are included in 'cloud_microphysics' canvary between models. Where possible, the data variable should be accompanied by a complete description of the processes included, for example, by using a comment attribute. Standard names also exist to describe the tendencies due to the separate processes. &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;condensed_water&quot; means liquid and ice." label="TendencyOfMassFractionOfStratiformCloudCondensedWaterInAirDueToCloudMicrophysics" title="Tendency of Mass Fraction of Stratiform Cloud Condensed Water in Air Due To Cloud Microphysics" uid="tendency_of_mass_fraction_of_stratiform_cloud_condensed_water_in_air_due_to_cloud_microphysics" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Evaporation is the conversion of liquid or solid into vapor.  (The conversion of solid alone into vapor is called &quot;sublimation&quot;.) Condensation is the conversion of vapor into liquid. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;condensed_water&quot; means liquid and ice." label="TendencyOfMassFractionOfStratiformCloudCondensedWaterInAirDueToCondensationAndEvaporation" title="Tendency of Mass Fraction of Stratiform Cloud Condensed Water in Air Due To Condensation And Evaporation" uid="tendency_of_mass_fraction_of_stratiform_cloud_condensed_water_in_air_due_to_condensation_and_evaporation" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;condensed_water&quot; means liquid and ice." label="TendencyOfMassFractionOfStratiformCloudCondensedWaterInAirDueToIcefall" title="Tendency of Mass Fraction of Stratiform Cloud Condensed Water in Air Due To Icefall" uid="tendency_of_mass_fraction_of_stratiform_cloud_condensed_water_in_air_due_to_icefall" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convectionschemes).  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAir" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Accretion is the growth of a hydrometeor by collision with cloud droplets or ice crystals. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToAccretionToSnow" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Accretion To Snow" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_accretion_to_snow" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToAdvection" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Advection" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_advection" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Aggregation is the clumping together of frozen cloud particles to produce snowflakes. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToAggregation" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Aggregation" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_aggregation" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convectionschemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. The Bergeron-Findeisen process is the conversion of cloud liquid water to cloud ice arising from the fact that water vapor has a lower equilibrium vapor pressure with respect to ice than it has with respect to liquid water at the same subfreezing temperature. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToBergeronFindeisenProcessFromCloudLiquid" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Bergeron Findeisen Process From Cloud Liquid" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_bergeron_findeisen_process_from_cloud_liquid" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convectionschemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToBoundaryLayerMixing" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Boundary Layer Mixing" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_boundary_layer_mixing" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.  In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes). The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. 'cloud_microphysics' is the sum of many cloud processes such as condensation, evaporation, homogeneous nucleation, heterogeneous nucleation, deposition, sublimation, the Bergeron-Findeisen process, riming, accretion, aggregationand icefall.  The precise list of processes that are included in 'cloud_microphysics' canvary between models. Where possible, the data variable should be accompanied by a complete description of the processes included, for example, by using a comment attribute. Standard names also exist to describe the tendencies due to the separate processes. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToCloudMicrophysics" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Cloud Microphysics" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_cloud_microphysics" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToConvectiveDetrainment" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Convective Detrainment" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_convective_detrainment" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Sublimation is the conversion of solid into vapor. Deposition is the opposite of sublimation, i.e. it is the conversion of vapor into solid.  Deposition is distinct from the processes of dry deposition and wet deposition of atmospheric aerosol particles, which are referred to in some standard names. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToDepositionAndSublimation" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Deposition And Sublimation" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_deposition_and_sublimation" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Evaporation is the conversion of liquid or solid into vapor.  (The conversion of solid alone into vapor is called &quot;sublimation&quot;.)  In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToEvaporationOfMeltingIce" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Evaporation of Melting Ice" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_evaporation_of_melting_ice" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a   single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Heterogeneous nucleation occurs when a small particle of a substance other than water acts as a freezing or condensation nucleus." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToHeterogeneousNucleationFromCloudLiquidWater" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Heterogeneous Nucleation From Cloud Liquid Water" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_heterogeneous_nucleation_from_cloud_liquid_water" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a   single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Heterogeneous nucleation occurs when a small particle of a substance other than water acts as a freezing or condensation nucleus." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToHeterogeneousNucleationFromWaterVapor" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Heterogeneous Nucleation From Water Vapor" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_heterogeneous_nucleation_from_water_vapor" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a   single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Homogeneous nucleation occurs when a small number of water molecules combine to form a freezing or condensation nucleus." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToHomogeneousNucleation" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Homogeneous Nucleation" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_homogeneous_nucleation" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToIcefall" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Icefall" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_icefall" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToMeltingToCloudLiquidWater" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Melting To Cloud Liquid Water" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_melting_to_cloud_liquid_water" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToMeltingToRain" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Melting To Rain" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_melting_to_rain" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Riming is the rapid freezing of supercooled water onto a surface. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToRimingFromCloudLiquidWater" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Riming From Cloud Liquid Water" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_riming_from_cloud_liquid_water" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Riming is the rapid freezing of supercooled water onto a surface. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudIceInAirDueToRimingFromRain" title="Tendency of Mass Fraction of Stratiform Cloud Ice in Air Due To Riming From Rain" uid="tendency_of_mass_fraction_of_stratiform_cloud_ice_in_air_due_to_riming_from_rain" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convectionschemes).  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAir" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Accretion is the growth of a hydrometeor by collision with cloud droplets or ice crystals. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToAccretionToRain" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Accretion To Rain" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_accretion_to_rain" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Accretion is the growth of a hydrometeor by collision with cloud droplets or ice crystals. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToAccretionToSnow" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Accretion To Snow" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_accretion_to_snow" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToAdvection" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Advection" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_advection" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Autoconversion is the process of collision and coalescence which results in the formation of precipitation particles from cloud water droplets or ice crystals. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToAutoconversion" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Autoconversion" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_autoconversion" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'.  In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. The Bergeron-Findeisen process is the conversion of cloud liquid water to cloud ice arising from the fact that water vapor has a lower equilibrium vapor pressure with respect to ice than it has with respect to liquid water at the same subfreezing temperature. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToBergeronFindeisenProcessToCloudIce" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Bergeron Findeisen Process To Cloud Ice" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_bergeron_findeisen_process_to_cloud_ice" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convectionschemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToBoundaryLayerMixing" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Boundary Layer Mixing" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_boundary_layer_mixing" units="s-1"/>
<item description="'Mass fraction' is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convectionschemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. 'cloud_microphysics' is the sum of many cloud processes such as condensation, evaporation, homogeneous nucleation, heterogeneous nucleation, deposition, sublimation, the Bergeron-Findeisen process, riming, accretion, aggregationand icefall.  The precise list of processes that are included in 'cloud_microphysics' canvary between models. Where possible, the data variable should be accompanied by a complete description of the processes included, for example, by using a comment attribute. Standard names also exist to describe the tendencies due to the separate processes.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToCloudMicrophysics" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Cloud Microphysics" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_cloud_microphysics" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Evaporation is the conversion of liquid or solid into vapor. Condensation is the conversion of vapor into liquid. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToCondensationAndEvaporation" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Condensation And Evaporation" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_condensation_and_evaporation" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Evaporation is the conversion of liquid or solid into vapor. Condensation is the conversion of vapor into liquid. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToCondensationAndEvaporationFromBoundaryLayerMixing" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Condensation And Evaporation From Boundary Layer Mixing" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_condensation_and_evaporation_from_boundary_layer_mixing" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Evaporation is the conversion of liquid or solid into vapor. Condensation is the conversion of vapor into liquid. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToCondensationAndEvaporationFromConvection" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Condensation And Evaporation From Convection" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_condensation_and_evaporation_from_convection" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Evaporation is the conversion of liquid or solid into vapor. Condensation is the conversion of vapor into liquid. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;longwave&quot; means longwave radiation." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToCondensationAndEvaporationFromLongwaveHeating" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Condensation And Evaporation From Longwave Heating" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_condensation_and_evaporation_from_longwave_heating" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Evaporation is the conversion of liquid or solid into vapor. Condensation is the conversion of vapor into liquid. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToCondensationAndEvaporationFromPressureChange" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Condensation And Evaporation From Pressure Change" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_condensation_and_evaporation_from_pressure_change" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Evaporation is the conversion of liquid or solid into vapor.  In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;shortwave&quot; means shortwave radiation." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToCondensationAndEvaporationFromShortwaveHeating" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Condensation And Evaporation From Shortwave Heating" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_condensation_and_evaporation_from_shortwave_heating" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Evaporation is the conversion of liquid or solid into vapor. Condensation is the conversion of vapor into liquid. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToCondensationAndEvaporationFromTurbulence" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Condensation And Evaporation From Turbulence" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_condensation_and_evaporation_from_turbulence" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToConvectiveDetrainment" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Convective Detrainment" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_convective_detrainment" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a   single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time. Heterogeneous nucleation occurs when a small particle of a substance other than water acts asa freezing or condensation nucleus." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToHeterogeneousNucleation" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Heterogeneous Nucleation" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_heterogeneous_nucleation" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, whereX is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a   single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Homogeneous nucleation occurs when a small number of water molecules combine to form a freezing or condensation nucleus." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToHomogeneousNucleation" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Homogeneous Nucleation" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_homogeneous_nucleation" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToMeltingFromCloudIce" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Melting From Cloud Ice" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_melting_from_cloud_ice" units="s-1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. Riming is the rapid freezing of supercooled water onto a surface. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes).  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMassFractionOfStratiformCloudLiquidWaterInAirDueToRiming" title="Tendency of Mass Fraction of Stratiform Cloud Liquid Water in Air Due To Riming" uid="tendency_of_mass_fraction_of_stratiform_cloud_liquid_water_in_air_due_to_riming" units="s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;middle_atmosphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere and stratosphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of carbon monoxide is CO." label="TendencyOfMiddleAtmosphereMolesOfCarbonMonoxide" title="Tendency of Middle Atmosphere Moles of Carbon Monoxide" uid="tendency_of_middle_atmosphere_moles_of_carbon_monoxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;middle_atmosphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere and stratosphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of HCC140a is CH3CCl3.  The IUPAC name for HCC 140a is 1,1,1-trichloroethane." label="TendencyOfMiddleAtmosphereMolesOfHcc140a" title="Tendency of Middle Atmosphere Moles of Hcc140a" uid="tendency_of_middle_atmosphere_moles_of_hcc140a" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;middle_atmosphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere and stratosphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of methane is CH4." label="TendencyOfMiddleAtmosphereMolesOfMethane" title="Tendency of Middle Atmosphere Moles of Methane" uid="tendency_of_middle_atmosphere_moles_of_methane" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;middle_atmosphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere and stratosphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of methyl bromide is CH3Br." label="TendencyOfMiddleAtmosphereMolesOfMethylBromide" title="Tendency of Middle Atmosphere Moles of Methyl Bromide" uid="tendency_of_middle_atmosphere_moles_of_methyl_bromide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;middle_atmosphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere and stratosphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of methyl chloride is CH3Cl." label="TendencyOfMiddleAtmosphereMolesOfMethylChloride" title="Tendency of Middle Atmosphere Moles of Methyl Chloride" uid="tendency_of_middle_atmosphere_moles_of_methyl_chloride" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;middle_atmosphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere and stratosphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of molecular hydrogen is H2." label="TendencyOfMiddleAtmosphereMolesOfMolecularHydrogen" title="Tendency of Middle Atmosphere Moles of Molecular Hydrogen" uid="tendency_of_middle_atmosphere_moles_of_molecular_hydrogen" units="mol s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Aragonite is a mineral that is a polymorph of calcium carbonate. The chemical formula of aragonite is CaCO3. Standard names also exist for calcite, another polymorph of calcium carbonate." label="TendencyOfMoleConcentrationOfAragoniteExpressedAsCarbonInSeaWaterDueToBiologicalProduction" title="Tendency of Mole Concentration of Aragonite Expressed As Carbon in Sea Water Due To Biological Production" uid="tendency_of_mole_concentration_of_aragonite_expressed_as_carbon_in_sea_water_due_to_biological_production" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Aragonite is a mineral that is a polymorph of calcium carbonate. The chemical formula of aragonite is CaCO3. Standard names also exist for calcite, another polymorph of calcium carbonate." label="TendencyOfMoleConcentrationOfAragoniteExpressedAsCarbonInSeaWaterDueToDissolution" title="Tendency of Mole Concentration of Aragonite Expressed As Carbon in Sea Water Due To Dissolution" uid="tendency_of_mole_concentration_of_aragonite_expressed_as_carbon_in_sea_water_due_to_dissolution" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Calcite is a mineral that is a polymorph of calcium carbonate. Thechemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate." label="TendencyOfMoleConcentrationOfCalciteExpressedAsCarbonInSeaWaterDueToBiologicalProduction" title="Tendency of Mole Concentration of Calcite Expressed As Carbon in Sea Water Due To Biological Production" uid="tendency_of_mole_concentration_of_calcite_expressed_as_carbon_in_sea_water_due_to_biological_production" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Calcite is a mineral that is a polymorph of calcium carbonate. Thechemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate." label="TendencyOfMoleConcentrationOfCalciteExpressedAsCarbonInSeaWaterDueToDissolution" title="Tendency of Mole Concentration of Calcite Expressed As Carbon in Sea Water Due To Dissolution" uid="tendency_of_mole_concentration_of_calcite_expressed_as_carbon_in_sea_water_due_to_dissolution" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Dissolved inorganic carbon&quot; describes a family of chemical species in solution, including carbon dioxide, carbonic acid and the carbonate and bicarbonate anions. &quot;Dissolved inorganic carbon&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfMoleConcentrationOfDissolvedInorganicCarbonInSeaWaterDueToBiologicalProcesses" title="Tendency of Mole Concentration of Dissolved Inorganic Carbon in Sea Water Due To Biological Processes" uid="tendency_of_mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_due_to_biological_processes" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Dissolved inorganic iron&quot; means iron ions, in oxidation states of both Fe2+ and Fe3+, in solution." label="TendencyOfMoleConcentrationOfDissolvedInorganicIronInSeaWaterDueToBiologicalProcesses" title="Tendency of Mole Concentration of Dissolved Inorganic Iron in Sea Water Due To Biological Processes" uid="tendency_of_mole_concentration_of_dissolved_inorganic_iron_in_sea_water_due_to_biological_processes" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Inorganic nitrogen&quot; describes a family of chemical species which, in an ocean model, usually includes nitrite, nitrate and ammonium which act as nitrogennutrients. &quot;Inorganic nitrogen&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfMoleConcentrationOfDissolvedInorganicNitrogenInSeaWaterDueToBiologicalProcesses" title="Tendency of Mole Concentration of Dissolved Inorganic Nitrogen in Sea Water Due To Biological Processes" uid="tendency_of_mole_concentration_of_dissolved_inorganic_nitrogen_in_sea_water_due_to_biological_processes" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Dissolved inorganic phosphorus/phosphate means phosphate ions in solution." label="TendencyOfMoleConcentrationOfDissolvedInorganicPhosphorusInSeaWaterDueToBiologicalProcesses" title="Tendency of Mole Concentration of Dissolved Inorganic Phosphorus in Sea Water Due To Biological Processes" uid="tendency_of_mole_concentration_of_dissolved_inorganic_phosphorus_in_sea_water_due_to_biological_processes" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Dissolved inorganic silicon/silicate means silicate ions in solution." label="TendencyOfMoleConcentrationOfDissolvedInorganicSiliconInSeaWaterDueToBiologicalProcesses" title="Tendency of Mole Concentration of Dissolved Inorganic Silicon in Sea Water Due To Biological Processes" uid="tendency_of_mole_concentration_of_dissolved_inorganic_silicon_in_sea_water_due_to_biological_processes" units="mol m-3 s-1"/>
<item description="Dissolution, remineralization and desorption of iron back to the dissolved phase  'Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  namedby omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfDissolvedIronInSeaWaterDueToDissolutionFromInorganicParticles" title="Tendency of Mole Concentration of Dissolved Iron in Sea Water Due To Dissolution From Inorganic Particles" uid="tendency_of_mole_concentration_of_dissolved_iron_in_sea_water_due_to_dissolution_from_inorganic_particles" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis.  'Grazing of phytoplankton' means the grazing of phytoplankton by zooplankton." label="TendencyOfMoleConcentrationOfDissolvedIronInSeaWaterDueToGrazingOfPhytoplankton" title="Tendency of Mole Concentration of Dissolved Iron in Sea Water Due To Grazing of Phytoplankton" uid="tendency_of_mole_concentration_of_dissolved_iron_in_sea_water_due_to_grazing_of_phytoplankton" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfDissolvedIronInSeaWaterDueToScavengingByInorganicParticles" title="Tendency of Mole Concentration of Dissolved Iron in Sea Water Due To Scavenging by Inorganic Particles" uid="tendency_of_mole_concentration_of_dissolved_iron_in_sea_water_due_to_scavenging_by_inorganic_particles" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfIronInSeaWaterDueToBiologicalProduction" title="Tendency of Mole Concentration of Iron in Sea Water Due To Biological Production" uid="tendency_of_mole_concentration_of_iron_in_sea_water_due_to_biological_production" units="mol m-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. &quot;Grazing of phytoplankton&quot; means the grazing of phytoplankton by zooplankton." label="TendencyOfMoleConcentrationOfParticulateOrganicMatterExpressedAsCarbonInSeaWaterDueToGrazingOfPhytoplankton" title="Tendency of Mole Concentration of Particulate Organic Matter Expressed As Carbon in Sea Water Due To Grazing of Phytoplankton" uid="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_grazing_of_phytoplankton" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. Net primary production is the excess of gross primary production (the rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example,  photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. In the oceans, carbon production per unit volume is often found at a number of depths at a given horizontal location. That quantity can then be integrated to calculate production per unit area at the location. Standard names for production per unit area use the term &quot;productivity&quot;. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfParticulateOrganicMatterExpressedAsCarbonInSeaWaterDueToNetPrimaryProduction" title="Tendency of Mole Concentration of Particulate Organic Matter Expressed As Carbon in Sea Water Due To Net Primary Production" uid="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production" units="mol m-3 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. &quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (the rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example,  photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. In the oceans, carbon production per unit volume is often found at a number of depths at a given horizontal location. That quantity can then be integrated to calculate production per unit area at the location. Standard names for production per unit area use the term &quot;productivity&quot;. &quot;Calcareous phytoplankton&quot; are phytoplankton that produce calcite. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate.   &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfParticulateOrganicMatterExpressedAsCarbonInSeaWaterDueToNetPrimaryProductionByCalcareousPhytoplankton" title="Tendency of Mole Concentration of Particulate Organic Matter Expressed As Carbon in Sea Water Due To Net Primary Production by Calcareous Phytoplankton" uid="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_calcareous_phytoplankton" units="mol m-3 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y. A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. &quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (the rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example,  photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. In the oceans, carbon production per unit volume is often found at a number of depths at a given horizontal location. That quantity can then be integrated to calculate production per unit area at the location. Standard names for production per unit area use the term &quot;productivity&quot;. Diatoms are single-celled phytoplankton with an external skeleton made of silica. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfParticulateOrganicMatterExpressedAsCarbonInSeaWaterDueToNetPrimaryProductionByDiatoms" title="Tendency of Mole Concentration of Particulate Organic Matter Expressed As Carbon in Sea Water Due To Net Primary Production by Diatoms" uid="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_diatoms" units="mol m-3 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. &quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (the rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example,  photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. In the oceans, carbon production per unit volume is often found at a number of depths at a given horizontal location. That quantity can then be integrated to calculate production per unit area at the location. Standard names for production per unit area use the term &quot;productivity&quot;. In ocean modelling, diazotrophs are phytoplankton of the phylum cyanobacteria distinct from other phytoplankton groups in their ability to fix nitrogen gas in addition to nitrate and ammonium. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfParticulateOrganicMatterExpressedAsCarbonInSeaWaterDueToNetPrimaryProductionByDiazotrophs" title="Tendency of Mole Concentration of Particulate Organic Matter Expressed As Carbon in Sea Water Due To Net Primary Production by Diazotrophs" uid="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_diazotrophs" units="mol m-3 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. &quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (the rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example,  photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. In the oceans, carbon production per unit volume is often found at a number of depths at a given horizontal location. That quantity can then be integrated to calculate production per unit area at the location. Standard names for production per unit area use the term &quot;productivity&quot;. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. &quot;Miscellaneous phytoplankton&quot; are all those phytoplankton that are not diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton or other seperately named components of the phytoplankton population. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfParticulateOrganicMatterExpressedAsCarbonInSeaWaterDueToNetPrimaryProductionByMiscellaneousPhytoplankton" title="Tendency of Mole Concentration of Particulate Organic Matter Expressed As Carbon in Sea Water Due To Net Primary Production by Miscellaneous Phytoplankton" uid="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_miscellaneous_phytoplankton" units="mol m-3 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (the rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example,  photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. In the oceans, carbon production per unit volume is often found at a number of depths at a given horizontal location. That quantity can then be integrated to calculate production per unit area at the location. Standard names for production per unit area use the term &quot;productivity&quot;. Picophytoplankton are phytoplankton of less than 2 micrometers in size. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfParticulateOrganicMatterExpressedAsCarbonInSeaWaterDueToNetPrimaryProductionByPicophytoplankton" title="Tendency of Mole Concentration of Particulate Organic Matter Expressed As Carbon in Sea Water Due To Net Primary Production by Picophytoplankton" uid="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_picophytoplankton" units="mol m-3 s-1"/>
<item description="Mole concentration means number of moles per unit volume, also called &quot;molarity&quot;, and is used in the construction &quot;mole_concentration_of_X_in_Y&quot;, where X is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Nitrate utilization&quot; means net primary production of carbon by phytoplankton based on nitrate alone. &quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (the rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. In the oceans, carbon production per unit volume is often found at a number of depths at a given horizontal location. That quantity can then be integrated to calculate production per unit area at the location. Standard names for production per unit area use the term &quot;productivity&quot;. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for the nitrate anion is NO3-." label="TendencyOfMoleConcentrationOfParticulateOrganicMatterExpressedAsCarbonInSeaWaterDueToNitrateUtilization" title="Tendency of Mole Concentration of Particulate Organic Matter Expressed As Carbon in Sea Water Due To Nitrate Utilization" uid="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_nitrate_utilization" units="mol m-3 s-1"/>
<item description="'Mole concentration' means number of moles per unit volume, also called&quot;molarity&quot;, and is used in the construction mole_concentration_of_X_in_Y, whereX is a material constituent of Y.  A chemical or biological species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfMoleConcentrationOfSiliconInSeaWaterDueToBiologicalProduction" title="Tendency of Mole Concentration of Silicon in Sea Water Due To Biological Production" uid="tendency_of_mole_concentration_of_silicon_in_sea_water_due_to_biological_production" units="mol m-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="TendencyOfNorthwardWind" title="Tendency of Northward Wind" uid="tendency_of_northward_wind" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="TendencyOfNorthwardWindDueToAdvection" title="Tendency of Northward Wind Due To Advection" uid="tendency_of_northward_wind_due_to_advection" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="TendencyOfNorthwardWindDueToConvection" title="Tendency of Northward Wind Due To Convection" uid="tendency_of_northward_wind_due_to_convection" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="TendencyOfNorthwardWindDueToDiffusion" title="Tendency of Northward Wind Due To Diffusion" uid="tendency_of_northward_wind_due_to_diffusion" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="TendencyOfNorthwardWindDueToGravityWaveDrag" title="Tendency of Northward Wind Due To Gravity Wave Drag" uid="tendency_of_northward_wind_due_to_gravity_wave_drag" units="m s-2"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanBarotropicStreamfunction" title="Tendency of Ocean Barotropic Streamfunction" uid="tendency_of_ocean_barotropic_streamfunction" units="m3 s-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Bolus transport in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field." label="TendencyOfOceanEddyKineticEnergyContentDueToBolusTransport" title="Tendency of Ocean Eddy Kinetic Energy Content Due To Bolus Transport" uid="tendency_of_ocean_eddy_kinetic_energy_content_due_to_bolus_transport" units="W m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Aragonite is a mineral that is a polymorph of calcium carbonate. The chemical formula of aragonite is CaCO3. Standard names also exist for calcite, another polymorph of calcium carbonate." label="TendencyOfOceanMoleContentOfAragoniteExpressedAsCarbonDueToBiologicalProduction" title="Tendency of Ocean Mole Content of Aragonite Expressed As Carbon Due To Biological Production" uid="tendency_of_ocean_mole_content_of_aragonite_expressed_as_carbon_due_to_biological_production" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The phrase 'expressed_as' is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate." label="TendencyOfOceanMoleContentOfCalciteExpressedAsCarbonDueToBiologicalProduction" title="Tendency of Ocean Mole Content of Calcite Expressed As Carbon Due To Biological Production" uid="tendency_of_ocean_mole_content_of_calcite_expressed_as_carbon_due_to_biological_production" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of termswhich together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanMoleContentOfCarbonDueToRunoffAndSedimentDissolution" title="Tendency of Ocean Mole Content of Carbon Due To Runoff And Sediment Dissolution" uid="tendency_of_ocean_mole_content_of_carbon_due_to_runoff_and_sediment_dissolution" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is asingle term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanMoleContentOfCarbonDueToSedimentation" title="Tendency of Ocean Mole Content of Carbon Due To Sedimentation" uid="tendency_of_ocean_mole_content_of_carbon_due_to_sedimentation" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Dissolved inorganic carbon&quot; describes a family of chemical species in solution, including carbon dioxide, carbonic acid and the carbonate and bicarbonate anions. &quot;Dissolved inorganic carbon&quot; isthe term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfOceanMoleContentOfDissolvedInorganicCarbon" title="Tendency of Ocean Mole Content of Dissolved Inorganic Carbon" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_carbon" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is asingle term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Dissolved inorganic carbon&quot; describes a family of chemical species in solution, including carbon dioxide, carbonic acid and the carbonate and bicarbonate anions. &quot;Dissolved inorganic carbon&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfOceanMoleContentOfDissolvedInorganicCarbonDueToBiologicalProcesses" title="Tendency of Ocean Mole Content of Dissolved Inorganic Carbon Due To Biological Processes" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_carbon_due_to_biological_processes" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Dissolved inorganic iron&quot; means iron ions, in oxidation states of both Fe2+ and Fe3+, in solution." label="TendencyOfOceanMoleContentOfDissolvedInorganicIron" title="Tendency of Ocean Mole Content of Dissolved Inorganic Iron" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_iron" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is asingle term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Dissolved inorganic iron&quot; means iron ions, in oxidation states of both Fe2+ and Fe3+, in solution." label="TendencyOfOceanMoleContentOfDissolvedInorganicIronDueToBiologicalProcesses" title="Tendency of Ocean Mole Content of Dissolved Inorganic Iron Due To Biological Processes" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_iron_due_to_biological_processes" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Inorganic nitrogen&quot; describes a family of chemical species which, in an ocean model, usually includes nitrite, nitrate and ammonium which act as nitrogen nutrients. &quot;Inorganic nitrogen&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variableshould be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfOceanMoleContentOfDissolvedInorganicNitrogen" title="Tendency of Ocean Mole Content of Dissolved Inorganic Nitrogen" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_nitrogen" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Inorganic nitrogen&quot; describes a family of chemical species which, in an ocean model, usually includes nitrite, nitrate and ammonium which act as nitrogen nutrients. &quot;Inorganic nitrogen&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfOceanMoleContentOfDissolvedInorganicNitrogenDueToBiologicalProcesses" title="Tendency of Ocean Mole Content of Dissolved Inorganic Nitrogen Due To Biological Processes" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_nitrogen_due_to_biological_processes" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Dissolved inorganic phosphorus/phosphate&quot; means phosphate ions in solution.  The chemical formula of the phosphate anion is PO4 with a charge of minus three." label="TendencyOfOceanMoleContentOfDissolvedInorganicPhosphorus" title="Tendency of Ocean Mole Content of Dissolved Inorganic Phosphorus" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_phosphorus" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is asingle term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Dissolved inorganic phosphorus/phosphate&quot; means phosphate ions in solution.  The chemical formula of the phosphate anion is PO4 with a charge of minus three." label="TendencyOfOceanMoleContentOfDissolvedInorganicPhosphorusDueToBiologicalProcesses" title="Tendency of Ocean Mole Content of Dissolved Inorganic Phosphorus Due To Biological Processes" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_phosphorus_due_to_biological_processes" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Dissolved inorganic silicon/silicate&quot; means silicate ions in solution." label="TendencyOfOceanMoleContentOfDissolvedInorganicSilicon" title="Tendency of Ocean Mole Content of Dissolved Inorganic Silicon" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_silicon" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is asingle term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Dissolved inorganic silicon/silicate&quot; means silicate ions in solution." label="TendencyOfOceanMoleContentOfDissolvedInorganicSiliconDueToBiologicalProcesses" title="Tendency of Ocean Mole Content of Dissolved Inorganic Silicon Due To Biological Processes" uid="tendency_of_ocean_mole_content_of_dissolved_inorganic_silicon_due_to_biological_processes" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is asingle term in a sum of terms which together compose the general quantity  named by omitting the phrase. 'Denitrification' is the conversion of nitrate into gasesous compounds such as nitric oxide, nitrous oxide and molecular nitrogen which are then emitted to the atmosphere.  'Sedimentation' is the sinking of particulate matter to the floor of a body of water. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanMoleContentOfElementalNitrogenDueToDenitrificationAndSedimentation" title="Tendency of Ocean Mole Content of Elemental Nitrogen Due To Denitrification And Sedimentation" uid="tendency_of_ocean_mole_content_of_elemental_nitrogen_due_to_denitrification_and_sedimentation" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is asingle term in a sum of terms which together compose the general quantity  named by omitting the phrase. Deposition of nitrogen into the ocean is the sum of dry and wet depositionof nitrogen species onto the ocean surface from the atmosphere.  'Nitrogen fixation' means the production of ammonia from nitrogen gas. Organisms that fix nitrogen are termed 'diazotrophs'. Diazotrophic phytoplankton can fix atmospheric nitrogen, thus increasing the content of nitrogen in the ocean. Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage.&quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanMoleContentOfElementalNitrogenDueToDepositionAndFixationAndRunoff" title="Tendency of Ocean Mole Content of Elemental Nitrogen Due To Deposition And Fixation And Runoff" uid="tendency_of_ocean_mole_content_of_elemental_nitrogen_due_to_deposition_and_fixation_and_runoff" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is asingle term in a sum of terms which together compose the general quantity  named by omitting the phrase.  'Nitrogen fixation' means the production of ammonia from nitrogen gas. Organisms that fix nitrogen are termed 'diazotrophs'. Diazotrophic phytoplankton can fix atmospheric nitrogen, thus increasing the content of nitrogen in the ocean. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanMoleContentOfElementalNitrogenDueToFixation" title="Tendency of Ocean Mole Content of Elemental Nitrogen Due To Fixation" uid="tendency_of_ocean_mole_content_of_elemental_nitrogen_due_to_fixation" units="mol m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Inorganic carbon&quot; describes a family of chemical species and is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute." label="TendencyOfOceanMoleContentOfInorganicCarbon" title="Tendency of Ocean Mole Content of Inorganic Carbon" uid="tendency_of_ocean_mole_content_of_inorganic_carbon" units="mol m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Inorganic carbon&quot; describes a family of chemical species and is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage." label="TendencyOfOceanMoleContentOfInorganicCarbonDueToRunoffAndSedimentDissolution" title="Tendency of Ocean Mole Content of Inorganic Carbon Due To Runoff And Sediment Dissolution" uid="tendency_of_ocean_mole_content_of_inorganic_carbon_due_to_runoff_and_sediment_dissolution" units="mol m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Inorganic carbon&quot; describes a family of chemical species and is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Sedimentation&quot; is the sinking of particulate matter to the floor of a body of water." label="TendencyOfOceanMoleContentOfInorganicCarbonDueToSedimentation" title="Tendency of Ocean Mole Content of Inorganic Carbon Due To Sedimentation" uid="tendency_of_ocean_mole_content_of_inorganic_carbon_due_to_sedimentation" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanMoleContentOfIronDueToBiologicalProduction" title="Tendency of Ocean Mole Content of Iron Due To Biological Production" uid="tendency_of_ocean_mole_content_of_iron_due_to_biological_production" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of termswhich together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanMoleContentOfIronDueToDepositionAndRunoffAndSedimentDissolution" title="Tendency of Ocean Mole Content of Iron Due To Deposition And Runoff And Sediment Dissolution" uid="tendency_of_ocean_mole_content_of_iron_due_to_deposition_and_runoff_and_sediment_dissolution" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanMoleContentOfIronDueToSedimentation" title="Tendency of Ocean Mole Content of Iron Due To Sedimentation" uid="tendency_of_ocean_mole_content_of_iron_due_to_sedimentation" units="mol m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Organic carbon&quot; describes a family of chemical species and is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Runoff is the liquid water which drains from land. If not specified, &quot;runoff&quot; refers to the sum of surface runoff and subsurface drainage." label="TendencyOfOceanMoleContentOfOrganicCarbonDueToRunoffAndSedimentDissolution" title="Tendency of Ocean Mole Content of Organic Carbon Due To Runoff And Sediment Dissolution" uid="tendency_of_ocean_mole_content_of_organic_carbon_due_to_runoff_and_sediment_dissolution" units="mol m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Organic carbon&quot; describes a family of chemical species and is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models. Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Sedimentation&quot; is the sinking of particulate matter to the floor of a body of water." label="TendencyOfOceanMoleContentOfOrganicCarbonDueToSedimentation" title="Tendency of Ocean Mole Content of Organic Carbon Due To Sedimentation" uid="tendency_of_ocean_mole_content_of_organic_carbon_due_to_sedimentation" units="mol m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="TendencyOfOceanMoleContentOfPhosphorusDueToBiologicalProduction" title="Tendency of Ocean Mole Content of Phosphorus Due To Biological Production" uid="tendency_of_ocean_mole_content_of_phosphorus_due_to_biological_production" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is asingle term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanMoleContentOfSiliconDueToBiologicalProduction" title="Tendency of Ocean Mole Content of Silicon Due To Biological Production" uid="tendency_of_ocean_mole_content_of_silicon_due_to_biological_production" units="mol m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanPotentialEnergyContent" title="Tendency of Ocean Potential Energy Content" uid="tendency_of_ocean_potential_energy_content" units="W m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)  &quot;Due to background&quot; means caused by a time invariant imposed field which may be either constant over the globe or spatially varying, depending on the ocean model used. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanPotentialEnergyContentDueToBackground" title="Tendency of Ocean Potential Energy Content Due To Background" uid="tendency_of_ocean_potential_energy_content_due_to_background" units="W m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)  &quot;Due to tides&quot; means due to all astronomical gravity changes which manifest as tides.  No distinction is made between different tidal components. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfOceanPotentialEnergyContentDueToTides" title="Tendency of Ocean Potential Energy Content Due To Tides" uid="tendency_of_ocean_potential_energy_content_due_to_tides" units="W m-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)" label="TendencyOfPotentialEnergyContentOfAtmosphereLayerDueToAdvection" title="Tendency of Potential Energy Content of Atmosphere Layer Due To Advection" uid="tendency_of_potential_energy_content_of_atmosphere_layer_due_to_advection" units="W m-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)" label="TendencyOfPotentialEnergyContentOfOceanLayerDueToConvection" title="Tendency of Potential Energy Content of Ocean Layer Due To Convection" uid="tendency_of_potential_energy_content_of_ocean_layer_due_to_convection" units="W m-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. &quot;Layer&quot; means any layer with upper and lower boundaries that have constant values in some vertical coordinate. There must be a vertical coordinate variable indicating the extent of the layer(s). If the layers are model layers, the vertical coordinate can be model_level_number, but it is recommended to specify a physical coordinate (in a scalar or auxiliary coordinate variable) as well. Potential energy is the sum of the gravitational potential energy relative to the geoid and the centripetal potential energy. (The geopotential is the specific potential energy.)" label="TendencyOfPotentialEnergyContentOfOceanLayerDueToDiffusion" title="Tendency of Potential Energy Content of Ocean Layer Due To Diffusion" uid="tendency_of_potential_energy_content_of_ocean_layer_due_to_diffusion" units="W m-2"/>
<item description="&quot;Amount&quot; means mass per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfSeaIceAmountDueToBasalMelting" title="Tendency of Sea Ice Amount Due To Basal Melting" uid="tendency_of_sea_ice_amount_due_to_basal_melting" units="kg m-2 s-1"/>
<item description="&quot;Amount&quot; means mass per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Congelation ice&quot; means the freezing of sea water onto the underside of thin, new sea ice that has been formed by small areas of frazil ice crystals joining together into a continuous layer at the sea surface.  Congelation ice forms under calm water conditions; it thickens and stabilizes the layer of sea ice and produces a smooth bottom surface." label="TendencyOfSeaIceAmountDueToCongelationIceAccumulation" title="Tendency of Sea Ice Amount Due To Congelation Ice Accumulation" uid="tendency_of_sea_ice_amount_due_to_congelation_ice_accumulation" units="kg m-2 s-1"/>
<item description="&quot;Amount&quot; means mass per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Frazil&quot; consists of needle like crystals of ice, typically between three and four millimeters in diameter, which form as sea water begins to freeze. Salt is expelled during the freezing process and frazil ice consists of nearly pure fresh water. Leads are stretches of open water within wider areas of sea ice." label="TendencyOfSeaIceAmountDueToFrazilIceAccumulationInLeads" title="Tendency of Sea Ice Amount Due To Frazil Ice Accumulation in Leads" uid="tendency_of_sea_ice_amount_due_to_frazil_ice_accumulation_in_leads" units="kg m-2 s-1"/>
<item description="&quot;Amount&quot; means mass per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  An ice floe is a flat expanse of sea ice, generally taken to be less than 10 km across.  &quot;Lateral growth of ice floe&quot; means the accumulation of ice at the extreme edges of the ice area." label="TendencyOfSeaIceAmountDueToLateralGrowthOfIceFloes" title="Tendency of Sea Ice Amount Due To Lateral Growth of Ice Floes" uid="tendency_of_sea_ice_amount_due_to_lateral_growth_of_ice_floes" units="kg m-2 s-1"/>
<item description="&quot;Amount&quot; means mass per unit area.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Snow to sea ice conversion&quot; occurs when the mass of snow accumulated on an area of sea ice is sufficient to cause the ice to become mostly submerged.  Waves can then wash over the ice and snow surface and freeze into a layer that becomes &quot;snow ice&quot;." label="TendencyOfSeaIceAmountDueToSnowConversion" title="Tendency of Sea Ice Amount Due To Snow Conversion" uid="tendency_of_sea_ice_amount_due_to_snow_conversion" units="kg m-2 s-1"/>
<item description="&quot;Amount&quot; means mass per unit area.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfSeaIceAmountDueToSurfaceMelting" title="Tendency of Sea Ice Amount Due To Surface Melting" uid="tendency_of_sea_ice_amount_due_to_surface_melting" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. Sea ice area fraction is area of the sea surface occupied by sea ice. It is also called &quot;sea ice concentration&quot;.  &quot;Sea ice dynamics&quot; refers to the motion of sea ice." label="TendencyOfSeaIceAreaFractionDueToDynamics" title="Tendency of Sea Ice Area Fraction Due To Dynamics" uid="tendency_of_sea_ice_area_fraction_due_to_dynamics" units="s-1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X.  Sea ice area fraction is area of the sea surface occupied by sea ice. It is also called &quot;sea ice concentration&quot;.  The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X with respect to time.  Sea ice &quot;ridging&quot; occurs in rough sea conditions.  The motion of the sea surface can cause areas of sea ice to deform and fold resulting in ridged upper and lower surfaces. The ridges can be as much as twenty metres thick if thick ice is deformed." label="TendencyOfSeaIceAreaFractionDueToRidging" title="Tendency of Sea Ice Area Fraction Due To Ridging" uid="tendency_of_sea_ice_area_fraction_due_to_ridging" units="s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. Sea ice area fraction is area of the sea surface occupied by sea ice. It is also called &quot;sea ice concentration&quot;.  &quot;Sea ice thermodynamics&quot; refers to the addition or subtraction of mass due to surface and basal fluxes." label="TendencyOfSeaIceAreaFractionDueToThermodynamics" title="Tendency of Sea Ice Area Fraction Due To Thermodynamics" uid="tendency_of_sea_ice_area_fraction_due_to_thermodynamics" units="s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;Sea ice dynamics&quot; refers to the motion of sea ice." label="TendencyOfSeaIceThicknessDueToDynamics" title="Tendency of Sea Ice Thickness Due To Dynamics" uid="tendency_of_sea_ice_thickness_due_to_dynamics" units="m s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfSeaIceThicknessDueToThermodynamics" title="Tendency of Sea Ice Thickness Due To Thermodynamics" uid="tendency_of_sea_ice_thickness_due_to_thermodynamics" units="m s-1"/>
<item description="Sea_level means mean sea level, which is close to the geoid in sea areas. &quot;Sea surface height&quot; is a time-varying quantity. &quot;tendency_of_X&quot; means derivative of X with respect to time. " label="TendencyOfSeaSurfaceHeightAboveSeaLevel" title="Tendency of Sea Surface Height Above Sea Level" uid="tendency_of_sea_surface_height_above_sea_level" units="m year-1"/>
<item description="'sea_water_alkalinity_expressed_as_mole_equivalent' is the total alkalinity equivalent concentration (including carbonate, nitrogen, silicate, and borate components). The specification of a physical process by the phrase due_to_process means that thequantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;tendency_of_X&quot; means derivative of X withrespect to time." label="TendencyOfSeaWaterAlkalinityExpressedAsMoleEquivalentDueToBiologicalProcesses" title="Tendency of Sea Water Alkalinity Expressed As Mole Equivalent Due To Biological Processes" uid="tendency_of_sea_water_alkalinity_expressed_as_mole_equivalent_due_to_biological_processes" units="mol m-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and normally given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="TendencyOfSeaWaterSalinity" title="Tendency of Sea Water Salinity" uid="tendency_of_sea_water_salinity" units="1e-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and normally given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="TendencyOfSeaWaterSalinityDueToAdvection" title="Tendency of Sea Water Salinity Due To Advection" uid="tendency_of_sea_water_salinity_due_to_advection" units="1e-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Bolus advection in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and normally given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="TendencyOfSeaWaterSalinityDueToBolusAdvection" title="Tendency of Sea Water Salinity Due To Bolus Advection" uid="tendency_of_sea_water_salinity_due_to_bolus_advection" units="1e-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Horizontal mixing&quot; means any horizontal transport other than by advection and bolus advection, usually represented as horizontal diffusion in ocean models. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and normally given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="TendencyOfSeaWaterSalinityDueToHorizontalMixing" title="Tendency of Sea Water Salinity Due To Horizontal Mixing" uid="tendency_of_sea_water_salinity_due_to_horizontal_mixing" units="1e-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Sea ice thermodynamics&quot; refers to the addition or subtraction of sea ice mass due to surface and basal fluxes. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and normally given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="TendencyOfSeaWaterSalinityDueToSeaIceThermodynamics" title="Tendency of Sea Water Salinity Due To Sea Ice Thermodynamics" uid="tendency_of_sea_water_salinity_due_to_sea_ice_thermodynamics" units="1e-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Vertical mixing&quot; means any vertical transport other than by advection and bolus advection, represented by a combination of vertical diffusion, turbulent mixing and convection in ocean models. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Sea water salinity is the salt content of sea water, often on the Practical Salinity Scale of 1978. However, the unqualified term 'salinity' is generic and does not necessarily imply any particular method of calculation. The units of salinity are dimensionless and normally given as 1e-3 or 0.001 i.e. parts per thousand. There are standard names for the more precisely defined salinity quantities: sea_water_knudsen_salinity, S_K (used for salinity observations between 1901 and 1966), sea_water_cox_salinity, S_C (used for salinity observations between 1967 and 1977), sea_water_practical_salinity, S_P (used for salinity observations from 1978 to the present day), sea_water_absolute_salinity, S_A, sea_water_preformed_salinity, S_*, and sea_water_reference_salinity. Practical Salinity is reported on the Practical Salinity Scale of 1978 (PSS-78), and is usually based on the electrical conductivity of sea water in observations since the 1960s. Conversion of data between the observed scales follows: S_P = (S_K - 0.03) * (1.80655 / 1.805) and S_P = S_C, however the accuracy of the latter is dependent on whether chlorinity or conductivity was used to determine the S_C value, with this inconsistency driving the development of PSS-78. The more precise standard names should be used where appropriate for both modelled and observed salinities. In particular, the use of sea_water_salinity to describe salinity observations made from 1978 onwards is now deprecated in favor of the term sea_water_practical_salinity which is the salinity quantity stored by national data centers for post-1978 observations. The only exception to this is where the observed salinities are definitely known not to be recorded on the Practical Salinity Scale. The unit &quot;parts per thousand&quot; was used for sea_water_knudsen_salinity and sea_water_cox_salinity." label="TendencyOfSeaWaterSalinityDueToVerticalMixing" title="Tendency of Sea Water Salinity Due To Vertical Mixing" uid="tendency_of_sea_water_salinity_due_to_vertical_mixing" units="1e-3 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. Sea water temperature is the in situ temperature of the sea water. For observed data, depending on the period during which the observation was made, the measured in situ temperature was recorded against standard &quot;scales&quot;. These historical scales include the International Practical Temperature Scale of 1948 (IPTS-48; 1948-1967), the International Practical Temperature Scale of 1968 (IPTS-68, Barber, 1969; 1968-1989) and the International Temperature Scale of 1990 (ITS-90, Saunders 1990; 1990 onwards). Conversion of data between these scales follows t68 = t48 - (4.4 x 10e-6) * t48(100 - t - 48); t90 = 0.99976 * t68. Observations made prior to 1948 (IPTS-48) have not been documented and therefore a conversion cannot be certain. Differences between t90 and t68 can be up to 0.01 at temperatures of 40 C and above; differences of 0.002-0.007 occur across the standard range of ocean temperatures (-10 - 30 C). The International Equation of State of Seawater 1980 (EOS-80, UNESCO, 1981) and the Practical Salinity Scale (PSS-78) were both based on IPTS-68, while the Thermodynamic Equation of Seawater 2010 (TEOS-10) is based on ITS-90. References: Barber, 1969, doi: 10.1088/0026-1394/5/2/001; UNESCO, 1981; Saunders, 1990, WOCE Newsletter, 10, September 1990." label="TendencyOfSeaWaterTemperature" title="Tendency of Sea Water Temperature" uid="tendency_of_sea_water_temperature" units="K s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Sea water temperature is the in situ temperature of the sea water. For observed data, depending on the period during which the observation was made, the measured in situ temperature was recorded against standard &quot;scales&quot;. These historical scales include the International Practical Temperature Scale of 1948 (IPTS-48; 1948-1967), the International Practical Temperature Scale of 1968 (IPTS-68, Barber, 1969; 1968-1989) and the International Temperature Scale of 1990 (ITS-90, Saunders 1990; 1990 onwards). Conversion of data between these scales follows t68 = t48 - (4.4 x 10e-6) * t48(100 - t - 48); t90 = 0.99976 * t68. Observations made prior to 1948 (IPTS-48) have not been documented and therefore a conversion cannot be certain. Differences between t90 and t68 can be up to 0.01 at temperatures of 40 C and above; differences of 0.002-0.007 occur across the standard range of ocean temperatures (-10 - 30 C). The International Equation of State of Seawater 1980 (EOS-80, UNESCO, 1981) and the Practical Salinity Scale (PSS-78) were both based on IPTS-68, while the Thermodynamic Equation of Seawater 2010 (TEOS-10) is based on ITS-90. References: Barber, 1969, doi: 10.1088/0026-1394/5/2/001; UNESCO, 1981; Saunders, 1990, WOCE Newsletter, 10, September 1990." label="TendencyOfSeaWaterTemperatureDueToAdvection" title="Tendency of Sea Water Temperature Due To Advection" uid="tendency_of_sea_water_temperature_due_to_advection" units="K s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  Bolus advection in an ocean model means the part due to a scheme representing eddy-induced effects not included in the velocity field. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Sea water temperature is the in situ temperature of the sea water. For observed data, depending on the period during which the observation was made, the measured in situ temperature was recorded against standard &quot;scales&quot;. These historical scales include the International Practical Temperature Scale of 1948 (IPTS-48; 1948-1967), the International Practical Temperature Scale of 1968 (IPTS-68, Barber, 1969; 1968-1989) and the International Temperature Scale of 1990 (ITS-90, Saunders 1990; 1990 onwards). Conversion of data between these scales follows t68 = t48 - (4.4 x 10e-6) * t48(100 - t - 48); t90 = 0.99976 * t68. Observations made prior to 1948 (IPTS-48) have not been documented and therefore a conversion cannot be certain. Differences between t90 and t68 can be up to 0.01 at temperatures of 40 C and above; differences of 0.002-0.007 occur across the standard range of ocean temperatures (-10 - 30 C). The International Equation of State of Seawater 1980 (EOS-80, UNESCO, 1981) and the Practical Salinity Scale (PSS-78) were both based on IPTS-68, while the Thermodynamic Equation of Seawater 2010 (TEOS-10) is based on ITS-90. References: Barber, 1969, doi: 10.1088/0026-1394/5/2/001; UNESCO, 1981; Saunders, 1990, WOCE Newsletter, 10, September 1990." label="TendencyOfSeaWaterTemperatureDueToBolusAdvection" title="Tendency of Sea Water Temperature Due To Bolus Advection" uid="tendency_of_sea_water_temperature_due_to_bolus_advection" units="K s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Horizontal mixing&quot; means any horizontal transport other than by advection and bolus advection, usually represented as horizontal diffusion in ocean models. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Sea water temperature is the in situ temperature of the sea water. For observed data, depending on the period during which the observation was made, the measured in situ temperature was recorded against standard &quot;scales&quot;. These historical scales include the International Practical Temperature Scale of 1948 (IPTS-48; 1948-1967), the International Practical Temperature Scale of 1968 (IPTS-68, Barber, 1969; 1968-1989) and the International Temperature Scale of 1990 (ITS-90, Saunders 1990; 1990 onwards). Conversion of data between these scales follows t68 = t48 - (4.4 x 10e-6) * t48(100 - t - 48); t90 = 0.99976 * t68. Observations made prior to 1948 (IPTS-48) have not been documented and therefore a conversion cannot be certain. Differences between t90 and t68 can be up to 0.01 at temperatures of 40 C and above; differences of 0.002-0.007 occur across the standard range of ocean temperatures (-10 - 30 C). The International Equation of State of Seawater 1980 (EOS-80, UNESCO, 1981) and the Practical Salinity Scale (PSS-78) were both based on IPTS-68, while the Thermodynamic Equation of Seawater 2010 (TEOS-10) is based on ITS-90. References: Barber, 1969, doi: 10.1088/0026-1394/5/2/001; UNESCO, 1981; Saunders, 1990, WOCE Newsletter, 10, September 1990." label="TendencyOfSeaWaterTemperatureDueToHorizontalMixing" title="Tendency of Sea Water Temperature Due To Horizontal Mixing" uid="tendency_of_sea_water_temperature_due_to_horizontal_mixing" units="K s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Vertical mixing&quot; means any vertical transport other than by advection and bolus advection, represented by a combination of vertical diffusion, turbulent mixing and convection in ocean models. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Sea water temperature is the in situ temperature of the sea water. For observed data, depending on the period during which the observation was made, the measured in situ temperature was recorded against standard &quot;scales&quot;. These historical scales include the International Practical Temperature Scale of 1948 (IPTS-48; 1948-1967), the International Practical Temperature Scale of 1968 (IPTS-68, Barber, 1969; 1968-1989) and the International Temperature Scale of 1990 (ITS-90, Saunders 1990; 1990 onwards). Conversion of data between these scales follows t68 = t48 - (4.4 x 10e-6) * t48(100 - t - 48); t90 = 0.99976 * t68. Observations made prior to 1948 (IPTS-48) have not been documented and therefore a conversion cannot be certain. Differences between t90 and t68 can be up to 0.01 at temperatures of 40 C and above; differences of 0.002-0.007 occur across the standard range of ocean temperatures (-10 - 30 C). The International Equation of State of Seawater 1980 (EOS-80, UNESCO, 1981) and the Practical Salinity Scale (PSS-78) were both based on IPTS-68, while the Thermodynamic Equation of Seawater 2010 (TEOS-10) is based on ITS-90. References: Barber, 1969, doi: 10.1088/0026-1394/5/2/001; UNESCO, 1981; Saunders, 1990, WOCE Newsletter, 10, September 1990." label="TendencyOfSeaWaterTemperatureDueToVerticalMixing" title="Tendency of Sea Water Temperature Due To Vertical Mixing" uid="tendency_of_sea_water_temperature_due_to_vertical_mixing" units="K s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;specific&quot; means per unit mass. Specific humidity is the mass fraction of water vapor in (moist) air." label="TendencyOfSpecificHumidity" title="Tendency of Specific Humidity" uid="tendency_of_specific_humidity" units="s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;specific&quot; means per unit mass. Specific humidity is the mass fraction of water vapor in (moist) air." label="TendencyOfSpecificHumidityDueToAdvection" title="Tendency of Specific Humidity Due To Advection" uid="tendency_of_specific_humidity_due_to_advection" units="s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;specific&quot; means per unit mass. Specific humidity is the mass fraction of water vapor in (moist) air." label="TendencyOfSpecificHumidityDueToConvection" title="Tendency of Specific Humidity Due To Convection" uid="tendency_of_specific_humidity_due_to_convection" units="s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;specific&quot; means per unit mass. Specific humidity is the mass fraction of water vapor in (moist) air." label="TendencyOfSpecificHumidityDueToDiffusion" title="Tendency of Specific Humidity Due To Diffusion" uid="tendency_of_specific_humidity_due_to_diffusion" units="s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;specific&quot; means per unit mass. Specific humidity is the mass fraction of water vapor in (moist) air." label="TendencyOfSpecificHumidityDueToModelPhysics" title="Tendency of Specific Humidity Due To Model Physics" uid="tendency_of_specific_humidity_due_to_model_physics" units="s-1"/>
<item description="Specific humidity is the mass fraction of water vapor in (moist) air. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes). The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;specific&quot; means per unit mass." label="TendencyOfSpecificHumidityDueToStratiformCloudAndPrecipitationAndBoundaryLayerMixing" title="Tendency of Specific Humidity Due To Stratiform Cloud And Precipitation And Boundary Layer Mixing" uid="tendency_of_specific_humidity_due_to_stratiform_cloud_and_precipitation_and_boundary_layer_mixing" units="s-1"/>
<item description="Specific humidity is the mass fraction of water vapor in (moist) air. In an atmosphere model, stratiform cloud is that produced by large-scale convergence (not the convection schemes). The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Tendency_of_X&quot; means derivative of X with respect to time. &quot;Specific&quot; means per unit mass." label="TendencyOfSpecificHumidityDueToStratiformPrecipitation" title="Tendency of Specific Humidity Due To Stratiform Precipitation" uid="tendency_of_specific_humidity_due_to_stratiform_precipitation" units="s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfSurfaceAirPressure" title="Tendency of Surface Air Pressure" uid="tendency_of_surface_air_pressure" units="Pa s-1"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. &quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Amount&quot; means mass per unit area. Surface amount refers to the amount on the ground, excluding that on the plant or vegetation canopy." label="TendencyOfSurfaceSnowAmount" title="Tendency of Surface Snow Amount" uid="tendency_of_surface_snow_amount" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;troposphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of carbon monoxide is CO." label="TendencyOfTroposphereMolesOfCarbonMonoxide" title="Tendency of Troposphere Moles of Carbon Monoxide" uid="tendency_of_troposphere_moles_of_carbon_monoxide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;troposphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of HCC140a is CH3CCl3.  The IUPAC name for HCC140a is 1,1,1-trichloroethane." label="TendencyOfTroposphereMolesOfHcc140a" title="Tendency of Troposphere Moles of Hcc140a" uid="tendency_of_troposphere_moles_of_hcc140a" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;troposphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of HCFC22 is CHClF2.  The IUPAC name for HCFC 22 is chloro-difluoro-methane." label="TendencyOfTroposphereMolesOfHcfc22" title="Tendency of Troposphere Moles of Hcfc22" uid="tendency_of_troposphere_moles_of_hcfc22" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;troposphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfTroposphereMolesOfMethane" title="Tendency of Troposphere Moles of Methane" uid="tendency_of_troposphere_moles_of_methane" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;troposphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of methyl bromide is CH3Br. The IUPAC name for methyl bromide is bromomethane." label="TendencyOfTroposphereMolesOfMethylBromide" title="Tendency of Troposphere Moles of Methyl Bromide" uid="tendency_of_troposphere_moles_of_methyl_bromide" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;troposphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of methyl chloride is CH3Cl. The IUPAC name for methyl chloride is chloromethane." label="TendencyOfTroposphereMolesOfMethylChloride" title="Tendency of Troposphere Moles of Methyl Chloride" uid="tendency_of_troposphere_moles_of_methyl_chloride" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;troposphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of molecular hydrogen is H2." label="TendencyOfTroposphereMolesOfMolecularHydrogen" title="Tendency of Troposphere Moles of Molecular Hydrogen" uid="tendency_of_troposphere_moles_of_molecular_hydrogen" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Upward air velocity is the vertical component of the 3D air velocity vector." label="TendencyOfUpwardAirVelocity" title="Tendency of Upward Air Velocity" uid="tendency_of_upward_air_velocity" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Upward air velocity is the vertical component of the 3D air velocity vector." label="TendencyOfUpwardAirVelocityDueToAdvection" title="Tendency of Upward Air Velocity Due To Advection" uid="tendency_of_upward_air_velocity_due_to_advection" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Speed is the magnitude of velocity. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) The wind speed is the magnitude of the wind velocity." label="TendencyOfWindSpeedDueToConvection" title="Tendency of Wind Speed Due To Convection" uid="tendency_of_wind_speed_due_to_convection" units="m s-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;tendency_of_X&quot; means derivative of X with respect to time. Speed is the magnitude of velocity. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) The wind speed is the magnitude of the wind velocity." label="TendencyOfWindSpeedDueToGravityWaveDrag" title="Tendency of Wind Speed Due To Gravity Wave Drag" uid="tendency_of_wind_speed_due_to_gravity_wave_drag" units="m s-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. Thermal energy is the total vibrational energy, kinetic and potential, of all the molecules and atoms in a substance. The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="ThermalEnergyContentOfSurfaceSnow" title="Thermal Energy Content of Surface Snow" uid="thermal_energy_content_of_surface_snow" units="J m-2"/>
<item description="&quot;cloud_top&quot; refers to the top of the highest cloud. &quot;Water&quot; means water in all phases. A variable with the standard name of thermodynamic_phase_of_cloud_water_particles_at_cloud_top contains integers which can be translated to strings using flag_values and flag_meanings attributes. Alternatively, the data variable may contain strings which indicate the thermodynamic phase. These strings are standardised. Values must be chosen from the following list: liquid; ice; mixed; clear_sky; super_cooled_liquid_water; unknown." label="ThermodynamicPhaseOfCloudWaterParticlesAtCloudTop" title="Thermodynamic Phase of Cloud Water Particles At Cloud Top" uid="thermodynamic_phase_of_cloud_water_particles_at_cloud_top" units="1"/>
<item description="&quot;Amount&quot; means mass per unit area. The construction thickness_of_[X_]rainfall_amount means the accumulated &quot;depth&quot; of rainfall i.e. the thickness of a layer of liquid water having the same mass per unit area as the rainfall amount." label="ThicknessOfConvectiveRainfallAmount" title="Thickness of Convective Rainfall Amount" uid="thickness_of_convective_rainfall_amount" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area. The construction thickness_of_[X_]snowfall_amount means the accumulated &quot;depth&quot; of snow which fell i.e. the thickness of the layer of snow at its own density. There are corresponding standard names for liquid water equivalent (lwe) thickness." label="ThicknessOfConvectiveSnowfallAmount" title="Thickness of Convective Snowfall Amount" uid="thickness_of_convective_snowfall_amount" units="m"/>
<item description="&quot;Thickness&quot; means the vertical extent of a layer." label="ThicknessOfLiquidWaterCloud" title="Thickness of Liquid Water Cloud" uid="thickness_of_liquid_water_cloud" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area. The construction thickness_of_[X_]rainfall_amount means the accumulated &quot;depth&quot; of rainfall i.e. the thickness of a layer of liquid water having the same mass per unit area as the rainfall amount." label="ThicknessOfRainfallAmount" title="Thickness of Rainfall Amount" uid="thickness_of_rainfall_amount" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area. The construction thickness_of_[X_]snowfall_amount means the accumulated &quot;depth&quot; of snow which fell i.e. the thickness of the layer of snow at its own density. There are corresponding standard names for liquid water equivalent (lwe) thickness." label="ThicknessOfSnowfallAmount" title="Thickness of Snowfall Amount" uid="thickness_of_snowfall_amount" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area. The construction thickness_of_[X_]rainfall_amount means the accumulated &quot;depth&quot; of rainfall i.e. the thickness of a layer of liquid water having the same mass per unit area as the rainfall amount.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="ThicknessOfStratiformRainfallAmount" title="Thickness of Stratiform Rainfall Amount" uid="thickness_of_stratiform_rainfall_amount" units="m"/>
<item description="&quot;Amount&quot; means mass per unit area. The construction thickness_of_[X_]snowfall_amount means the accumulated &quot;depth&quot; of snow which fell i.e. the thickness of the layer of snow at its own density. There are corresponding standard names for liquid water equivalent (lwe) thickness.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="ThicknessOfStratiformSnowfallAmount" title="Thickness of Stratiform Snowfall Amount" uid="thickness_of_stratiform_snowfall_amount" units="m"/>
<item description="&quot;probability_of_X&quot; means the chance that X is true or of at least one occurrence of X. Space and time coordinates must be used to indicate the area and time-interval to which a probability applies." label="ThunderstormProbability" title="Thunderstorm Probability" uid="thunderstorm_probability" units="1"/>
<item description="" label="Time" title="Time" uid="time" units="s"/>
<item description="The quantity with standard name time_of_maximum_flood_depth is the time elapsed between the breaking of a levee (origin of flood water simulation) and the instant when the flood depth reaches its maximum during the simulation for a given point in space. Flood water is water that covers land which is normally not covered by water." label="TimeOfMaximumFloodDepth" title="Time of Maximum Flood Depth" uid="time_of_maximum_flood_depth" units="s"/>
<item description="time_sample_difference_due_to_collocation is the difference in time between two events that are collocated. Two events are deemed to be collocated based on some set of spatial, temporal, and viewing geometry criteria." label="TimeSampleDifferenceDueToCollocation" title="Time Sample Difference Due To Collocation" uid="time_sample_difference_due_to_collocation" units="s"/>
<item description="The quantity with standard name time_when_flood_water_falls_below_threshold is the time elapsed between the breaking of a levee (origin of flood water simulation) and the instant when the depth falls below a given threshold for the last time, having already risen to its maximum depth, at a given point in space. If a threshold is supplied, it should be specified by associating a coordinate variable or scalar coordinate variable with the data variable and giving the coordinate variable a standard name of flood_water_thickness. The values of the coordinate variable are the threshold values for the corresponding subarrays of the data variable. If no threshold is specified, its value is taken to be zero. Flood water is water that covers land which is normally not covered by water." label="TimeWhenFloodWaterFallsBelowThreshold" title="Time When Flood Water Falls Below Threshold" uid="time_when_flood_water_falls_below_threshold" units="s"/>
<item description="The quantity with standard name time_when_flood_water_rises_above_threshold is the time elapsed between the breaking of a levee (origin of flood water simulation) and the instant when the depth first rises above a given threshold at a given point in space. If a threshold is supplied, it should be specified by associating a coordinate variable or scalar coordinate variable with the data variable and giving the coordinate variable a standard name of flood_water_thickness. The values of the coordinate variable are the threshold values for the corresponding subarrays of the data variable. If no threshold is specified, its value is taken to be zero. Flood water is water that covers land which is normally not covered by water." label="TimeWhenFloodWaterRisesAboveThreshold" title="Time When Flood Water Rises Above Threshold" uid="time_when_flood_water_rises_above_threshold" units="s"/>
<item description="&quot;longwave&quot; means longwave radiation. &quot;toa&quot; means top of atmosphere. Adjusted forcing is the radiative flux change caused by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.) after allowance for stratospheric temperature adjustment." label="ToaAdjustedLongwaveForcing" title="Toa Adjusted Longwave Forcing" uid="toa_adjusted_longwave_forcing" units="W m-2"/>
<item description="&quot;toa&quot; means top of atmosphere. Adjusted forcing is the radiative flux change caused by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.) after allowance for stratospheric temperature adjustment." label="ToaAdjustedRadiativeForcing" title="Toa Adjusted Radiative Forcing" uid="toa_adjusted_radiative_forcing" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;toa&quot; means top of atmosphere. Adjusted forcing is the radiative flux change caused by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.) after allowance for stratospheric temperature adjustment." label="ToaAdjustedShortwaveForcing" title="Toa Adjusted Shortwave Forcing" uid="toa_adjusted_shortwave_forcing" units="W m-2"/>
<item description="&quot;Bidirectional_reflectance&quot; depends on the angles of incident and measured radiation. Reflectance is the ratio of the energy of the reflected to the incident radiation.  A coordinate variable of radiation_wavelength or radiation_frequency can be used to specify the wavelength or frequency, respectively, of the radiation. &quot;toa&quot; means top of atmosphere. toa_bidirectional_reflectance includes a factor to account for the cosine of the solar zenith angle but does not include any integration over solid angle." label="ToaBidirectionalReflectance" title="Toa Bidirectional Reflectance" uid="toa_bidirectional_reflectance" units="1"/>
<item description="The brightness temperature of a body is the temperature of a black body which radiates the same power per unit solid angle per unit area.  &quot;toa&quot; means top of atmosphere." label="ToaBrightnessTemperature" title="Toa Brightness Temperature" uid="toa_brightness_temperature" units="K"/>
<item description="The brightness temperature of a body is the temperature of a black body which radiates the same power per unit solid angle per unit area.  A phrase assuming_condition  indicates that the named quantity is the value which would obtain if all  aspects of the system were unaltered except for the assumption of the  circumstances specified by the condition.  &quot;toa&quot; means top of atmosphere." label="ToaBrightnessTemperatureAssumingClearSky" title="Toa Brightness Temperature Assuming Clear Sky" uid="toa_brightness_temperature_assuming_clear_sky" units="K"/>
<item description="toa_brightness_temperature_bias_at_standard_scene_due_to_intercalibration is the difference between top-of-atmosphere (TOA) brightness temperature of the reference sensor and TOA brightness temperature of the monitored sensor. This TOA brightness temperature difference is a measure of the calibration difference between the monitored and reference sensors. The standard scene is a target area with typical Earth surface and atmospheric conditions that is accepted as a reference. Brightness temperature of a body is the temperature of a black body which radiates the same power per unit solid angle per unit area at a given wavenumber. TOA brightness temperature of the standard scene is calculated using a radiative transfer simulation for a given viewing geometry. The resultant top-of-atmosphere spectral radiance is then integrated with each sensor's spectral response function and converted to equivalent brightness temperature. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="ToaBrightnessTemperatureBiasAtStandardSceneDueToIntercalibration" title="Toa Brightness Temperature Bias At Standard Scene Due To Intercalibration" uid="toa_brightness_temperature_bias_at_standard_scene_due_to_intercalibration" units="K"/>
<item description="&quot;toa&quot; means top of atmosphere. The brightness temperature of a body is the temperature of a black body which radiates the same power per unit solid angle per unit area at a given wavenumber. The standard scene is a target area with typical Earth surface and atmospheric conditions that is accepted as a reference. The toa radiance of the standard scene is calculated using a radiative transfer model for a given viewing geometry. The resultant toa spectral radiance is then integrated with a sensor's spectral response function and converted to equivalent brightness temperature." label="ToaBrightnessTemperatureOfStandardScene" title="Toa Brightness Temperature of Standard Scene" uid="toa_brightness_temperature_of_standard_scene" units="K"/>
<item description="&quot;toa&quot; means top of atmosphere.  Cloud radiative effect is also commonly known as &quot;cloud radiative forcing&quot;.  It is the sum of the quantities with standard names toa_shortwave_cloud_radiative_effect and toa_longwave_cloud_radiative_effect." label="ToaCloudRadiativeEffect" title="Toa Cloud Radiative Effect" uid="toa_cloud_radiative_effect" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;toa&quot; means top of atmosphere. The TOA incoming shortwave flux is the radiative flux from the sun i.e. the &quot;downwelling&quot; TOA shortwave flux. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaIncomingShortwaveFlux" title="Toa Incoming Shortwave Flux" uid="toa_incoming_shortwave_flux" units="W m-2"/>
<item description="&quot;longwave&quot; means longwave radiation. &quot;toa&quot; means top of atmosphere. Instantaneous forcing is the radiative flux change caused instantaneously by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.)." label="ToaInstantaneousLongwaveForcing" title="Toa Instantaneous Longwave Forcing" uid="toa_instantaneous_longwave_forcing" units="W m-2"/>
<item description="&quot;toa&quot; means top of atmosphere. Instantaneous forcing is the radiative flux change caused instantaneously by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.)." label="ToaInstantaneousRadiativeForcing" title="Toa Instantaneous Radiative Forcing" uid="toa_instantaneous_radiative_forcing" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;toa&quot; means top of atmosphere. Instantaneous forcing is the radiative flux change caused instantaneously by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.)." label="ToaInstantaneousShortwaveForcing" title="Toa Instantaneous Shortwave Forcing" uid="toa_instantaneous_shortwave_forcing" units="W m-2"/>
<item description="&quot;toa&quot; means top of atmosphere.  &quot;Longwave&quot; means longwave radiation.  Cloud radiative effect is also commonly known as &quot;cloud radiative forcing&quot;.  It is the difference in radiative flux resulting from the presence of clouds, i.e. it is the difference between toa_outgoing_longwave_flux_assuming_clear_sky and toa_outgoing_longwave_flux." label="ToaLongwaveCloudRadiativeEffect" title="Toa Longwave Cloud Radiative Effect" uid="toa_longwave_cloud_radiative_effect" units="W m-2"/>
<item description="&quot;longwave&quot; means longwave radiation. &quot;toa&quot; means top of atmosphere.   &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaNetDownwardLongwaveFlux" title="Toa Net Downward Longwave Flux" uid="toa_net_downward_longwave_flux" units="W m-2"/>
<item description="A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;longwave&quot; means longwave radiation. &quot;toa&quot; means top of atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaNetDownwardLongwaveFluxAssumingClearSky" title="Toa Net Downward Longwave Flux Assuming Clear Sky" uid="toa_net_downward_longwave_flux_assuming_clear_sky" units="W m-2"/>
<item description="&quot;toa&quot; means top of atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaNetDownwardRadiativeFlux" title="Toa Net Downward Radiative Flux" uid="toa_net_downward_radiative_flux" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;toa&quot; means top of atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaNetDownwardShortwaveFlux" title="Toa Net Downward Shortwave Flux" uid="toa_net_downward_shortwave_flux" units="W m-2"/>
<item description="A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;shortwave&quot; means shortwave radiation. &quot;toa&quot; means top of atmosphere. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaNetDownwardShortwaveFluxAssumingClearSky" title="Toa Net Downward Shortwave Flux Assuming Clear Sky" uid="toa_net_downward_shortwave_flux_assuming_clear_sky" units="W m-2"/>
<item description="&quot;longwave&quot; means longwave radiation. &quot;toa&quot; means top of atmosphere. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaNetUpwardLongwaveFlux" title="Toa Net Upward Longwave Flux" uid="toa_net_upward_longwave_flux" units="W m-2"/>
<item description="A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;longwave&quot; means longwave radiation. &quot;toa&quot; means top of atmosphere. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaNetUpwardLongwaveFluxAssumingClearSky" title="Toa Net Upward Longwave Flux Assuming Clear Sky" uid="toa_net_upward_longwave_flux_assuming_clear_sky" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;toa&quot; means top of atmosphere. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Net upward radiation is the difference between radiation from below (upwelling) and radiation from above (downwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaNetUpwardShortwaveFlux" title="Toa Net Upward Shortwave Flux" uid="toa_net_upward_shortwave_flux" units="W m-2"/>
<item description="&quot;longwave&quot; means longwave radiation. &quot;toa&quot; means top of atmosphere. The TOA outgoing longwave flux is the upwelling thermal radiative flux, often called the &quot;outgoing longwave radiation&quot; or &quot;OLR&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaOutgoingLongwaveFlux" title="Toa Outgoing Longwave Flux" uid="toa_outgoing_longwave_flux" units="W m-2"/>
<item description="A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;longwave&quot; means longwave radiation. &quot;toa&quot; means top of atmosphere. The TOA outgoing longwave flux is the upwelling thermal radiative flux, often called the &quot;outgoing longwave radiation&quot; or &quot;OLR&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaOutgoingLongwaveFluxAssumingClearSky" title="Toa Outgoing Longwave Flux Assuming Clear Sky" uid="toa_outgoing_longwave_flux_assuming_clear_sky" units="W m-2"/>
<item description="&quot;toa&quot; means top of atmosphere. The TOA outgoing radiance is the upwelling radiance, i.e., toward outer space. Radiance is the radiative flux in a particular direction, per unit of solid angle. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaOutgoingRadiancePerUnitWavelength" title="Toa Outgoing Radiance Per Unit Wavelength" uid="toa_outgoing_radiance_per_unit_wavelength" units="W m-2 sr-1 m-1"/>
<item description="&quot;toa&quot; means top of atmosphere. The TOA outgoing radiance is the upwelling radiance, i.e., toward outer space. Radiance is the radiative flux in a particular direction, per unit of solid angle. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaOutgoingRadiancePerUnitWavenumber" title="Toa Outgoing Radiance Per Unit Wavenumber" uid="toa_outgoing_radiance_per_unit_wavenumber" units="W m-2 sr-1 (m-1)-1"/>
<item description="toa_outgoing_radiance_per_unit_wavenumber_mean_within_collocation_scene is an average of observations of the quantity with standard name toa_outgoing_radiance_per_unit_wavenumber from a sensor's adjacent field-of-views within a collocation scene. &quot;toa&quot; means top of atmosphere. The TOA outgoing radiance is the upwelling radiance, i.e., toward outer space. Radiance is the radiative flux in a particular direction, per unit of solid angle. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The &quot;collocation scene&quot; is a grouping of a sensor's adjacent field-of-views centered on a collocation target. The size of the collocation scene is typically about twice that of the collocation target. The &quot;collocation target&quot; is an area on the Earth's surface at which observations from at least two sensors are collected. Its size is defined by the sensor with the largest field-of-view footprint. Two events are deemed to be collocated based on some set of spatial, temporal, and viewing geometry criteria." label="ToaOutgoingRadiancePerUnitWavenumberMeanWithinCollocationScene" title="Toa Outgoing Radiance Per Unit Wavenumber Mean Within Collocation Scene" uid="toa_outgoing_radiance_per_unit_wavenumber_mean_within_collocation_scene" units="W m-2 sr-1 (m-1)-1"/>
<item description="toa_outgoing_radiance_per_unit_wavenumber_mean_within_collocation_target is an average of observations of the quantity with standard name toa_outgoing_radiance_per_unit_wavenumber from a sensor's adjacent field-of-views within a collocation target. &quot;toa&quot; means top of atmosphere. The TOA outgoing radiance is the upwelling radiance, i.e., toward outer space. Radiance is the radiative flux in a particular direction, per unit of solid angle. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The &quot;collocation target&quot; is an area on the Earth's surface at which observations from at least two sensors are collected. Its size is defined by the sensor with the largest field-of-view footprint. Two events are deemed to be collocated based on some set of spatial, temporal, and viewing geometry criteria." label="ToaOutgoingRadiancePerUnitWavenumberMeanWithinCollocationTarget" title="Toa Outgoing Radiance Per Unit Wavenumber Mean Within Collocation Target" uid="toa_outgoing_radiance_per_unit_wavenumber_mean_within_collocation_target" units="W m-2 sr-1 (m-1)-1"/>
<item description="toa_outgoing_radiance_per_unit_wavenumber_stdev_within_collocation_scene is the standard deviation of observations of the quantity with standard name toa_outgoing_radiance_per_unit_wavenumber from a sensor's adjacent field-of-views within a collocation scene. &quot;toa&quot; means top of atmosphere. The TOA outgoing radiance is the upwelling radiance, i.e., toward outer space. Radiance is the radiative flux in a particular direction, per unit of solid angle. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The &quot;collocation scene&quot; is a grouping of a sensor's adjacent field-of-views centered on a collocation target. The size of the collocation scene is typically about twice that of the collocation target. The &quot;collocation target&quot; is an area on the Earth's surface at which observations from at least two sensors are collected. Its size is defined by the sensor with the largest field-of-view footprint. Two events are deemed to be collocated based on some set of spatial, temporal, and viewing geometry criteria." label="ToaOutgoingRadiancePerUnitWavenumberStdevWithinCollocationScene" title="Toa Outgoing Radiance Per Unit Wavenumber Stdev Within Collocation Scene" uid="toa_outgoing_radiance_per_unit_wavenumber_stdev_within_collocation_scene" units="W m-2 sr-1 (m-1)-1"/>
<item description="toa_outgoing_radiance_per_unit_wavenumber_stdev_within_collocation_target is the standard deviation of observations of the quantity with standard name toa_outgoing_radiance_per_unit_wavenumber from a sensor's adjacent field-of-views within a collocation target. &quot;toa&quot; means top of atmosphere. The TOA outgoing radiance is the upwelling radiance, i.e., toward outer space. Radiance is the radiative flux in a particular direction, per unit of solid angle. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The &quot;collocation target&quot; is an area on the Earth's surface at which observations from at least two sensors are collected. Its size is defined by the sensor with the largest field-of-view footprint. Two events are deemed to be collocated based on some set of spatial, temporal, and viewing geometry criteria." label="ToaOutgoingRadiancePerUnitWavenumberStdevWithinCollocationTarget" title="Toa Outgoing Radiance Per Unit Wavenumber Stdev Within Collocation Target" uid="toa_outgoing_radiance_per_unit_wavenumber_stdev_within_collocation_target" units="W m-2 sr-1 (m-1)-1"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;toa&quot; means top of atmosphere. The TOA outgoing shortwave flux is the reflected and scattered solar radiative flux i.e. the &quot;upwelling&quot; TOA shortwave flux, sometimes called the &quot;outgoing shortwave radiation&quot; or &quot;OSR&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaOutgoingShortwaveFlux" title="Toa Outgoing Shortwave Flux" uid="toa_outgoing_shortwave_flux" units="W m-2"/>
<item description="A phrase assuming_condition indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;shortwave&quot; means shortwave radiation. &quot;toa&quot; means top of atmosphere. The TOA outgoing shortwave flux is the reflected and scattered solar radiative flux i.e. the &quot;upwelling&quot; TOA shortwave flux, sometimes called the &quot;outgoing shortwave radiation&quot; or &quot;OSR&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="ToaOutgoingShortwaveFluxAssumingClearSky" title="Toa Outgoing Shortwave Flux Assuming Clear Sky" uid="toa_outgoing_shortwave_flux_assuming_clear_sky" units="W m-2"/>
<item description="&quot;toa&quot; means top of atmosphere.  &quot;Shortwave&quot; means shortwave radiation.  Cloud radiative effect is also commonly known as &quot;cloud radiative forcing&quot;.  It is the difference in radiative flux resulting from the presence of clouds, i.e.  the difference between toa_net_downward_shortwave_flux and toa_net_downward_shortwave_flux_assuming_clear_sky." label="ToaShortwaveCloudRadiativeEffect" title="Toa Shortwave Cloud Radiative Effect" uid="toa_shortwave_cloud_radiative_effect" units="W m-2"/>
<item description="The quantity with standard name tracer_lifetime is the total length of time a passive tracer exists within a medium. Passive tracers are used in models to study processes such as transport and deposition." label="TracerLifetime" title="Tracer Lifetime" uid="tracer_lifetime" units="s"/>
<item description="&quot;Amount&quot; means mass per unit area." label="TranspirationAmount" title="Transpiration Amount" uid="transpiration_amount" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="TranspirationFlux" title="Transpiration Flux" uid="transpiration_flux" units="kg m-2 s-1"/>
<item description="&quot;tropical_cyclone_eye_brightness_temperature&quot; means the warmest  brightness temperature value in the eye region of a tropical cyclone (0 - 24 km from the storm center) derived using the Advanced Dvorak Technique, based on satellite observations. Reference: Olander, T. L., &amp; Velden, C. S., The Advanced Dvorak Technique: Continued Development of an Objective Scheme to Estimate Tropical Cyclone Intensity Using Geostationary Infrared Satellite Imagery (2007).  American Meterorological Society Weather and Forecasting, 22, 287-298. The brightness temperature of a body is the temperature of a black body which radiates the same power per unit solid angle per unit area." label="TropicalCycloneEyeBrightnessTemperature" title="Tropical Cyclone Eye Brightness Temperature" uid="tropical_cyclone_eye_brightness_temperature" units="K"/>
<item description="&quot;tropical_cyclone_maximum_sustained_wind_speed&quot; means the maximum sustained wind speed of a tropical cyclone, sustained over a period of one minute at the surface of the earth, derived using the Advanced Dvorak Technique based on satellite observations. Reference: Olander, T. L., &amp; Velden, C. S., The Advanced Dvorak Technique: Continued Development of an Objective Scheme to Estimate Tropical Cyclone Intensity Using Geostationary Infrared Satellite Imagery (2007). American Meterorological Society Weather and Forecasting, 22, 287-298." label="TropicalCycloneMaximumSustainedWindSpeed" title="Tropical Cyclone Maximum Sustained Wind Speed" uid="tropical_cyclone_maximum_sustained_wind_speed" units="m s-1"/>
<item description="&quot;longwave&quot; means longwave radiation. Adjusted forcing is the radiative flux change caused by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.) after allowance for stratospheric temperature adjustment." label="TropopauseAdjustedLongwaveForcing" title="Tropopause Adjusted Longwave Forcing" uid="tropopause_adjusted_longwave_forcing" units="W m-2"/>
<item description="Adjusted forcing is the radiative flux change caused by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.) after allowance for stratospheric temperature adjustment." label="TropopauseAdjustedRadiativeForcing" title="Tropopause Adjusted Radiative Forcing" uid="tropopause_adjusted_radiative_forcing" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. Adjusted forcing is the radiative flux change caused by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.) after allowance for stratospheric temperature adjustment." label="TropopauseAdjustedShortwaveForcing" title="Tropopause Adjusted Shortwave Forcing" uid="tropopause_adjusted_shortwave_forcing" units="W m-2"/>
<item description="" label="TropopauseAirPressure" title="Tropopause Air Pressure" uid="tropopause_air_pressure" units="Pa"/>
<item description="Air temperature is the bulk temperature of the air, not the surface (skin) temperature." label="TropopauseAirTemperature" title="Tropopause Air Temperature" uid="tropopause_air_temperature" units="K"/>
<item description="Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." label="TropopauseAltitude" title="Tropopause Altitude" uid="tropopause_altitude" units="m"/>
<item description="&quot;longwave&quot; means longwave radiation. Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="TropopauseDownwellingLongwaveFlux" title="Tropopause Downwelling Longwave Flux" uid="tropopause_downwelling_longwave_flux" units="W m-2"/>
<item description="&quot;longwave&quot; means longwave radiation. Instantaneous forcing is the radiative flux change caused instantaneously by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.)." label="TropopauseInstantaneousLongwaveForcing" title="Tropopause Instantaneous Longwave Forcing" uid="tropopause_instantaneous_longwave_forcing" units="W m-2"/>
<item description="Instantaneous forcing is the radiative flux change caused instantaneously by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.)." label="TropopauseInstantaneousRadiativeForcing" title="Tropopause Instantaneous Radiative Forcing" uid="tropopause_instantaneous_radiative_forcing" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. Instantaneous forcing is the radiative flux change caused instantaneously by an imposed change in radiative forcing agent (greenhouse gases, aerosol, solar radiation, etc.)." label="TropopauseInstantaneousShortwaveForcing" title="Tropopause Instantaneous Shortwave Forcing" uid="tropopause_instantaneous_shortwave_forcing" units="W m-2"/>
<item description="&quot;longwave&quot; means longwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="TropopauseNetDownwardLongwaveFlux" title="Tropopause Net Downward Longwave Flux" uid="tropopause_net_downward_longwave_flux" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward). Net downward radiation is the difference between radiation from above (downwelling) and radiation from below (upwelling). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="TropopauseNetDownwardShortwaveFlux" title="Tropopause Net Downward Shortwave Flux" uid="tropopause_net_downward_shortwave_flux" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="TropopauseUpwellingShortwaveFlux" title="Tropopause Upwelling Shortwave Flux" uid="tropopause_upwelling_shortwave_flux" units="W m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;troposphere content&quot; of a quantity refers to the vertical integral from the surface to the tropopause. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for bromine_monoxide is BrO." label="TroposphereMoleContentOfBromineMonoxide" title="Troposphere Mole Content of Bromine Monoxide" uid="troposphere_mole_content_of_bromine_monoxide" units="mol m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;troposphere content&quot; of a quantity refers to the vertical integral from the surface to the tropopause. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for formaldehyde is CH2O. The IUPAC name for formaldehyde is methanal." label="TroposphereMoleContentOfFormaldehyde" title="Troposphere Mole Content of Formaldehyde" uid="troposphere_mole_content_of_formaldehyde" units="mol m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;troposphere content&quot; of a quantity refers to the vertical integral from the surface to the tropopause. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for glyoxal is CHOCHO. The IUPAC name for glyoxal is ethanedial." label="TroposphereMoleContentOfGlyoxal" title="Troposphere Mole Content of Glyoxal" uid="troposphere_mole_content_of_glyoxal" units="mol m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;troposphere content&quot; of a quantity refers to the vertical integral from the surface to the tropopause. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for iodine_monoxide is IO." label="TroposphereMoleContentOfIodineMonoxide" title="Troposphere Mole Content of Iodine Monoxide" uid="troposphere_mole_content_of_iodine_monoxide" units="mol m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;troposphere content&quot; of a quantity refers to the vertical integral from the surface to the tropopause. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for nitrogen_dioxide is NO2." label="TroposphereMoleContentOfNitrogenDioxide" title="Troposphere Mole Content of Nitrogen Dioxide" uid="troposphere_mole_content_of_nitrogen_dioxide" units="mol m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;troposphere content&quot; of a quantity refers to the vertical integral from the surface to the tropopause. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for ozone is O3. The IUPAC name for ozone is trioxygen." label="TroposphereMoleContentOfOzone" title="Troposphere Mole Content of Ozone" uid="troposphere_mole_content_of_ozone" units="mol m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;troposphere content&quot; of a quantity refers to the vertical integral from the surface to the tropopause. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The chemical formula for suflur_dioxide is SO2." label="TroposphereMoleContentOfSulfurDioxide" title="Troposphere Mole Content of Sulfur Dioxide" uid="troposphere_mole_content_of_sulfur_dioxide" units="mol m-2"/>
<item description="&quot;Turbulent mixing length&quot; is used in models to describe the average distance over which a fluid parcel can travel while retaining properties that allow the parcel to be distinguished from its immediate environonment. &quot;Turbulent mixing&quot; means chaotic fluctuations of the fluid flow." label="TurbulentMixingLengthOfSeaWater" title="Turbulent Mixing Length of Sea Water" uid="turbulent_mixing_length_of_sea_water" units="m"/>
<item description="The &quot;Ultraviolet Index&quot; (UVI) is a measure of the amount of solar ultraviolet radiation that reaches the surface of the earth depending on factors such as time of day and cloud cover. It is often used to alert the public of the need to limit sun exposure and use sun creams to protect the skin. Each point on the Index scale is equivalent to 25 mW m-2 of UV radiation (reference: Australian Bureau of Meteorology, http://www.bom.gov.au/uv/about_uv_index.shtml). The UVI range is expressed as a numeric value from 0 to 20 and sometimes graphically as bands of color indicating the attendant risk of skin damage. A UVI of 0-2 is described as 'Low' (represented graphically in green); a UVI of 11 or greater is described as &quot;Extreme&quot; (represented graphically in purple). The higher the UVI, the greater the potential health risk to humans and the less time it takes for harm to occur. To specify the amount of cloud cover at which the data variable applies, provide a scalar coordinate variable with standard name &quot;cloud_area_fraction&quot;. Standard names are also defined for the quantities ultraviolet_index_assuming_clear_sky and ultraviolet_index_assuming_overcast_sky." label="UltravioletIndex" title="Ultraviolet Index" uid="ultraviolet_index" units="1"/>
<item description="The &quot;Ultraviolet Index&quot; (UVI) is a measure of the amount of solar ultraviolet radiation that reaches the surface of the earth depending on factors such as time of day and cloud cover. It is often used to alert the public of the need to limit sun exposure and use sun creams to protect the skin. Each point on the Index scale is equivalent to 25 mW m-2 of UV radiation (reference: Australian Bureau of Meteorology, http://www.bom.gov.au/uv/about_uv_index.shtml). The UVI range is expressed as a numeric value from 0 to 20 and sometimes graphically as bands of color indicating the attendant risk of skin damage. A UVI of 0-2 is described as 'Low' (represented graphically in green); a UVI of 11 or greater is described as &quot;Extreme&quot; (represented graphically in purple). The higher the UVI, the greater the potential health risk to humans and the less time it takes for harm to occur. A phrase &quot;assuming_condition&quot; indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. Standard names are also defined for the quantities ultraviolet_index and ultraviolet_index_assuming_overcast_sky." label="UltravioletIndexAssumingClearSky" title="Ultraviolet Index Assuming Clear Sky" uid="ultraviolet_index_assuming_clear_sky" units="1"/>
<item description="The &quot;Ultraviolet Index&quot; (UVI) is a measure of the amount of solar ultraviolet radiation that reaches the surface of the earth depending on factors such as time of day and cloud cover. It is often used to alert the public of the need to limit sun exposure and use sun creams to protect the skin. Each point on the Index scale is equivalent to 25 mW m-2 of UV radiation (reference: Australian Bureau of Meteorology, http://www.bom.gov.au/uv/about_uv_index.shtml). The UVI range is expressed as a numeric value from 0 to 20 and sometimes graphically as bands of color indicating the attendant risk of skin damage. A UVI of 0-2 is described as 'Low' (represented graphically in green); a UVI of 11 or greater is described as &quot;Extreme&quot; (represented graphically in purple). The higher the UVI, the greater the potential health risk to humans and the less time it takes for harm to occur. A phrase &quot;assuming_condition&quot; indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the circumstances specified by the condition. &quot;Overcast&quot; means a fractional sky cover of 95% or more when at least a portion of this amount is attributable to clouds or obscuring phenomena (such as haze, dust, smoke, fog, etc.) aloft. (Reference: AMS Glossary: http://glossary.ametsoc.org/wiki/Main_Page). Standard names are also defined for the quantities ultraviolet_index and ultraviolet_index_assuming_clear_sky." label="UltravioletIndexAssumingOvercastSky" title="Ultraviolet Index Assuming Overcast Sky" uid="ultraviolet_index_assuming_overcast_sky" units="1"/>
<item description="A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Upward air velocity is the vertical component of the 3D air velocity vector. The standard name downward_air_velocity may be used for a vector component with the opposite sign convention." label="UpwardAirVelocity" title="Upward Air Velocity" uid="upward_air_velocity" units="m s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). Dry static energy is the sum of enthalpy and potential energy (itself the sum of gravitational and centripetal potential energy). Enthalpy can be written either as (1) CpT, where Cp is heat capacity at constant pressure, T is absolute temperature, or (2) U+pV, where U is internal energy, p is pressure and V is volume. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardDryStaticEnergyFluxDueToDiffusion" title="Upward Dry Static Energy Flux Due To Diffusion" uid="upward_dry_static_energy_flux_due_to_diffusion" units="W m-2"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Upward eastward&quot; indicates the ZX component of a tensor. An upward eastward momentum flux is an upward flux of eastward momentum, which accelerates the upper medium eastward and the lower medium westward.  Momentum flux is dimensionally equivalent to stress and pressure.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The total upward eastward momentum flux due to gravity waves is the sum of the fluxes due to orographic gravity waves and nonorographic waves. The upward eastward momentum flux due to orographic gravity waves has the standard name upward_eastward_momentum_flux_in_air_due_to_orographic_gravity_waves. The total upward eastward momentum flux due to nonorographic gravity waves is the sum of the fluxes due to eastward and westward propagating waves. The latter has the standard name upward_eastward_momentum_flux_in_air_due_to_nonorographic_westward_gravity_waves." label="UpwardEastwardMomentumFluxInAirDueToNonorographicEastwardGravityWaves" title="Upward Eastward Momentum Flux in Air Due To Nonorographic Eastward Gravity Waves" uid="upward_eastward_momentum_flux_in_air_due_to_nonorographic_eastward_gravity_waves" units="Pa"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  &quot;Upward eastward&quot; indicates the ZX component of a tensor. An upward eastward momentum flux is an upward flux of eastward momentum, which accelerates the upper medium eastward and the lower medium westward.  Momentum flux is dimensionally equivalent to stress and pressure.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The total upward eastward momentum flux due to gravity waves is the sum of the fluxes due to orographic gravity waves and nonorographic waves. The upward eastward momentum flux due to orographic gravity waves has the standard name upward_eastward_momentum_flux_in_air_due_to_orographic_gravity_waves. The total upward eastward momentum flux due to nonorographic gravity waves is the sum of the fluxes due to eastward and westward propagating waves. The former has the standard name upward_eastward_momentum_flux_in_air_due_to_nonorographic_eastward _gravity_waves." label="UpwardEastwardMomentumFluxInAirDueToNonorographicWestwardGravityWaves" title="Upward Eastward Momentum Flux in Air Due To Nonorographic Westward Gravity Waves" uid="upward_eastward_momentum_flux_in_air_due_to_nonorographic_westward_gravity_waves" units="Pa"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  &quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward).  &quot;Upward eastward&quot; indicates the ZX component of a tensor. An upward eastward momentum flux is an upward flux of eastward momentum, which accelerates the upper medium eastward and the lower medium westward.  Momentum flux is dimensionally equivalent to stress and pressure.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The total upward eastward momentum flux due to gravity waves is the sum of the fluxes due to orographic gravity waves and nonorographic waves. The total upward eastward momentum flux due to nonorographic gravity waves is the sum of the fluxes due to eastward and westward propagating waves. These quantities have the standard names upward_eastward_momentum_flux_in_air_due_to_nonorographic_eastward_gravity_waves and upward_eastward_momentum_flux_in_air_due_to_nonorographic_westward_gravity_waves, respectively." label="UpwardEastwardMomentumFluxInAirDueToOrographicGravityWaves" title="Upward Eastward Momentum Flux in Air Due To Orographic Gravity Waves" uid="upward_eastward_momentum_flux_in_air_due_to_orographic_gravity_waves" units="Pa"/>
<item description="&quot;Eastward&quot; indicates a vector component which is positive when directed eastward (negative westward). &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). &quot;Upward eastward&quot; indicates the ZX component of a tensor. An upward eastward stress is an upward flux of eastward momentum, which accelerates the upper medium eastward and the lower medium westward." label="UpwardEastwardStressAtSeaIceBase" title="Upward Eastward Stress At Sea Ice Base" uid="upward_eastward_stress_at_sea_ice_base" units="Pa"/>
<item description="&quot;Eliassen Palm flux&quot; is a widely used vector in the meridional plane, and the divergence of this flux appears as a forcing in the Transformed Eulerian mean formulation of the zonal mean zonal wind equation.  &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward)." label="UpwardEliassenPalmFluxInAir" title="Upward Eliassen Palm Flux in Air" uid="upward_eliassen_palm_flux_in_air" units="m3 s-2"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. &quot;ground_level&quot; means the land surface (including beneath snow, ice and surface water, if any). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The quantity with standard name upward_geothermal_heat_flux_at_ground_level_in_land_ice is the upward heat flux at the interface between the ice and bedrock. It does not include any heat flux from the ocean into an ice shelf." label="UpwardGeothermalHeatFluxAtGroundLevelInLandIce" title="Upward Geothermal Heat Flux At Ground Level in Land Ice" uid="upward_geothermal_heat_flux_at_ground_level_in_land_ice" units="W m-2"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardGeothermalHeatFluxAtSeaFloor" title="Upward Geothermal Heat Flux At Sea Floor" uid="upward_geothermal_heat_flux_at_sea_floor" units="W m-2"/>
<item description="ground_level means the land surface (beneath the snow and surface water, if any). &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardHeatFluxAtGroundLevelInSnow" title="Upward Heat Flux At Ground Level in Snow" uid="upward_heat_flux_at_ground_level_in_snow" units="W m-2"/>
<item description="ground_level means the land surface (beneath the snow and surface water, if any). &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardHeatFluxAtGroundLevelInSoil" title="Upward Heat Flux At Ground Level in Soil" uid="upward_heat_flux_at_ground_level_in_soil" units="W m-2"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The vertical heat flux in air is the sum of all heat fluxes i.e. radiative, latent and sensible. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardHeatFluxInAir" title="Upward Heat Flux in Air" uid="upward_heat_flux_in_air" units="W m-2"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardHeatFluxInSeaWaterDueToConvection" title="Upward Heat Flux in Sea Water Due To Convection" uid="upward_heat_flux_in_sea_water_due_to_convection" units="W m-2"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The latent heat flux is the exchange of heat across a surface on account of evaporation and condensation (including sublimation and deposition). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardLatentHeatFluxInAir" title="Upward Latent Heat Flux in Air" uid="upward_latent_heat_flux_in_air" units="W m-2"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardMassFluxOfAir" title="Upward Mass Flux of Air" uid="upward_mass_flux_of_air" units="kg m-2 s-1"/>
<item description="&quot;Northward&quot; indicates a vector component which is positive when directed northward (negative southward). &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). &quot;Upward northward&quot; indicates the ZY component of a tensor. An upward northward stress is an upward flux of northward momentum, which accelerates the upper medium northward and the lower medium southward." label="UpwardNorthwardStressAtSeaIceBase" title="Upward Northward Stress At Sea Ice Base" uid="upward_northward_stress_at_sea_ice_base" units="Pa"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward)." label="UpwardOceanMassTransport" title="Upward Ocean Mass Transport" uid="upward_ocean_mass_transport" units="kg s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The sea ice basal heat flux is the vertical heat flux (apart from radiation i.e. &quot;diffusive&quot;) in sea water at the base of the sea ice. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardSeaIceBasalHeatFlux" title="Upward Sea Ice Basal Heat Flux" uid="upward_sea_ice_basal_heat_flux" units="W m-2"/>
<item description="A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward)." label="UpwardSeaWaterVelocity" title="Upward Sea Water Velocity" uid="upward_sea_water_velocity" units="m s-1"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The sensible heat flux, also called &quot;turbulent&quot; heat flux, is the exchange of heat caused by the motion of air. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardSensibleHeatFluxInAir" title="Upward Sensible Heat Flux in Air" uid="upward_sensible_heat_flux_in_air" units="W m-2"/>
<item description="A quantity with standard name Xward_Yward_derivative_of_geopotential is a second spatial derivative of geopotential in the direction specified by X and Y, i.e., d2P/dXdY. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). &quot;component_derivative_of_X&quot; means derivative of X with respect to distance in the component direction, which may be &quot;northward&quot;, &quot;southward&quot;, &quot;eastward&quot;, &quot;westward&quot;, &quot;x&quot; or &quot;y&quot;. The last two indicate derivatives along the axes of the grid, in the case where they are not true longitude and latitude." label="UpwardUpwardDerivativeOfGeopotential" title="Upward Upward Derivative of Geopotential" uid="upward_upward_derivative_of_geopotential" units="s-2"/>
<item description="&quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardWaterVaporFluxInAir" title="Upward Water Vapor Flux in Air" uid="upward_water_vapor_flux_in_air" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwardWaterVaporFluxInAirDueToDiffusion" title="Upward Water Vapor Flux in Air Due To Diffusion" uid="upward_water_vapor_flux_in_air_due_to_diffusion" units="kg m-2 s-1"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward)." label="UpwardXStressAtSeaIceBase" title="Upward X Stress At Sea Ice Base" uid="upward_x_stress_at_sea_ice_base" units="Pa"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward)." label="UpwardYStressAtSeaIceBase" title="Upward Y Stress At Sea Ice Base" uid="upward_y_stress_at_sea_ice_base" units="Pa"/>
<item description="&quot;longwave&quot; means longwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwellingLongwaveFluxInAir" title="Upwelling Longwave Flux in Air" uid="upwelling_longwave_flux_in_air" units="W m-2"/>
<item description="Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;.  When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.  In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  A phrase assuming_condition  indicates that the named quantity is the value which would obtain if all  aspects of the system were unaltered except for the assumption of the  circumstances specified by the condition.  &quot;longwave&quot; means longwave radiation." label="UpwellingLongwaveFluxInAirAssumingClearSky" title="Upwelling Longwave Flux in Air Assuming Clear Sky" uid="upwelling_longwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="&quot;longwave&quot; means longwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="UpwellingLongwaveRadianceInAir" title="Upwelling Longwave Radiance in Air" uid="upwelling_longwave_radiance_in_air" units="W m-2 sr-1"/>
<item description="Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="UpwellingRadiancePerUnitWavelengthInAir" title="Upwelling Radiance Per Unit Wavelength in Air" uid="upwelling_radiance_per_unit_wavelength_in_air" units="W m-2 m-1 sr-1"/>
<item description="Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="UpwellingRadiativeFluxPerUnitWavelengthInAir" title="Upwelling Radiative Flux Per Unit Wavelength in Air" uid="upwelling_radiative_flux_per_unit_wavelength_in_air" units="W m-2 m-1"/>
<item description="Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. A coordinate variable for radiation wavelength should be given the standard name radiation_wavelength." label="UpwellingRadiativeFluxPerUnitWavelengthInSeaWater" title="Upwelling Radiative Flux Per Unit Wavelength in Sea Water" uid="upwelling_radiative_flux_per_unit_wavelength_in_sea_water" units="W m-2 m-1"/>
<item description="&quot;shortwave&quot; means shortwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="UpwellingShortwaveFluxInAir" title="Upwelling Shortwave Flux in Air" uid="upwelling_shortwave_flux_in_air" units="W m-2"/>
<item description="Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;.  When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;.  In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  A phrase assuming_condition  indicates that the named quantity is the value which would obtain if all  aspects of the system were unaltered except for the assumption of the  circumstances specified by the condition.  &quot;shortwave&quot; means shortwave radiation." label="UpwellingShortwaveFluxInAirAssumingClearSky" title="Upwelling Shortwave Flux in Air Assuming Clear Sky" uid="upwelling_shortwave_flux_in_air_assuming_clear_sky" units="W m-2"/>
<item description="&quot;shortwave&quot; means shortwave radiation. Upwelling radiation is radiation from below. It does not mean &quot;net upward&quot;. Radiance is the radiative flux in a particular direction, per unit of solid angle. The direction towards which it is going must be specified, for instance with a coordinate of zenith_angle. If the radiation does not depend on direction, a standard name of isotropic radiance should be chosen instead." label="UpwellingShortwaveRadianceInAir" title="Upwelling Shortwave Radiance in Air" uid="upwelling_shortwave_radiance_in_air" units="W m-2 sr-1"/>
<item description="&quot;X_area_fraction&quot; means the fraction of horizontal area occupied by X. &quot;X_area&quot; means the horizontal area occupied by X within the grid cell. &quot;Vegetation&quot; means any plants e.g. trees, shrubs, grass." label="VegetationAreaFraction" title="Vegetation Area Fraction" uid="vegetation_area_fraction" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. &quot;Vegetation&quot; means any plants e.g. trees, shrubs, grass." label="VegetationCarbonContent" title="Vegetation Carbon Content" uid="vegetation_carbon_content" units="kg m-2"/>
<item description="The vertical_component_of_ocean_xy_tracer_diffusivity means the vertical component of the diffusivity of tracers in the ocean due to lateral mixing. This quantity could appear in formulations of lateral diffusivity in which &quot;lateral&quot; does not mean &quot;iso-level&quot;, e.g. it would not be used for isopycnal diffusivity. &quot;Tracer diffusivity&quot; means the diffusivity of heat and salinity due to motion which is not resolved on the grid scale of the model." label="VerticalComponentOfOceanXyTracerDiffusivity" title="Vertical Component of Ocean Xy Tracer Diffusivity" uid="vertical_component_of_ocean_xy_tracer_diffusivity" units="m2 s-1"/>
<item description="The virtual_salt_flux_into_sea_water_due_to_process is the salt flux that would have the same effect on the sea surface salinity as water_flux_out_of_sea_water_due_to_process. Flux correction is also called &quot;flux adjustment&quot;. A positive flux correction is downward i.e. added to the ocean.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="VirtualSaltFluxCorrection" title="Virtual Salt Flux Correction" uid="virtual_salt_flux_correction" units="kg m-2 s-1"/>
<item description="The virtual_salt_flux_into_sea_water is the salt flux that would have the same effect on the sea surface salinity as the water_flux_out_of_sea_water. It includes the effects of precipitation, evaporation, river outflow, sea-ice and any water flux relaxation(s) and correction(s) that may have been applied. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="VirtualSaltFluxIntoSeaWater" title="Virtual Salt Flux Into Sea Water" uid="virtual_salt_flux_into_sea_water" units="kg m-2 s-1"/>
<item description="The virtual_salt_flux_into_sea_water_due_to_process is the salt flux that would have the same effect on the sea surface salinity as water_flux_out_of_sea_water_due_to_process. Evaporation is the conversion of liquid or solid into vapor.  (The conversion of solid alone into vapor is called &quot;sublimation&quot;.)  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="VirtualSaltFluxIntoSeaWaterDueToEvaporation" title="Virtual Salt Flux Into Sea Water Due To Evaporation" uid="virtual_salt_flux_into_sea_water_due_to_evaporation" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The virtual_salt_flux_into_sea_water_due_to_newtonian_relaxation is the salt flux that would have the same effect on the sea surface salinity as water_flux_out_of_sea_water_due_to_newtonian_relaxation. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="VirtualSaltFluxIntoSeaWaterDueToNewtonianRelaxation" title="Virtual Salt Flux Into Sea Water Due To Newtonian Relaxation" uid="virtual_salt_flux_into_sea_water_due_to_newtonian_relaxation" units="kg m-2 s-1"/>
<item description="The virtual_salt_flux_into_sea_water_due_to_process is the salt flux that would have the same effect on the sea surface salinity as water_flux_out_of_sea_water_due_to_process. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase." label="VirtualSaltFluxIntoSeaWaterDueToRainfall" title="Virtual Salt Flux Into Sea Water Due To Rainfall" uid="virtual_salt_flux_into_sea_water_due_to_rainfall" units="kg m-2 s-1"/>
<item description="The virtual_salt_flux_into_sea_water_due_to_process is the salt flux that would have the same effect on the sea surface salinity as water_flux_out_of_sea_water_due_to_process. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;Sea ice thermodynamics&quot; refers to the addition or subtraction of mass due to surface and basal fluxes, i.e., due to melting, sublimation and fusion." label="VirtualSaltFluxIntoSeaWaterDueToSeaIceThermodynamics" title="Virtual Salt Flux Into Sea Water Due To Sea Ice Thermodynamics" uid="virtual_salt_flux_into_sea_water_due_to_sea_ice_thermodynamics" units="kg m-2 s-1"/>
<item description="The virtual_salt_flux_into_sea_water_due_to_process is the salt flux that would have the same effect on the sea surface salinity as water_flux_out_of_sea_water_due_to_process. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="VirtualSaltFluxIntoSeaWaterFromRivers" title="Virtual Salt Flux Into Sea Water From Rivers" uid="virtual_salt_flux_into_sea_water_from_rivers" units="kg m-2 s-1"/>
<item description="The virtual temperature of air is the temperature at which the dry air constituent of a parcel of moist air would have the same density as the moist air at the same pressure." label="VirtualTemperature" title="Virtual Temperature" uid="virtual_temperature" units="K"/>
<item description="The visibility is the distance at which something can be seen." label="VisibilityInAir" title="Visibility in Air" uid="visibility_in_air" units="m"/>
<item description="The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with &quot;specific_&quot; instead of &quot;volume_&quot;. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths unless a coordinate of &quot;radiation_wavelength&quot; or &quot;radiation_frequency&quot; is included to specify the wavelength. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Dried_aerosol&quot; means that the aerosol sample has been dried from the ambient state, but that the dry state (relative humidity less than 40 per cent) has not necessarily been reached. To specify the relative humidity at which the sample was measured, provide a scalar coordinate variable with the standard name of &quot;relative_humidity&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="VolumeAbsorptionCoefficientInAirDueToDriedAerosolParticles" title="Volume Absorption Coefficient in Air Due To Dried Aerosol Particles" uid="volume_absorption_coefficient_in_air_due_to_dried_aerosol_particles" units="m-1"/>
<item description="Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with specific_ instead of volume_. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength is included to specify the wavelength." label="VolumeAbsorptionCoefficientOfRadiativeFluxInSeaWater" title="Volume Absorption Coefficient of Radiative Flux in Sea Water" uid="volume_absorption_coefficient_of_radiative_flux_in_sea_water" units="m-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with specific_ instead of volume_. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength is included to specify the wavelength." label="VolumeAbsorptionCoefficientOfRadiativeFluxInSeaWaterDueToDissolvedOrganicMatter" title="Volume Absorption Coefficient of Radiative Flux in Sea Water Due To Dissolved Organic Matter" uid="volume_absorption_coefficient_of_radiative_flux_in_sea_water_due_to_dissolved_organic_matter" units="m-1"/>
<item description="Attenuation is the sum of absorption and scattering. Attenuation is sometimes called &quot;extinction&quot;.  The attenuated backwards scattering function includes the effects of two-way attenuation by the medium between a radar source and receiver. The volume scattering function is the fraction of incident radiative flux scattered into unit solid angle per unit path length.  Backwards scattering refers to the sum of scattering into all backward angles i.e. scattering_angle exceeding pi/2 radians. A scattering_angle should not be specified with this quantity." label="VolumeAttenuatedBackwardsScatteringFunctionInAir" title="Volume Attenuated Backwards Scattering Function in Air" uid="volume_attenuated_backwards_scattering_function_in_air" units="m-1 sr-1"/>
<item description="Attenuation is the sum of absorption and scattering. Attenuation is sometimes called &quot;extinction&quot;. The attenuated backwards scattering function includes the effects of two-way attenuation by the medium between a radar source and receiver. The volume scattering function is the fraction of incident radiative flux scattered into unit solid angle per unit path length. Backwards scattering refers to the sum of scattering into all backward angles i.e. scattering_angle exceeding pi/2 radians. A scattering_angle should not be specified with this quantity. A phrase &quot;assuming_condition&quot; indicates that the named quantity is the value which would obtain if all aspects of the system were unaltered except for the assumption of the  circumstances specified by the condition. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself." label="VolumeAttenuatedBackwardsScatteringFunctionInAirAssumingNoAerosolOrCloud" title="Volume Attenuated Backwards Scattering Function in Air Assuming No Aerosol Or Cloud" uid="volume_attenuated_backwards_scattering_function_in_air_assuming_no_aerosol_or_cloud" units="m-1 sr-1"/>
<item description="Downwelling radiation is radiation from above. It does not mean &quot;net downward&quot;. Radiative flux is the sum of shortwave and longwave radiative fluxes. When thought of as being incident on a surface, a radiative flux is sometimes called &quot;irradiance&quot;. In addition, it is identical with the quantity measured by a cosine-collector light-meter and sometimes called &quot;vector irradiance&quot;. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with specific_ instead of volume_. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength is included to specify the wavelength. Attenuation is the sum of absorption and scattering. Attenuation is sometimes called &quot;extinction&quot;. Also called &quot;diffuse&quot; attenuation, the attenuation of downwelling radiative flux refers to the decrease with decreasing height or increasing depth of the downwelling component of radiative flux, regardless of incident direction." label="VolumeAttenuationCoefficientOfDownwellingRadiativeFluxInSeaWater" title="Volume Attenuation Coefficient of Downwelling Radiative Flux in Sea Water" uid="volume_attenuation_coefficient_of_downwelling_radiative_flux_in_sea_water" units="m-1"/>
<item description="The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with specific_ instead of volume_. Backwards scattering refers to the sum of scattering into all backward angles i.e. scattering_angle exceeds pi/2 radians. A scattering_angle should not be specified with this quantity. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength is included to specify the wavelength. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Dried_aerosol&quot; means that the aerosol sample has been dried from the ambient state, but that the dry state (relative humidity less than 40 per cent) has not necessarily been reached. To specify the relative humidity at which the sample was measured, provide a scalar coordinate variable with the standard name of &quot;relative_humidity&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="VolumeBackwardsScatteringCoefficientInAirDueToDriedAerosolParticles" title="Volume Backwards Scattering Coefficient in Air Due To Dried Aerosol Particles" uid="volume_backwards_scattering_coefficient_in_air_due_to_dried_aerosol_particles" units="m-1"/>
<item description="Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with specific_ instead of volume_. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength is included to specify the wavelength. Scattering of radiation is its deflection from its incident path without loss of energy. Backwards scattering refers to the sum of scattering into all backward angles i.e. scattering_angle exceeding pi/2 radians. A scattering_angle should not be specified with this quantity." label="VolumeBackwardsScatteringCoefficientOfRadiativeFluxInSeaWater" title="Volume Backwards Scattering Coefficient of Radiative Flux in Sea Water" uid="volume_backwards_scattering_coefficient_of_radiative_flux_in_sea_water" units="m-1"/>
<item description="Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with specific_ instead of volume_. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength is included to specify the wavelength. Attenuation is the sum of absorption and scattering. Attenuation is sometimes called &quot;extinction&quot;. Beam attenuation refers to the decrease of radiative flux along the direction of the incident path. It is distinguished from attenuation of the downwelling component of radiative flux from any incident direction, also called &quot;diffuse&quot; attenuation." label="VolumeBeamAttenuationCoefficientOfRadiativeFluxInSeaWater" title="Volume Beam Attenuation Coefficient of Radiative Flux in Sea Water" uid="volume_beam_attenuation_coefficient_of_radiative_flux_in_sea_water" units="m-1"/>
<item description="The volume extinction coefficient is the fractional change of radiative flux per unit path length. Extinction is the sum of absorption and scattering, sometimes called &quot;attenuation&quot;. &quot;Extinction&quot; is the term most commonly used at optical wavelengths whereas &quot;attenuation&quot; is more often used at radio and radar wavelengths. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="VolumeExtinctionCoefficientInAirDueToAmbientAerosolParticles" title="Volume Extinction Coefficient in Air Due To Ambient Aerosol Particles" uid="volume_extinction_coefficient_in_air_due_to_ambient_aerosol_particles" units="m -1"/>
<item description="The volume extinction coefficient is the fractional change of radiative flux per unit path length. Extinction is the sum of absorption and scattering, sometimes called &quot;attenuation&quot;. &quot;Extinction&quot; is the term most commonly used at optical wavelengths whereas &quot;attenuation&quot; is more often used at radio and radar wavelengths. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Cloud particles&quot; means suspended liquid or ice water droplets. A coordinate of radiation_wavelength or radiation_frequency should be included to specify either the wavelength or frequency." label="VolumeExtinctionCoefficientInAirDueToCloudParticles" title="Volume Extinction Coefficient in Air Due To Cloud Particles" uid="volume_extinction_coefficient_in_air_due_to_cloud_particles" units="m-1"/>
<item description="&quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y." label="VolumeFractionOfClayInSoil" title="Volume Fraction of Clay in Soil" uid="volume_fraction_of_clay_in_soil" units="1"/>
<item description="&quot;Condensed water&quot; means liquid and ice. &quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y." label="VolumeFractionOfCondensedWaterInSoil" title="Volume Fraction of Condensed Water in Soil" uid="volume_fraction_of_condensed_water_in_soil" units="1"/>
<item description="&quot;Condensed water&quot; means liquid and ice. &quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y.  When soil moisture equals or exceeds the critical point evapotranspiration takes place at the potential rate and is controlled by the ambient meteorological conditions (temperature, wind, relative humidity).  Evapotranspiration is the sum of evaporation and plant transpiration.  Potential evapotranspiration is the rate at which evapotranspiration would occur under ambient conditions from a uniformly vegetated area when the water supply is not limiting." label="VolumeFractionOfCondensedWaterInSoilAtCriticalPoint" title="Volume Fraction of Condensed Water in Soil At Critical Point" uid="volume_fraction_of_condensed_water_in_soil_at_critical_point" units="1"/>
<item description="&quot;Condensed water&quot; means liquid and ice. &quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y. The field capacity of soil is the maximum content of water it can retain against gravitational drainage." label="VolumeFractionOfCondensedWaterInSoilAtFieldCapacity" title="Volume Fraction of Condensed Water in Soil At Field Capacity" uid="volume_fraction_of_condensed_water_in_soil_at_field_capacity" units="1"/>
<item description="&quot;Condensed water&quot; means liquid and ice. &quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y. The wilting point of soil is the water content below which plants cannot extract sufficient water to balance their loss through transpiration." label="VolumeFractionOfCondensedWaterInSoilAtWiltingPoint" title="Volume Fraction of Condensed Water in Soil At Wilting Point" uid="volume_fraction_of_condensed_water_in_soil_at_wilting_point" units="1"/>
<item description="&quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y.  &quot;Condensed water&quot; means liquid and ice.  &quot;Volume_fraction_of_condensed_water_in_soil_pores&quot; is the ratio of the volume of condensed water in soil pores to the volume of the pores themselves." label="VolumeFractionOfCondensedWaterInSoilPores" title="Volume Fraction of Condensed Water in Soil Pores" uid="volume_fraction_of_condensed_water_in_soil_pores" units="1"/>
<item description="&quot;frozen_water&quot; means ice. &quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y." label="VolumeFractionOfFrozenWaterInSoil" title="Volume Fraction of Frozen Water in Soil" uid="volume_fraction_of_frozen_water_in_soil" units="1"/>
<item description="&quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y." label="VolumeFractionOfOxygenInSeaWater" title="Volume Fraction of Oxygen in Sea Water" uid="volume_fraction_of_oxygen_in_sea_water" units="1"/>
<item description="&quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y." label="VolumeFractionOfSandInSoil" title="Volume Fraction of Sand in Soil" uid="volume_fraction_of_sand_in_soil" units="1"/>
<item description="&quot;Volume fraction&quot; is used in the construction volume_fraction_of_X_in_Y, where X is a material constituent of Y." label="VolumeFractionOfSiltInSoil" title="Volume Fraction of Silt in Soil" uid="volume_fraction_of_silt_in_soil" units="1"/>
<item description="&quot;ratio_of_X_to_Y&quot; means X/Y. &quot;stp&quot; means standard temperature (0 degC) and pressure (101325 Pa)." label="VolumeMixingRatioOfOxygenAtStpInSeaWater" title="Volume Mixing Ratio of Oxygen At Stp in Sea Water" uid="volume_mixing_ratio_of_oxygen_at_stp_in_sea_water" units="1"/>
<item description="The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with &quot;specific_&quot; instead of &quot;volume_&quot;. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths unless a coordinate of &quot;radiation_wavelength&quot; or &quot;radiation_frequency&quot; is included to specify the wavelength. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exist in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity at which the quantity described by the standard name applies, provide a scalar coordinate variable with the standard name of &quot;relative_humidity&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="VolumeScatteringCoefficientInAirDueToAmbientAerosolParticles" title="Volume Scattering Coefficient in Air Due To Ambient Aerosol Particles" uid="volume_scattering_coefficient_in_air_due_to_ambient_aerosol_particles" units="m-1"/>
<item description="The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with &quot;specific_&quot; instead of &quot;volume_&quot;. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths unless a coordinate of &quot;radiation_wavelength&quot; or &quot;radiation_frequency&quot; is included to specify the wavelength. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Dried_aerosol&quot; means that the aerosol sample has been dried from the ambient state before sizing, but that the dry state (relative humidity less than 40 per cent) has not necessarily been reached. To specify the relative humidity at which the sample was measured, provide a scalar coordinate variable with the standard name of &quot;relative_humidity&quot;. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="VolumeScatteringCoefficientInAirDueToDriedAerosolParticles" title="Volume Scattering Coefficient in Air Due To Dried Aerosol Particles" uid="volume_scattering_coefficient_in_air_due_to_dried_aerosol_particles" units="m-1"/>
<item description="Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The volume scattering/absorption/attenuation coefficient is the fractional change of radiative flux per unit path length due to the stated process. Coefficients with canonical units of m2 s-1 i.e. multiplied by density have standard names with specific_ instead of volume_. The scattering/absorption/attenuation coefficient is assumed to be an integral over all wavelengths, unless a coordinate of radiation_wavelength is included to specify the wavelength. Scattering of radiation is its deflection from its incident path without loss of energy. The (range of) direction(s) of scattering can be specified by a coordinate of scattering_angle." label="VolumeScatteringCoefficientOfRadiativeFluxInSeaWater" title="Volume Scattering Coefficient of Radiative Flux in Sea Water" uid="volume_scattering_coefficient_of_radiative_flux_in_sea_water" units="m-1"/>
<item description="Radiative flux is the sum of shortwave and longwave radiative fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. Scattering of radiation is its deflection from its incident path without loss of energy. The volume scattering function is the fraction of incident radiative flux scattered into unit solid angle per unit path length. The (range of) direction(s) of scattering can be specified by a coordinate of scattering_angle." label="VolumeScatteringFunctionOfRadiativeFluxInSeaWater" title="Volume Scattering Function of Radiative Flux in Sea Water" uid="volume_scattering_function_of_radiative_flux_in_sea_water" units="m-1 sr-1"/>
<item description="&quot;Amount&quot; means mass per unit area. &quot;Water&quot; means water in all phases. Evaporation is the conversion of liquid or solid into vapor. (The conversion of solid alone into vapor is called &quot;sublimation&quot;.)" label="WaterEvaporationAmount" title="Water Evaporation Amount" uid="water_evaporation_amount" units="kg m-2"/>
<item description="&quot;Amount&quot; means mass per unit area. &quot;Water&quot; means water in all phases. &quot;Canopy&quot; means the plant or vegetation canopy. Evaporation is the conversion of liquid or solid into vapor. (The conversion of solid alone into vapor is called &quot;sublimation&quot;.)" label="WaterEvaporationAmountFromCanopy" title="Water Evaporation Amount From Canopy" uid="water_evaporation_amount_from_canopy" units="kg m-2"/>
<item description="Water means water in all phases. Evaporation is the conversion of liquid or solid into vapor. (The conversion of solid alone into vapor is called &quot;sublimation&quot;.) In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. Unless indicated in the cell_methods attribute, a quantity is assumed to apply to the whole area of each horizontal grid box. Previously, the qualifier where_type was used to specify that the quantity applies only to the part of the grid box of the named type.  Names containing the where_type qualifier are deprecated and newly created data should use the cell_methods attribute to indicate the horizontal area to which the quantity applies." label="WaterEvaporationFlux" title="Water Evaporation Flux" uid="water_evaporation_flux" units="kg m-2 s-1"/>
<item description="&quot;Water&quot; means water in all phases. &quot;Canopy&quot; means the plant or vegetation canopy. Evaporation is the conversion of liquid or solid into vapor. (The conversion of solid alone into vapor is called &quot;sublimation&quot;.) In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. Unless indicated in the cell_methods attribute, a quantity is assumed to apply to the whole area of each horizontal grid box. Previously, the qualifier where_type was used to specify that the quantity applies only to the part of the grid box of the named type.  Names containing the where_type qualifier are deprecated and newly created data should use the cell_methods attribute to indicate the horizontal area to which the quantity applies." label="WaterEvaporationFluxFromCanopy" title="Water Evaporation Flux From Canopy" uid="water_evaporation_flux_from_canopy" units="kg m-2 s-1"/>
<item description="&quot;Water&quot; means water in all phases. Evaporation is the conversion of liquid or solid into vapor. (The conversion of solid alone into vapor is called &quot;sublimation&quot;.) In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterEvaporationFluxFromSoil" title="Water Evaporation Flux From Soil" uid="water_evaporation_flux_from_soil" units="kg m-2 s-1"/>
<item description="&quot;Water&quot; means water in all phases. Flux correction is also called &quot;flux adjustment&quot;. A positive flux correction is downward i.e. added to the ocean. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterFluxCorrection" title="Water Flux Correction" uid="water_flux_correction" units="kg m-2 s-1"/>
<item description="&quot;Water&quot; means water in all phases. The water flux into sea water is the freshwater entering as a result of precipitation, evaporation, river inflow, sea ice effects and water flux relaxation and correction (if applied). In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterFluxIntoSeaWater" title="Water Flux Into Sea Water" uid="water_flux_into_sea_water" units="kg m-2 s-1"/>
<item description="The water flux into sea water is the freshwater entering as a result of precipitation, evaporation, river inflow, sea ice effects and water flux correction (if applied).  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase.  &quot;Sea ice thermodynamics&quot; refers to the addition or subtraction of mass due to surface and basal fluxes, i.e., due to melting, sublimation and fusion." label="WaterFluxIntoSeaWaterDueToSeaIceThermodynamics" title="Water Flux Into Sea Water Due To Sea Ice Thermodynamics" uid="water_flux_into_sea_water_due_to_sea_ice_thermodynamics" units="kg m-2 s-1"/>
<item description="The water flux into sea water is the freshwater entering as a result of precipitation, evaporation, river inflow, sea ice effects and water flux correction (if applied).  The water flux into sea water from icebergs is due to the melting of the iceberg. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterFluxIntoSeaWaterFromIcebergs" title="Water Flux Into Sea Water From Icebergs" uid="water_flux_into_sea_water_from_icebergs" units="kg m-2 s-1"/>
<item description="&quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The water flux into sea water from land ice is the freshwater entering the ocean as a result of runoff from the surface and base of the ice and melting from the ice shelf base and vertical ice front. For an area-average, the cell_methods attribute should be used to specify whether the average is over the area of the whole grid cell or the area of the ocean portion only." label="WaterFluxIntoSeaWaterFromLandIce" title="Water Flux Into Sea Water From Land Ice" uid="water_flux_into_sea_water_from_land_ice" units="kg m-2 s-1"/>
<item description="&quot;Water&quot; means water in all phases. The water flux or volume transport into sea water from rivers is the inflow to the ocean, often applied to the surface in ocean models. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterFluxIntoSeaWaterFromRivers" title="Water Flux Into Sea Water From Rivers" uid="water_flux_into_sea_water_from_rivers" units="kg m-2 s-1"/>
<item description="&quot;Water&quot; means water in all phases, including frozen i.e. ice and snow.  &quot;Downward&quot; indicates a vector component which is positive when directed downward (negative upward).  The surface water flux is the result of precipitation and evaporation.  The water flux into sea water is the freshwater entering as a result of precipitation, evaporation, river inflow, sea ice effects and water flux correction (if applied).  The water flux or volume transport into sea water from rivers is the inflow to the ocean, often applied to the surface in ocean models.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="WaterFluxIntoSeaWaterFromRiversAndSurfaceDownwardWaterFlux" title="Water Flux Into Sea Water From Rivers And Surface Downward Water Flux" uid="water_flux_into_sea_water_from_rivers_and_surface_downward_water_flux" units="kg m-2 s-1"/>
<item description="Water means water in all phases. The water_flux_into_sea_water_without_flux_correction  is the freshwater entering as a result of precipitation, evaporation, river inflow and sea ice effects.  The total water flux including any flux relaxation(s) or correction(s) is described by the standard name water_flux_into_sea_water.  In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterFluxIntoSeaWaterWithoutFluxCorrection" title="Water Flux Into Sea Water Without Flux Correction" uid="water_flux_into_sea_water_without_flux_correction" units="kg m-2 s-1"/>
<item description="&quot;Water&quot; means water in all phases.  The water_flux_out_of_sea_ice_and_sea_water is the freshwater  leaving the ocean as a result of precipitation, evaporation, river outflow and any water flux relaxation(s) and correction(s) that may have been applied. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterFluxOutOfSeaIceAndSeaWater" title="Water Flux Out of Sea Ice And Sea Water" uid="water_flux_out_of_sea_ice_and_sea_water" units="kg m-2 s-1"/>
<item description="The quantity water_flux_out_of_sea_water is the quantity with  standard name water_flux_into_sea_water multiplied by -1. &quot;Water&quot; means water in all phases. The water flux out of sea water is the freshwater leaving as a result of precipitation, evaporation, river outflow, sea-ice and any water flux relaxation(s) and correction(s) that may have been applied. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterFluxOutOfSeaWater" title="Water Flux Out of Sea Water" uid="water_flux_out_of_sea_water" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The water_flux_out_of_sea_water_due_to_newtonian_relaxation is the freshwater leaving as a result of the Newtonian relaxation of the sea surface salinity. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterFluxOutOfSeaWaterDueToNewtonianRelaxation" title="Water Flux Out of Sea Water Due To Newtonian Relaxation" uid="water_flux_out_of_sea_water_due_to_newtonian_relaxation" units="kg m-2 s-1"/>
<item description="The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Water&quot; means water in all phases. The water flux out of sea water is the freshwater leaving the sea water.  &quot;Sea ice thermodynamics&quot; refers to the addition or subtraction of sea ice mass due to surface and basal fluxes. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterFluxOutOfSeaWaterDueToSeaIceThermodynamics" title="Water Flux Out of Sea Water Due To Sea Ice Thermodynamics" uid="water_flux_out_of_sea_water_due_to_sea_ice_thermodynamics" units="kg m-2 s-1"/>
<item description="&quot;Amount&quot; means mass per unit area. &quot;Water&quot; means water in all phases. Evaporation is the conversion of liquid or solid into vapor. (The conversion of solid alone into vapor is called &quot;sublimation&quot;.) Potential evaporation is the rate at which evaporation would take place under unaltered ambient conditions (temperature, relative humidity, wind, etc.) if the supply of water were unlimited, as if from an open water surface." label="WaterPotentialEvaporationAmount" title="Water Potential Evaporation Amount" uid="water_potential_evaporation_amount" units="kg m-2"/>
<item description="&quot;Water&quot; means water in all phases. Evaporation is the conversion of liquid or solid into vapor. (The conversion of solid alone into vapor is called &quot;sublimation&quot;.) Potential evaporation is the rate at which evaporation would take place under unaltered ambient conditions (temperature, relative humidity, wind, etc.) if the supply of water were unlimited, as if from an open water surface. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterPotentialEvaporationFlux" title="Water Potential Evaporation Flux" uid="water_potential_evaporation_flux" units="kg m-2 s-1"/>
<item description="&quot;Water&quot; means water in all phases. Sublimation is the conversion of solid into vapor. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WaterSublimationFlux" title="Water Sublimation Flux" uid="water_sublimation_flux" units="kg m-2 s-1"/>
<item description="'Water surface height above reference datum' means the height of the upper surface of a body of liquid water, such as sea, lake or river, above an arbitrary reference datum. The altitude of the datum should be provided in a variable with standard name water_surface_reference_datum_altitude. The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="WaterSurfaceHeightAboveReferenceDatum" title="Water Surface Height Above Reference Datum" uid="water_surface_height_above_reference_datum" units="m"/>
<item description="Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level. 'Water surface reference datum altitude' means the altitude of the arbitrary datum referred to by a quantity with standard name 'water_surface_height_above_reference_datum'. The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="WaterSurfaceReferenceDatumAltitude" title="Water Surface Reference Datum Altitude" uid="water_surface_reference_datum_altitude" units="m"/>
<item description="The partial pressure of a gaseous constituent of air is the pressure which it alone would exert with unchanged temperature and number of moles per unit volume." label="WaterVaporPartialPressureInAir" title="Water Vapor Partial Pressure in Air" uid="water_vapor_partial_pressure_in_air" units="Pa"/>
<item description="Water vapor saturation deficit is the difference between the saturationwater vapor partial pressure and the actual water vapor partial pressure in air." label="WaterVaporSaturationDeficitInAir" title="Water Vapor Saturation Deficit in Air" uid="water_vapor_saturation_deficit_in_air" units="Pa"/>
<item description="The water flux or volume transport in rivers is the amount of water flowing in the river channel and flood plain. &quot;Water&quot; means water in all phases." label="WaterVolumeTransportInRiverChannel" title="Water Volume Transport in River Channel" uid="water_volume_transport_in_river_channel" units="m3 s-1"/>
<item description="&quot;Water&quot; means water in all phases. The water flux or volume transport into sea water from rivers is the inflow to the ocean, often applied to the surface in ocean models." label="WaterVolumeTransportIntoSeaWaterFromRivers" title="Water Volume Transport Into Sea Water From Rivers" uid="water_volume_transport_into_sea_water_from_rivers" units="m3 s-1"/>
<item description="Frequency is the number of oscillations of a wave per unit time." label="WaveFrequency" title="Wave Frequency" uid="wave_frequency" units="s-1"/>
<item description="A quantity with standard name Xward_Yward_derivative_of_geopotential is a second spatial derivative of geopotential, P, in the direction specified by X and Y, i.e., d2P/dXdY. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. &quot;Westward&quot; indicates a vector component which is positive when directed westward (negative eastward). &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). &quot;component_derivative_of_X&quot; means derivative of X with respect to distance in the component direction, which may be &quot;northward&quot;, &quot;southward&quot;, &quot;eastward&quot;, &quot;westward&quot;, &quot;x&quot; or &quot;y&quot;. The last two indicate derivatives along the axes of the grid, in the case where they are not true longitude and latitude." label="WestwardUpwardDerivativeOfGeopotential" title="Westward Upward Derivative of Geopotential" uid="westward_upward_derivative_of_geopotential" units="s-2"/>
<item description="A quantity with standard name Xward_Yward_derivative_of_geopotential is a second spatial derivative of geopotential, P, in the direction specified by X and Y, i.e., d2P/dXdY. Geopotential is the sum of the specific gravitational potential energy relative to the geoid and the specific centripetal potential energy. &quot;Westward&quot; indicates a vector component which is positive when directed westward (negative eastward). &quot;component_derivative_of_X&quot; means derivative of X with respect to distance in the component direction, which may be &quot;northward&quot;, &quot;southward&quot;, &quot;eastward&quot;, &quot;westward&quot;, &quot;x&quot; or &quot;y&quot;. The last two indicate derivatives along the axes of the grid, in the case where they are not true longitude and latitude." label="WestwardWestwardDerivativeOfGeopotential" title="Westward Westward Derivative of Geopotential" uid="westward_westward_derivative_of_geopotential" units="s-2"/>
<item description="Wet bulb potential temperature is the temperature a parcel of air would have if moved dry adiabatically until it reaches saturation and thereafter moist adiabatically to sea level pressure." label="WetBulbPotentialTemperature" title="Wet Bulb Potential Temperature" uid="wet_bulb_potential_temperature" units="K"/>
<item description="" label="WetBulbTemperature" title="Wet Bulb Temperature" uid="wet_bulb_temperature" units="K"/>
<item description="Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) In meteorological reports, the direction of the wind vector is usually (but not always) given as the direction from which it is blowing (wind_from_direction) (westerly, northerly, etc.). In other contexts, such as atmospheric modelling, it is often natural to give the direction in the usual manner of vectors as the heading or the direction to which it is blowing (wind_to_direction) (eastward, southward, etc.) &quot;from_direction&quot; is used in the construction X_from_direction and indicates the direction from which the velocity vector of X is coming." label="WindFromDirection" title="Wind From Direction" uid="wind_from_direction" units="degree"/>
<item description="Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="WindMixingEnergyFluxIntoSeaWater" title="Wind Mixing Energy Flux Into Sea Water" uid="wind_mixing_energy_flux_into_sea_water" units="W m-2"/>
<item description="Speed is the magnitude of velocity. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) The wind speed is the magnitude of the wind velocity." label="WindSpeed" title="Wind Speed" uid="wind_speed" units="m s-1"/>
<item description="Speed is the magnitude of velocity. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) The wind speed is the magnitude of the wind velocity. A gust is a sudden brief period of high wind speed. In an observed timeseries of wind speed, the gust wind speed can be indicated by a cell_methods of maximum for the time-interval. In an atmospheric model which has a parametrised calculation of gustiness, the gust wind speed may be separately diagnosed from the wind speed." label="WindSpeedOfGust" title="Wind Speed of Gust" uid="wind_speed_of_gust" units="m s-1"/>
<item description="Speed is the magnitude of velocity. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) The wind speed is the magnitude of the wind velocity. Wind speed shear is the derivative of wind speed with respect to height." label="WindSpeedShear" title="Wind Speed Shear" uid="wind_speed_shear" units="s-1"/>
<item description="Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.) In meteorological reports, the direction of the wind vector is usually (but not always) given as the direction from which it is blowing (wind_from_direction) (westerly, northerly, etc.). In other contexts, such as atmospheric modelling, it is often natural to give the direction in the usual manner of vectors as the heading or the direction to which it is blowing (wind_to_direction) (eastward, southward, etc.) &quot;to_direction&quot; is used in the construction X_to_direction and indicates the direction towards which the velocity vector of X is headed. The direction is a bearing in the usual geographical sense, measured positive clockwise from due north." label="WindToDirection" title="Wind To Direction" uid="wind_to_direction" units="degree"/>
<item description="&quot;Content&quot; indicates a quantity per unit area." label="WoodCarbonContent" title="Wood Carbon Content" uid="wood_carbon_content" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  &quot;Wood debris&quot; means dead organic matter composed of coarse wood.  It is distinct from litter." label="WoodDebrisCarbonContent" title="Wood Debris Carbon Content" uid="wood_debris_carbon_content" units="kg m-2"/>
<item description="&quot;component_derivative_of_X&quot; means the derivative of X with respect to distance in the component direction, which may be northward, southward, eastward, westward, x or y. The last two indicate derivatives along the axes of the grid,  whether or not they are true longitude and latitude. x_derivative_of_ocean_rigid_lid_pressure means (d/dx) of the ocean surface pressure, as derived by a rigid lid approximation, keeping the other horizontal coordinate (y, presumably) constant." label="XDerivativeOfOceanRigidLidPressure" title="X Derivative of Ocean Rigid Lid Pressure" uid="x_derivative_of_ocean_rigid_lid_pressure" units="Pa m-1"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="XHeatFluxInSeaWaterDueToAdvection" title="X Heat Flux in Sea Water Due To Advection" uid="x_heat_flux_in_sea_water_due_to_advection" units="W m-2"/>
<item description="&quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="XWind" title="X Wind" uid="x_wind" units="m s-1"/>
<item description="&quot;component_derivative_of_X&quot; means the derivative of X with respect to distance in the component direction, which may be northward, southward, eastward, westward, x or y. The last two indicate derivatives along the axes of the grid, whether or not they are true longitude and latitude. y_derivative_of_ocean_rigid_lid_pressure means (d/dy) of the ocean surface pressure, as derived by a rigid lid approximation, keeping the other horizontal coordinate (x, presumably) constant." label="YDerivativeOfOceanRigidLidPressure" title="Y Derivative of Ocean Rigid Lid Pressure" uid="y_derivative_of_ocean_rigid_lid_pressure" units="Pa m-1"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity named by omitting the phrase. In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics." label="YHeatFluxInSeaWaterDueToAdvection" title="Y Heat Flux in Sea Water Due To Advection" uid="y_heat_flux_in_sea_water_due_to_advection" units="W m-2"/>
<item description="&quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. Wind is defined as a two-dimensional (horizontal) air velocity vector, with no vertical component. (Vertical motion in the atmosphere has the standard name upward_air_velocity.)" label="YWind" title="Y Wind" uid="y_wind" units="m s-1"/>
<item description="Zenith angle is the angle to the local vertical; a value of zero is directly overhead." label="ZenithAngle" title="Zenith Angle" uid="zenith_angle" units="degree"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Absorption optical thickness&quot; means that part of the atmosphere optical thickness that is caused by the absorption of incident radiation. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. To specify the relative humidity and temperature at which the quantity described by the standard name applies, provide scalar coordinate variables with standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereAbsorptionOpticalThicknessDueToAmbientAerosol" title="Atmosphere Absorption Optical Thickness Due To Ambient Aerosol" uid="atmosphere_absorption_optical_thickness_due_to_ambient_aerosol" units="1"/>
<item description="&quot;condensed_water&quot; means liquid and ice. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereCloudCondensedWaterContent" title="Atmosphere Cloud Condensed Water Content" uid="atmosphere_cloud_condensed_water_content" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereCloudIceContent" title="Atmosphere Cloud Ice Content" uid="atmosphere_cloud_ice_content" units="kg m-2"/>
<item description="&quot;condensed_water&quot; means liquid and ice. Convective cloud is that produced by the convection schemes in an atmosphere model.  &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used." label="AtmosphereConvectiveCloudCondensedWaterContent" title="Atmosphere Convective Cloud Condensed Water Content" uid="atmosphere_convective_cloud_condensed_water_content" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for ammonium is NH4." label="AtmosphereMassContentOfAmmoniumDryAerosol" title="Atmosphere Mass Content of Ammonium Dry Aerosol" uid="atmosphere_mass_content_of_ammonium_dry_aerosol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="AtmosphereMassContentOfBlackCarbonDryAerosol" title="Atmosphere Mass Content of Black Carbon Dry Aerosol" uid="atmosphere_mass_content_of_black_carbon_dry_aerosol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="AtmosphereMassContentOfDustDryAerosol" title="Atmosphere Mass Content of Dust Dry Aerosol" uid="atmosphere_mass_content_of_dust_dry_aerosol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for the nitrate anion is NO3-." label="AtmosphereMassContentOfNitrateDryAerosol" title="Atmosphere Mass Content of Nitrate Dry Aerosol" uid="atmosphere_mass_content_of_nitrate_dry_aerosol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="AtmosphereMassContentOfParticulateOrganicMatterDryAerosol" title="Atmosphere Mass Content of Particulate Organic Matter Dry Aerosol" uid="atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="AtmosphereMassContentOfPrimaryParticulateOrganicMatterDryAerosol" title="Atmosphere Mass Content of Primary Particulate Organic Matter Dry Aerosol" uid="atmosphere_mass_content_of_primary_particulate_organic_matter_dry_aerosol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="AtmosphereMassContentOfSeasaltDryAerosol" title="Atmosphere Mass Content of Seasalt Dry Aerosol" uid="atmosphere_mass_content_of_seasalt_dry_aerosol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter &quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="AtmosphereMassContentOfSecondaryParticulateOrganicMatterDryAerosol" title="Atmosphere Mass Content of Secondary Particulate Organic Matter Dry Aerosol" uid="atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for the sulfate anion is SO4(2-)." label="AtmosphereMassContentOfSulfateDryAerosol" title="Atmosphere Mass Content of Sulfate Dry Aerosol" uid="atmosphere_mass_content_of_sulfate_dry_aerosol" units="kg m-2"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToDustAmbientAerosol" title="Atmosphere Optical Thickness Due To Dust Ambient Aerosol" uid="atmosphere_optical_thickness_due_to_dust_ambient_aerosol" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToParticulateOrganicMatterAmbientAerosol" title="Atmosphere Optical Thickness Due To Particulate Organic Matter Ambient Aerosol" uid="atmosphere_optical_thickness_due_to_particulate_organic_matter_ambient_aerosol" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm1 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 1 micrometer. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToPm1AmbientAerosol" title="Atmosphere Optical Thickness Due To Pm1 Ambient Aerosol" uid="atmosphere_optical_thickness_due_to_pm1_ambient_aerosol" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToSeasaltAmbientAerosol" title="Atmosphere Optical Thickness Due To Seasalt Ambient Aerosol" uid="atmosphere_optical_thickness_due_to_seasalt_ambient_aerosol" units="1"/>
<item description="The optical thickness is the integral along the path of radiation of a volume scattering/absorption/attenuation coefficient. The radiative flux is reduced by a factor exp(-optical_thickness) on traversing the path. The atmosphere optical thickness applies to radiation passing through the entire atmosphere. A coordinate variable of radiation_wavelength or radiation_frequency can be specified to indicate that the optical thickness applies at specific wavelengths or frequencies. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;atmosphere_optical_thickness_due_to_water_in_ambient_aerosol&quot; refers to the optical thickness due to the water that is associated with aerosol particles due to hygroscopic growth in ambient air, affecting the radius and refractive index of the particle. It corresponds to the difference between the total dry aerosol optical thickness and the total ambient aerosol optical thickness. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase." label="AtmosphereOpticalThicknessDueToWaterInAmbientAerosol" title="Atmosphere Optical Thickness Due To Water in Ambient Aerosol" uid="atmosphere_optical_thickness_due_to_water_in_ambient_aerosol" units="1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. Atmosphere water vapor content is sometimes referred to as &quot;precipitable water&quot;, although this term does not imply the water could all be precipitated." label="AtmosphereWaterVaporContent" title="Atmosphere Water Vapor Content" uid="atmosphere_water_vapor_content" units="kg m-2"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. Examples of &quot;forestry and agricultural products&quot; are paper, cardboard, furniture, timber for construction, biofuels and food for both humans and livestock. Models that simulate land use changes have one or more pools of carbon that represent these products in order to conserve carbon and allow its eventual release into the atmosphere, for example, when the products decompose in landfill sites." label="CarbonContentOfProductsOfAnthropogenicLandUseChange" title="Carbon Content of Products of Anthropogenic Land Use Change" uid="carbon_content_of_products_of_anthropogenic_land_use_change" units="kg m-2"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="LargeScaleGraupelFlux" title="Large Scale Graupel Flux" uid="large_scale_graupel_flux" units="kg m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="LargeScaleRainfallFlux" title="Large Scale Rainfall Flux" uid="large_scale_rainfall_flux" units="kg m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics.  Stratiform precipitation, whether liquid or frozen, is precipitation that formed in stratiform cloud." label="LargeScaleSnowfallFlux" title="Large Scale Snowfall Flux" uid="large_scale_snowfall_flux" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="LiquidWaterContentOfSnowLayer" title="Liquid Water Content of Snow Layer" uid="liquid_water_content_of_snow_layer" units="kg m-2"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for ammonium is NH4." label="MassConcentrationOfAmmoniumDryAerosolInAir" title="Mass Concentration of Ammonium Dry Aerosol in Air" uid="mass_concentration_of_ammonium_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="MassConcentrationOfBlackCarbonDryAerosolInAir" title="Mass Concentration of Black Carbon Dry Aerosol in Air" uid="mass_concentration_of_black_carbon_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassConcentrationOfDustDryAerosolInAir" title="Mass Concentration of Dust Dry Aerosol in Air" uid="mass_concentration_of_dust_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for the nitrate anion is NO3-." label="MassConcentrationOfNitrateDryAerosolInAir" title="Mass Concentration of Nitrate Dry Aerosol in Air" uid="mass_concentration_of_nitrate_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The term &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon. It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="MassConcentrationOfParticulateOrganicMatterDryAerosolInAir" title="Mass Concentration of Particulate Organic Matter Dry Aerosol in Air" uid="mass_concentration_of_particulate_organic_matter_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="MassConcentrationOfPrimaryParticulateOrganicMatterDryAerosolInAir" title="Mass Concentration of Primary Particulate Organic Matter Dry Aerosol in Air" uid="mass_concentration_of_primary_particulate_organic_matter_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassConcentrationOfSeasaltDryAerosolInAir" title="Mass Concentration of Seasalt Dry Aerosol in Air" uid="mass_concentration_of_seasalt_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter&quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="MassConcentrationOfSecondaryParticulateOrganicMatterDryAerosolInAir" title="Mass Concentration of Secondary Particulate Organic Matter Dry Aerosol in Air" uid="mass_concentration_of_secondary_particulate_organic_matter_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The chemical formula for the sulfate anion is SO4(2-)." label="MassConcentrationOfSulfateDryAerosolInAir" title="Mass Concentration of Sulfate Dry Aerosol in Air" uid="mass_concentration_of_sulfate_dry_aerosol_in_air" units="kg m-3"/>
<item description="Mass concentration means mass per unit volume and is used in the construction mass_concentration_of_X_in_Y, where X is a material constituent of Y. A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles." label="MassConcentrationOfWaterInAmbientAerosolInAir" title="Mass Concentration of Water in Ambient Aerosol in Air" uid="mass_concentration_of_water_in_ambient_aerosol_in_air" units="kg m-3"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  &quot;Mass_fraction_of_ammonium&quot; means that the mass is expressed as mass of NH4. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfAmmoniumDryAerosolInAir" title="Mass Fraction of Ammonium Dry Aerosol in Air" uid="mass_fraction_of_ammonium_dry_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. Chemically, 'elemental carbon' is the carbonaceous fraction of particulate matter that is thermally stable in an inert atmosphere to high temperatures near 4000K and can only be gasified by oxidation starting at temperatures above 340 C. It is assumed to be inert and non-volatile under atmospheric conditions and insoluble in any solvent (Ogren and Charlson, 1983)." label="MassFractionOfBlackCarbonDryAerosolInAir" title="Mass Fraction of Black Carbon Dry Aerosol in Air" uid="mass_fraction_of_black_carbon_dry_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfDustDryAerosolInAir" title="Mass Fraction of Dust Dry Aerosol in Air" uid="mass_fraction_of_dust_dry_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Mass_fraction_of_nitrate&quot; means that the mass is expressed as mass of NO3. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfNitrateDryAerosolInAir" title="Mass Fraction of Nitrate Dry Aerosol in Air" uid="mass_fraction_of_nitrate_dry_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;particulate_organic_matter_dry_aerosol&quot; means all particulate organic matter dry aerosol except elemental carbon.  It is the sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol." label="MassFractionOfParticulateOrganicMatterDryAerosolInAir" title="Mass Fraction of Particulate Organic Matter Dry Aerosol in Air" uid="mass_fraction_of_particulate_organic_matter_dry_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). A chemical species denoted by X may be described by a single term such as &quot;nitrogen&quot; or a phrase such as &quot;nox_expressed_as_nitrogen&quot;. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. &quot;Pm2p5 aerosol&quot; is an air pollutant with an aerodynamic diameter of less than or equal to 2.5 micrometers. To specify the relative humidity and temperature at which the particle size applies, provide scalar coordinate variables with the standard names of &quot;relative_humidity&quot; and &quot;air_temperature&quot;." label="MassFractionOfPm2p5AmbientAerosolInAir" title="Mass Fraction of Pm2p5 Ambient Aerosol in Air" uid="mass_fraction_of_pm2p5_ambient_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfSeasaltDryAerosolInAir" title="Mass Fraction of Seasalt Dry Aerosol in Air" uid="mass_fraction_of_seasalt_dry_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter&quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol." label="MassFractionOfSecondaryParticulateOrganicMatterDryAerosolInAir" title="Mass Fraction of Secondary Particulate Organic Matter Dry Aerosol in Air" uid="mass_fraction_of_secondary_particulate_organic_matter_dry_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X).  &quot;Mass_fraction_of_sulfate&quot; means that the mass is expressed as mass of SO4. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake." label="MassFractionOfSulfateDryAerosolInAir" title="Mass Fraction of Sulfate Dry Aerosol in Air" uid="mass_fraction_of_sulfate_dry_aerosol_in_air" units="1"/>
<item description="Mass fraction is used in the construction mass_fraction_of_X_in_Y, where X is a material constituent of Y. It means the ratio of the mass of X to the mass of Y (including X). &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles." label="MassFractionOfWaterInAmbientAerosolInAir" title="Mass Fraction of Water in Ambient Aerosol in Air" uid="mass_fraction_of_water_in_ambient_aerosol_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, where X is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Inorganic bromine&quot;, sometimes referred to as Bry, describes a family of chemical species which result from the degradation of bromine containing source gases (halons, methyl bromide, VSLS) and natural inorganic bromine sources such as volcanoes, seasalt and other aerosols. &quot;Inorganic bromine&quot; is the term used in standard names for all species belonging to the family that are represented within a given model. The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. Standard names that use the term &quot;brox&quot; are used for quantities that contain all inorganic bromine species except HBr and BrONO2." label="MoleFractionOfTotalInorganicBromineInAir" title="Mole Fraction of Total Inorganic Bromine in Air" uid="mole_fraction_of_total_inorganic_bromine_in_air" units="1"/>
<item description="Mole fraction is used in the construction mole_fraction_of_X_in_Y, whereX is a material constituent of Y.  A chemical species denoted by X may be described by a single term such as 'nitrogen' or a phrase such as 'nox_expressed_as_nitrogen'. &quot;Noy&quot; describes a family of chemical species. The family usually includes atomic nitrogen (N), nitrogen monoxide (NO), nitrogen dioxide (NO2), dinitrogen pentoxide (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), bromine nitrate (BrONO2) , chlorine nitrate (ClONO2) and organic nitrates (most notably peroxyacetyl nitrate, sometimes referred to as PAN, (CH3COO2NO2)). The list of individual species that are included in a quantity having a group chemical standard name can vary between models.  Where possible, the data variable should be accompanied by a complete description of the species represented, for example, by using a comment attribute. The phrase 'expressed_as' is used in the construction A_expressed_as_B, whereB is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="MoleFractionOfTotalReactiveNitrogenInAir" title="Mole Fraction of Total Reactive Nitrogen in Air" uid="mole_fraction_of_total_reactive_nitrogen_in_air" units="1"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for carbon monoxide is CO." label="MolesOfCarbonMonoxideInAtmosphere" title="Moles of Carbon Monoxide in Atmosphere" uid="moles_of_carbon_monoxide_in_atmosphere" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="MolesOfMethaneInAtmosphere" title="Moles of Methane in Atmosphere" uid="moles_of_methane_in_atmosphere" units="mol"/>
<item description="The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere, i.e. summed over the atmospheric column and over the entire globe. The chemical formula for nitrous oxide is N2O." label="MolesOfNitrousOxideInAtmosphere" title="Moles of Nitrous Oxide in Atmosphere" uid="moles_of_nitrous_oxide_in_atmosphere" units="mol"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. &quot;Calcareous phytoplankton&quot; are phytoplankton that produce calcite. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. Calcite is a mineral that is a polymorph of calcium carbonate. The chemical formula of calcite is CaCO3. Standard names also exist for aragonite, another polymorph of calcium carbonate." label="NetPrimaryMoleProductivityOfCarbonByCalcareousPhytoplankton" title="Net Primary Mole Productivity of Carbon by Calcareous Phytoplankton" uid="net_primary_mole_productivity_of_carbon_by_calcareous_phytoplankton" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. Diatoms are single-celled phytoplankton with an external skeleton made of silica. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfCarbonByDiatoms" title="Net Primary Mole Productivity of Carbon by Diatoms" uid="net_primary_mole_productivity_of_carbon_by_diatoms" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. In ocean modelling, diazotrophs are phytoplankton of the phylum cyanobacteria distinct from other phytoplankton groups in their ability to fix nitrogen gas in addition to nitrate and ammonium. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfCarbonByDiazotrophs" title="Net Primary Mole Productivity of Carbon by Diazotrophs" uid="net_primary_mole_productivity_of_carbon_by_diazotrophs" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. &quot;Miscellaneous phytoplankton&quot; are all those phytoplankton that are not diatoms, diazotrophs, calcareous phytoplankton, picophytoplankton or other seperately named components of the phytoplankton population. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfCarbonByMiscellaneousPhytoplankton" title="Net Primary Mole Productivity of Carbon by Miscellaneous Phytoplankton" uid="net_primary_mole_productivity_of_carbon_by_miscellaneous_phytoplankton" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. Picophytoplankton are phytoplankton of less than 2 micrometers in size. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfCarbonByPicophytoplankton" title="Net Primary Mole Productivity of Carbon by Picophytoplankton" uid="net_primary_mole_productivity_of_carbon_by_picophytoplankton" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; refers to the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. &quot;Nitrate utilization&quot; means net primary production by phytoplankton based on nitrate alone. Phytoplankton are autotrophic prokaryotic or eukaryotic algae that live near the water surface where there is sufficient light to support photosynthesis. The chemical formula for the nitrate anion is NO3-. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryMoleProductivityOfCarbonDueToNitrateUtilization" title="Net Primary Mole Productivity of Carbon Due To Nitrate Utilization" uid="net_primary_mole_productivity_of_carbon_due_to_nitrate_utilization" units="mol m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A. " label="NetPrimaryProductivityOfCarbonAccumulatedInLeaves" title="Net Primary Productivity of Carbon Accumulated in Leaves" uid="net_primary_productivity_of_carbon_accumulated_in_leaves" units="kg m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryProductivityOfCarbonAccumulatedInRoots" title="Net Primary Productivity of Carbon Accumulated in Roots" uid="net_primary_productivity_of_carbon_accumulated_in_roots" units="kg m-2 s-1"/>
<item description="&quot;Production of carbon&quot; means the production of biomass expressed as the mass of carbon which it contains. Net primary production is the excess of gross primary production (rate of synthesis of biomass from inorganic precursors) by autotrophs (&quot;producers&quot;), for example, photosynthesis in plants or phytoplankton, over the rate at which the autotrophs themselves respire some of this biomass. &quot;Productivity&quot; means production per unit area. The phrase &quot;expressed_as&quot; is used in the construction A_expressed_as_B, where B is a chemical constituent of A. It means that the quantity indicated by the standard name is calculated solely with respect to the B contained in A, neglecting all other chemical constituents of A." label="NetPrimaryProductivityOfCarbonAccumulatedInWood" title="Net Primary Productivity of Carbon Accumulated in Wood" uid="net_primary_productivity_of_carbon_accumulated_in_wood" units="kg m-2 s-1"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles." label="NumberConcentrationOfAmbientAerosolInAir" title="Number Concentration of Ambient Aerosol in Air" uid="number_concentration_of_ambient_aerosol_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. Coarse mode aerosol particles have a diameter of more than 1 micrometer." label="NumberConcentrationOfCoarseModeAmbientAerosolInAir" title="Number Concentration of Coarse Mode Ambient Aerosol in Air" uid="number_concentration_of_coarse_mode_ambient_aerosol_in_air" units="m-3"/>
<item description="&quot;Number concentration&quot; means the number of particles or other specified objects per unit volume. &quot;Ambient_aerosol&quot; means that the aerosol is measured or modelled at the ambient state of pressure, temperature and relative humidity that exists in its immediate environment. &quot;Ambient aerosol particles&quot; are aerosol particles that have taken up ambient water through hygroscopic growth. The extent of hygroscopic growth depends on the relative humidity and the composition of the particles. Nucleation mode aerosol particles have a diameter of less than 3 nanometers." label="NumberConcentrationOfNucleationModeAmbientAerosolInAir" title="Number Concentration of Nucleation Mode Ambient Aerosol in Air" uid="number_concentration_of_nucleation_mode_ambient_aerosol_in_air" units="m-3"/>
<item description="&quot;Temperature in surface snow&quot; is the bulk temperature of the snow, not the surface (skin) temperature.  The surface called &quot;surface&quot; means the lower boundary of the atmosphere." label="SnowTemperature" title="Snow Temperature" uid="snow_temperature" units="K"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles.  &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time. The chemical formula for ammonium is NH4." label="TendencyOfAtmosphereMassContentOfAmmoniumDryAerosolDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Ammonium Dry Aerosol Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_ammonium_dry_aerosol_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a  single term in a sum of terms which together compose the general quantity  named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling." label="TendencyOfAtmosphereMassContentOfPrimaryParticulateOrganicMatterDryAerosolDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Primary Particulate Organic Matter Dry Aerosol Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_primary_particulate_organic_matter_dry_aerosol_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself.  Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol.&quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon.  The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Emission&quot; means emission from a primary source located anywhere within the atmosphere, including at the lower boundary (i.e. the surface of the earth).  &quot;Emission&quot; is a process entirely distinct from &quot;re-emission&quot; which is used in some standard names." label="TendencyOfAtmosphereMassContentOfPrimaryParticulateOrganicMatterDryAerosolDueToEmission" title="Tendency of Atmosphere Mass Content of Primary Particulate Organic Matter Dry Aerosol Due To Emission" uid="tendency_of_atmosphere_mass_content_of_primary_particulate_organic_matter_dry_aerosol_due_to_emission" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time. &quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol takes up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the aerosol. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Primary particulate organic matter &quot; means all organic matter emitted directly to the atmosphere as particles except elemental carbon. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation." label="TendencyOfAtmosphereMassContentOfPrimaryParticulateOrganicMatterDryAerosolDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Primary Particulate Organic Matter Dry Aerosol Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_primary_particulate_organic_matter_dry_aerosol_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including content_of_atmosphere_layer are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. The specification of a physical process by the phrase due_to_process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Dry deposition&quot; is the sum of turbulent deposition and gravitational settling. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSecondaryParticulateOrganicMatterDryAerosolDueToDryDeposition" title="Tendency of Atmosphere Mass Content of Secondary Particulate Organic Matter Dry Aerosol Due To Dry Deposition" uid="tendency_of_atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol_due_to_dry_deposition" units="kg m-2 s-1"/>
<item description="&quot;Content&quot; indicates a quantity per unit area. The &quot;atmosphere content&quot; of a quantity refers to the vertical integral from the surface to the top of the atmosphere. For the content between specified levels in the atmosphere, standard names including &quot;content_of_atmosphere_layer&quot; are used. The mass is the total mass of the particles. &quot;Aerosol&quot; means the system of suspended liquid or solid particles in air (except cloud droplets) and their carrier gas, the air itself. Aerosol particles take up ambient water (a process known as hygroscopic growth) depending on the relative humidity and the composition of the particles. &quot;Dry aerosol particles&quot; means aerosol particles without any water uptake. &quot;Secondary particulate organic matter&quot; means particulate organic matter formed within the atmosphere from gaseous precursors. The sum of primary_particulate_organic_matter_dry_aerosol and secondary_particulate_organic_matter_dry_aerosol is particulate_organic_matter_dry_aerosol. The specification of a physical process by the phrase &quot;due_to_&quot; process means that the quantity named is a single term in a sum of terms which together compose the general quantity named by omitting the phrase. &quot;Wet deposition&quot; means deposition by precipitation. &quot;tendency_of_X&quot; means derivative of X with respect to time." label="TendencyOfAtmosphereMassContentOfSecondaryParticulateOrganicMatterDryAerosolDueToWetDeposition" title="Tendency of Atmosphere Mass Content of Secondary Particulate Organic Matter Dry Aerosol Due To Wet Deposition" uid="tendency_of_atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol_due_to_wet_deposition" units="kg m-2 s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere,i.e. summed over the atmospheric column and over the entire globe. The chemical formula ofcarbon monoxide is CO." label="TendencyOfMolesOfCarbonMonoxideInAtmosphere" title="Tendency of Moles of Carbon Monoxide in Atmosphere" uid="tendency_of_moles_of_carbon_monoxide_in_atmosphere" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;troposphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of carbon monoxide is CO." label="TendencyOfMolesOfCarbonMonoxideInTroposphere" title="Tendency of Moles of Carbon Monoxide in Troposphere" uid="tendency_of_moles_of_carbon_monoxide_in_troposphere" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X in the entire atmosphere,i.e. summed over the atmospheric column and over the entire globe. The chemical formula for methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes.  Thereare standard names for the alkane group as well as for some of the individual species." label="TendencyOfMolesOfMethaneInAtmosphere" title="Tendency of Moles of Methane in Atmosphere" uid="tendency_of_moles_of_methane_in_atmosphere" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  &quot;troposphere_moles_of_X&quot; means the total number of moles of X contained in the troposphere, i.e, summed over that part of the atmospheric column and over the entire globe.  The chemical formula of methane is CH4. Methane is a member of the group of hydrocarbons known as alkanes.  There are standard names for the alkane group as well as for some of the individual species." label="TendencyOfMolesOfMethaneInTroposphere" title="Tendency of Moles of Methane in Troposphere" uid="tendency_of_moles_of_methane_in_troposphere" units="mol s-1"/>
<item description="&quot;tendency_of_X&quot; means derivative of X with respect to time.  The construction &quot;atmosphere_moles_of_X&quot; means the total number of moles of X contained in the entire atmosphere, i.e, summed over the atmospheric column and over the entire globe.  The chemical formula of nitrous oxide is N2O." label="TendencyOfMolesOfNitrousOxideInAtmosphere" title="Tendency of Moles of Nitrous Oxide in Atmosphere" uid="tendency_of_moles_of_nitrous_oxide_in_atmosphere" units="mol s-1"/>
</standardname>
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<var id="var" label="var" title="1.2 MIP Variable" uid="SECTION:var" useClass="vocab">
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<item description="" id="abs550aer" label="abs550aer" procComment="" procnote="" prov="CMIP5_aero" provmip="AerChemMIP" sn="atmosphere_absorption_optical_thickness_due_to_ambient_aerosol" title="Ambient Aerosol Absorption Optical Thickness at 550 nm" uid="0baf6a333b91c4db341b515c28cd2c05" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Specific mass balance means the net rate at which ice is added per unit area at the land ice surface. Computed as the total surface mass balance on the land ice portion of the grid cell divided by land ice area in the grid cell. A negative value means loss of ice" id="acabf" label="acabf" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_surface_specific_mass_balance_flux" title="Surface Mass Balance flux" uid="59147580-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Age of Snow (when computing the time-mean here, the time samples, weighted by the mass of snow on the land portion of the grid cell, are accumulated and then divided by the sum of the weights.  Reported as missing data in regions free of snow on land." id="agesno" label="agesno" procComment="" procnote="wm" prov="CMIP5_LImon,PMIP3_LIclim,PMIP3_LImon" provmip="CMIP5" sn="age_of_surface_snow" title="Mean Age of Snow" uid="51e0588121783d77407236e0d2eb5d14" unid="fd70cd76-3468-11e6-ba71-5404a60d96b5" units="day"/>
<item description="Time elapsed since water was last in surface layer of the ocean." id="agessc" label="agessc" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_age_since_surface_contact" title="Sea Water Age Since Surface Contact" uid="1bb6dca6b08a4e887ded8a455ef04941" unid="fd729ae8-3468-11e6-ba71-5404a60d96b5" units="yr"/>
<item description="" id="airmass" label="airmass" procComment="" procnote="vi" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_mass_of_air_per_unit_area" title="Vertically integrated mass content of air in layer" uid="5eac89f6f61b0e154c5add397fc41c46" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="albc" label="albc" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="canopy_albedo" title="Canopy Albedo" uid="590e736a-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="albdiffbnd" label="albdiffbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="band_diffuse_albedo" title="Diffuse surface albedo for each band" uid="59139cfa-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="albdirbnd" label="albdirbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="band_direct_albedo" title="Direct surface albedo for each band" uid="590f3f16-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="ISCCP Mean Cloud Albedo. Time-means are weighted by the ISCCP Total Cloud Fraction {:cltisccp} - see  http://cfmip.metoffice.com/COSP.html" id="albisccp" label="albisccp" procComment="" procnote="" prov="CMIP5_cfDay,CMIP5_cfMon" provmip="CMIP5" sn="cloud_albedo" title="ISCCP Mean Cloud Albedo" uid="bb4d31072e09cd4935f1c20a2c533bbd" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Grid cell average albedo for all wavelengths." id="albs" label="albs" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="surface_albedo" title="Surface Albedo" uid="7799323bb6289c40376760b842d60e61" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Albedo of the snow-covered surface, averaged over the grid cell." id="albsn" label="albsn" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="snow_and_ice_albedo" title="Snow Albedo" uid="590e12ee-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="albsrfc" label="albsrfc" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="surface_albedo" title="surface albedo" uid="3d2a28d882e00559e5c2a779ff420de6" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="aerosol optical depth at 550 nm due to stratospheric volcanic aerosols" id="aod550volso4" label="aod550volso4" procComment="" procnote="" prov="CMIP6 endorsement [VolMIP]" provmip="VolMIP" sn="aerosol_optical_depth_due_to_stratospheric_volcanic_aerosols" title="Aerosol optical depth at 550 nm due to stratospheric volcanic aerosols" uid="5914c6e8-9e49-11e5-803c-0d0b866b59f3" unid="fd701138-3468-11e6-ba71-5404a60d96b5" units="1e-09"/>
<item description="Sum of particulate aragonite components (e.g. Phytoplankton, Detrital, etc.)" id="arag" label="arag" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_aragonite_expressed_as_carbon_in_sea_water" title="Aragonite Concentration" uid="a72a0bcf271db9db3a7fb9b7f3e7b93a" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="For atmospheres with more than 1 mesh (e.g., staggered grids), report areas that apply to surface vertical fluxes of energy." id="areacella" label="areacella" procComment="" procnote="" prov="CCMI1_fixed,CORDEX_fx" provmip="CORDEX" sn="cell_area" title="Atmosphere Grid-Cell Area" uid="c47a4040603c03d250c73e9c266a24bb" unid="fd71de78-3468-11e6-ba71-5404a60d96b5" units="m2"/>
<item description="Area of the target grid (not the interpolated area of the source grid)." id="areacellg" label="areacellg" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="cell_area" title="Grid Cell Area for Interpolated Grids" uid="e9b495e2-5989-11e6-a4be-ac72891c3257" unid="fd71de78-3468-11e6-ba71-5404a60d96b5" units="m2"/>
<item description="Horizontal area of ice-sheet grid cells" id="areacelli" label="areacelli" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="cell_area" title="Ice-Sheet Grid Cell Area" uid="865d0e00-53e6-11e6-b524-5404a60d96b5" unid="fd71de78-3468-11e6-ba71-5404a60d96b5" units="m2"/>
<item description="Horizontal area of ocean grid cells" id="areacello" label="areacello" procComment="" procnote="" prov="OMIP.fx" provmip="OMIP" sn="cell_area" title="Ocean Grid-Cell Area" uid="62c5b9728a01c0031e3a788ac4c8eff5" unid="fd71de78-3468-11e6-ba71-5404a60d96b5" units="m2"/>
<item description="" id="ares" label="ares" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="aerodynamic_resistance" title="Aerodynamic resistance" uid="59176628-9e49-11e5-803c-0d0b866b59f3" unid="fd728134-3468-11e6-ba71-5404a60d96b5" units="s m-1"/>
<item description="Sum of bacterial carbon component concentrations" id="bacc" label="bacc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_bacteria_expressed_as_carbon_in_sea_water" title="Bacterial Carbon Concentration" uid="27ad2512525b0c42b7edd88f1dad5955" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Percentage of entire grid cell  that is covered by bare soil." id="baresoilFrac" label="baresoilFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Bare Soil Percentage" uid="9cdb8d54d49e98acadd87e2a1139225e" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="basin" label="basin" procComment="" procnote="" prov="OMIP.fx" provmip="OMIP" sn="region" title="Region Selection Index" uid="1d3ef4c73895a317948f1f3870f65834" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Net total of biological terms in time rate of change of alkalinity" id="bddtalk" label="bddtalk" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_sea_water_alkalinity_expressed_as_mole_equivalent_due_to_biological_processes" title="Rate of Change of Alkalinity due to Biological Activity" uid="e5a8a5a5c4ff0920fa237e5274df57ba" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Net total of biological terms in time rate of change of dissolved inorganic carbon" id="bddtdic" label="bddtdic" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_due_to_biological_processes" title="Rate of Change of Dissolved Inorganic Carbon due to Biological Activity" uid="1df32c1e9440e03187aa8253e1a0f2d9" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Net total of biological terms in time rate of change of dissolved inorganic iron" id="bddtdife" label="bddtdife" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_dissolved_inorganic_iron_in_sea_water_due_to_biological_processes" title="Rate of Change of Dissolved Inorganic Iron due to Biological Activity" uid="6674625c225f14aa8d6795d1df244c28" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Net total of biological terms in time rate of change of nitrogen nutrients (e.g. NO3+NH4)" id="bddtdin" label="bddtdin" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_dissolved_inorganic_nitrogen_in_sea_water_due_to_biological_processes" title="Rate of Change of Nitrogen Nutrient due to Biological Activity" uid="c075ee7167ef3bc43fef7ce624f960af" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Net of biological terms in time rate of change of dissolved phosphate" id="bddtdip" label="bddtdip" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_dissolved_inorganic_phosphorus_in_sea_water_due_to_biological_processes" title="Rate of Change of Dissolved Phosphorus due to Biological Activity" uid="cc3eb19e60c00c77520c2cbf58c322b1" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Net of biological terms in time rate of change of dissolved inorganic silicon" id="bddtdisi" label="bddtdisi" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_dissolved_inorganic_silicon_in_sea_water_due_to_biological_processes" title="Rate of Change of Dissolved Inorganic silicon due to Biological Activity" uid="2157a343384243be18fe8a06826aecb5" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Sum of particulate organic iron component concentrations" id="bfe" label="bfe" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_particulate_organic_matter_expressed_as_iron_in_sea_water" title="Particulate Biogenic Iron Concentration" uid="f108633dc7e1585498ceccc06bdfd263" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Sea water conservative temperature (this should be contributed only for models using conservative temperature as prognostic field)" id="bigthetao" label="bigthetao" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_conservative_temperature" title="Sea Water Conservative Temperature" uid="4bccb8dcdb0ffe97dc89475c91ed66cc" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="Diagnostic should be contributed only for models using conservative temperature as prognostic field." id="bigthetaoga" label="bigthetaoga" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="sea_water_conservative_temperature" title="Global Average Sea Water Conservative Temperature" uid="6901f6894f7382d628084809e7208c4b" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="Boundary layer depth" id="bldep" label="bldep" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="atmosphere_boundary_layer_thickness" title="Boundary Layer Depth" uid="590e3c7e-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Sum of particulate silica component concentrations" id="bsi" label="bsi" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="mole_concentration_of_particulate_matter_expressed_as_silicon_in_sea_water" title="Particulate Biogenic Silica Concentration" uid="dcd2298237af35be0ed71c92ee9e7e79" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Fraction of entire grid cell  that is covered by burnt vegetation." id="burntArea" label="burntArea" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Burnt Area Percentage" uid="6b6f4db537f52cf43388056ec20590af" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="burntFractionAll" label="burntFractionAll" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="area_fraction" title="Fraction of grid cell burned due to all fires including natural and anthropogenic fires and those associated with anthropogenic land use change" uid="59136b72-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="c13Land" label="c13Land" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="total_land_c13" title="Mass of 13C in all terrestrial carbon pools" uid="590f49fc-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="c13Litter" label="c13Litter" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="litter_c13_content" title="Mass of 13C in Litter Pool" uid="590de850-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="c13Soil" label="c13Soil" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="soil_c13_content" title="Mass of 13C in Soil Pool" uid="590f5e1a-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="c13Veg" label="c13Veg" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="vegetation_c13_content" title="Mass of 13C in Vegetation" uid="59144c36-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="c14Land" label="c14Land" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="total_land_c14" title="Mass of 14C in all terrestrial carbon pools" uid="590f885e-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="c14Litter" label="c14Litter" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="litter_c14_content" title="Mass of 14C in Litter Pool" uid="590e29c8-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="c14Soil" label="c14Soil" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="soil_c14_content" title="Mass of 14C in Soil Pool" uid="5913d382-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="c14Veg" label="c14Veg" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="vegetation_c14_content" title="Mass of 14C in Vegetation" uid="59149524-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="c2h2" label="c2h2" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_ethyne_in_air" title="C2H2 volume mixing ratio" uid="e8d5bdfd24b275f0530646361967483d" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="c2h6" label="c2h6" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_ethane_in_air" title="C2H6 volume mixing ratio" uid="7ec31850a34ee43e98c5d526770fb581" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="c3h6" label="c3h6" procComment="" procnote="" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mole_fraction_of_propene_in_air" title="C3H6  volume mixing ratio" uid="fe6b44a6-a41f-11e5-9025-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="c3h8" label="c3h8" procComment="" procnote="" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mole_fraction_of_propane_in_air" title="C3H8  volume mixing ratio" uid="fe6c7b96-a41f-11e5-9025-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Percentage of entire grid cell  that is covered by C3 PFTs (including grass, crops, and trees)." id="c3PftFrac" label="c3PftFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage Cover by C3 Plant Functional Type" uid="2ca96cd5a4e83feb0d493bf9aa1a5b59" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage of entire grid cell  that is covered by C4 PFTs (including grass and crops)." id="c4PftFrac" label="c4PftFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage Cover by C4 Plant Functional Type" uid="351c26a0f5a0cefa8f1183f2f12e1aa3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Sum of particulate calcite component concentrations (e.g. Phytoplankton, Detrital, etc.)" id="calc" label="calc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_calcite_expressed_as_carbon_in_sea_water" title="Calcite Concentration" uid="c85ac4ad4664c34898cdb9af2418c45a" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Where convective cloud is present in the grid cell, the instantaneous cloud base altitude should be that of the bottom of the lowest level containing convective cloud. Missing data should be reported in the absence of convective cloud. The time mean should be calculated from these quantities averaging over occasions when convective cloud is present only, and should contain missing data for occasions when no convective cloud is present during the meaning period." id="ccb" label="ccb" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="air_pressure_at_convective_cloud_base" title="Air Pressure at Convective Cloud Base" uid="13484743dd3369c69df93379e6dafbb5" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Droplets are liquid only.  Report concentration 'as seen from space' over convective liquid cloudy portion of grid cell.  This is the value from uppermost model layer with liquid cloud or, if available, it is better to sum over all liquid cloud tops, no matter where they occur, as long as they are seen from the top of the atmosphere. Weight by total liquid cloud top fraction of  (as seen from TOA) each time sample when computing monthly mean." id="ccldncl" label="ccldncl" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="number_concentration_of_convective_cloud_liquid_water_particles_in_air_at_liquid_water_cloud_top" title="Cloud Droplet Number Concentration of Convective Cloud Tops" uid="59137996-9e49-11e5-803c-0d0b866b59f3" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="proposed name: number_concentration_of_ambient_aerosol_in_air_at_liquid_water_cloud_top" id="ccn" label="ccn" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="number_concentration_of_cloud_condensation_nuclei_at_stp_in_air" title="cloud condensation nuclei concentration at liquid cloud top" uid="5fb2c6633cdd98673b7b12d257575460" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="Where convective cloud is present in the grid cell, the instantaneous cloud top altitude should be that of the top of the highest level containing convective cloud. Missing data should be reported in the absence of convective cloud. The time mean should be calculated from these quantities averaging over occasions when convective cloud is present only, and should contain missing data for occasions when no convective cloud is present during the meaning period." id="cct" label="cct" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="air_pressure_at_convective_cloud_top" title="Air Pressure at Convective Cloud Top" uid="0062272a6a4176b8c32af87642b062c5" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Carbon mass per unit area in woody debris (dead organic matter composed of coarse wood.  It is distinct from litter)" id="cCwd" label="cCwd" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="wood_debris_carbon_content" title="Carbon Mass in Coarse Woody Debris" uid="d6623215ad4c16c43b649e0c17ebad7e" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Cloud Droplet Number Concentration in liquid water clouds." id="cdnc" label="cdnc" procComment="" procnote="" prov="CMIP5_aero" provmip="AerChemMIP" sn="number_concentration_of_cloud_liquid_water_particles_in_air" title="Cloud Droplet Number Concentration" uid="cfe4bddb7dbbfc57c19837e7f99d2dda" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="CFAD (Cloud Frequency Altitude Diagrams) are frequency distributions of radar  reflectivity (or lidar scattering ratio) as a function of altitude. The variable cfadDbze94 is defined as the simulated relative frequency of occurrence of radar reflectivity in sampling volumes defined by altitude bins. The radar is observing at a frequency of 94GHz." id="cfadDbze94" label="cfadDbze94" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfOff" provmip="CMIP5" sn="histogram_of_equivalent_reflectivity_factor_over_height_above_reference_ellipsoid" title="CloudSat Radar Reflectivity CFAD" uid="5a6730cdd3fef77dc53ea1f61b23821f" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="CFAD (Cloud Frequency Altitude Diagrams) are frequency distributions of radar  reflectivity (or lidar scattering ratio) as a function of altitude. The variable cfadLidarsr532 is defined as the simulated relative frequency of lidar scattering ratio in sampling volumes defined by altitude bins. The lidar is observing at a wavelength of 532nm." id="cfadLidarsr532" label="cfadLidarsr532" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfOff" provmip="CMIP5" sn="histogram_of_backscattering_ratio_over_height_above_reference_ellipsoid" title="CALIPSO Scattering Ratio CFAD" uid="823b0a0d39e3f3f3a992c49948fde77c" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="cfc11" label="cfc11" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_cfc11_in_sea_water" title="Moles Per Unit Mass of CFC-11 in sea water" uid="42625c97b8fe75124a345962c4430982" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="unset" id="cfc113global" label="cfc113global" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="mole_fraction_of_cfc113_in_air" title="Global Mean Mole Fraction of CFC113" uid="c92e83db9d11646c271cc3ca75aaa267" unid="fd7018fe-3468-11e6-ba71-5404a60d96b5" units="1e-12"/>
<item description="unset" id="cfc11global" label="cfc11global" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="mole_fraction_of_cfc11_in_air" title="Global Mean Mole Fraction of CFC11" uid="4f875cf09480e892812e0d76a67aff79" unid="fd7018fe-3468-11e6-ba71-5404a60d96b5" units="1e-12"/>
<item description="" id="cfc12" label="cfc12" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="mole_concentration_of_cfc12_in_sea_water" title="Mole Concentration of CFC-12 in sea water" uid="3ab8e10027d7014f18f9391890369235" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="unset" id="cfc12global" label="cfc12global" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="mole_fraction_of_cfc12_in_air" title="Global Mean Mole Fraction of CFC12" uid="d833c036446ac363dcdf22027e28c0ed" unid="fd7018fe-3468-11e6-ba71-5404a60d96b5" units="1e-12"/>
<item description="" id="ch3coch3" label="ch3coch3" procComment="" procnote="" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mole_fraction_of_acetone_in_air" title="CH3COCH3  volume mixing ratio" uid="fe6c8d8e-a41f-11e5-9025-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="ch4" label="ch4" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="mole_fraction_of_methane_in_air" title="CH4 volume mixing ratio" uid="7f4c49e8abe3230e87fa7299b73448fa" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Global Mean Mole Fraction of CH4" id="ch4global" label="ch4global" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="mole_fraction_of_methane_in_air" title="Global Mean Mole Fraction of CH4" uid="dbc244f3e0bae5b1397ad42fb6cd6db3" unid="fd701138-3468-11e6-ba71-5404a60d96b5" units="1e-09"/>
<item description="proposed name: tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_due_to_aqueous_phase_net_chemical_production" id="cheaqpso4" label="cheaqpso4" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_aqueous_phase_net_chemical_production" title="Aqueous-phase production rate of SO4" uid="5b189f73a6cbef54f224217d8a6b284a" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="proposed name: tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_due_to_gas_phase_net_chemical_production" id="chegpso4" label="chegpso4" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_gaseous_phase_net_chemical_production" title="Gas-phase production rate of SO4" uid="ef1d823bb688b3e2a3f8374bb29fe0bf" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="anthropogenic part of chepsoa" id="chepasoa" label="chepasoa" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol_particles_due_to_net_chemical_production" title="total net production of anthropogenic secondary organic aerosol" uid="4ffc1f50b844980dbbae006dbcfca869" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="If model lumps SOA emissions with POA, then the sum of POA and SOA emissions is reported as OA emissions. &quot;&quot;mass&quot;&quot; refers to the mass of primary organic matter, not mass of organic carbon alone." id="chepsoa" label="chepsoa" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol_particles_due_to_net_chemical_production" title="chemical production of dry aerosol secondary organic matter" uid="6b9531f047e39c91d82d58852a429555" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Sum of chlorophyll from all phytoplankton group concentrations.  In most models this is equal to chldiat+chlmisc, that is the sum of Diatom Chlorophyll Mass Concentration and Other Phytoplankton Chlorophyll Mass Concentration" id="chl" label="chl" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mass_concentration_of_phytoplankton_expressed_as_chlorophyll_in_sea_water" title="Total Chlorophyll Mass Concentration" uid="ab60603d901dfa1c47f4d2fd7784f8ea" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="chlorophyll concentration from the calcite-producing phytoplankton component alone" id="chlcalc" label="chlcalc" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="mass_concentration_of_calcareous_phytoplankton_expressed_as_chlorophyll_in_sea_water" title="Mass Concentration of Calcareous Phytoplankton expressed as Chlorophyll in Sea Water" uid="df96c61c07957da1c4e8212f0553fa98" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="Chlorophyll from diatom phytoplankton component concentration alone" id="chldiat" label="chldiat" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mass_concentration_of_diatoms_expressed_as_chlorophyll_in_sea_water" title="Diatom Chlorophyll Mass Concentration" uid="c947141b54f1ab48dba4a84cec99c5d3" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="Chlorophyll concentration from the diazotrophic phytoplankton component alone" id="chldiaz" label="chldiaz" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="mass_concentration_of_diazotrophs_expressed_as_chlorophyll_in_sea_water" title="Mass Concentration of Diazotrophs expressed as Chlorophyll in Sea Water" uid="171d617ceca8a4351f53d090c0ead89c" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="Chlorophyll from additional phytoplankton component concentrations alone" id="chlmisc" label="chlmisc" procComment="" procnote="" prov="CMIP5,C4MIP,CFMIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="mass_concentration_of_miscellaneous_phytoplankton_expressed_as_chlorophyll_in_sea_water" title="Other Phytoplankton Chlorophyll Mass Concentration" uid="98fab6148c36b25a158062a11c0c5965" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="Sum of chlorophyll from all phytoplankton group concentrations at the sea surface.  In most models this is equal to chldiat+chlmisc, that is the sum of 'Diatom Chlorophyll Mass Concentration' plus 'Other Phytoplankton Chlorophyll Mass Concentration'" id="chlos" label="chlos" procComment="" procnote="" prov="OMIP_day" provmip="OMIP" sn="mass_concentration_of_phytoplankton_expressed_as_chlorophyll_in_sea_water" title="Sea Surface Total Chlorophyll Mass Concentration" uid="1c757370cf83e5619efc0de4d1241f47" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="chlorophyll concentration from the picophytoplankton (&lt;2 um) component alone" id="chlpico" label="chlpico" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="mass_concentration_of_picophytoplankton_expressed_as_chlorophyll_in_sea_water" title="Mass Concentration of Picophytoplankton expressed as Chlorophyll in Sea Water" uid="edc3d019be9c383abbd82a4d5fad43ca" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="Fraction of time that convection occurs in the grid cell." id="ci" label="ci" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="convection_time_fraction" title="Fraction of Time Convection Occurs in Cell" uid="29fae9ea0f236a3eb144026e1bafde28" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Percentage cloud cover, including both large-scale and convective cloud." id="cl" label="cl" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="cloud_area_fraction_in_atmosphere_layer" title="Percentage Cloud Cover" uid="e0ecf1c1305c1bdc69bee0e7ba1e2e03" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="cLand" label="cLand" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="total_land_carbon" title="Total Carbon in All Terrestrial Carbon Pools" uid="5917aa7a-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Include only convective cloud." id="clc" label="clc" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="convective_cloud_area_fraction_in_atmosphere_layer" title="Convective Cloud Area Fraction" uid="1aefc13bd27020244fe1cfd706ce1041" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage cloud cover at CALIPSO standard heights." id="clcalipso" label="clcalipso" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfOff" provmip="CMIP5" sn="cloud_area_fraction_in_atmosphere_layer" title="CALIPSO Percentage Cloud Cover" uid="400e5707b65c01e31f2ec6a59dd3983b" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Clouds detected by CALIPSO but below the detectability threshold of CloudSat" id="clcalipso2" label="clcalipso2" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfOff" provmip="CMIP5" sn="cloud_area_fraction_in_atmosphere_layer" title="CALIPSO Cloud Cover Percentage Undetected by CloudSat (as percentage of area covered)" uid="0245fef16f6eb29465d7fa55923fd12d" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="clcalipsoice" label="clcalipsoice" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="ice_cloud_area_fraction_in_atmosphere_layer" title="CALIPSO ice cloud Fraction" uid="590eb9ec-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="clcalipsoliq" label="clcalipsoliq" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="liquid_cloud_area_fraction_in_atmosphere_layer" title="CALIPSO liquid cloud Fraction" uid="590f43f8-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Cloud ice mixing ratio" id="cldicemxrat" label="cldicemxrat" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="cloud_ice_mixing_ratio" title="Cloud Ice Mixing Ratio" uid="5913a2fe-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Concentration 'as seen from space' over ice-cloud portion of grid cell.  This is the value from uppermost model layer with ice cloud or, if available, it is the sum over all ice cloud tops, no matter where they occur, as long as they are seen from the top of the atmosphere. Weight by total ice cloud top fraction (as seen from TOA) of each time sample when computing monthly mean." id="cldnci" label="cldnci" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="number_concentration_of_ice_crystals_in_air_at_ice_cloud_top" title="Ice Crystal Number Concentration of Cloud Tops" uid="59d5c1ca37702f3ab916f1c9096d8f7f" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="Droplets are liquid only.  Report concentration 'as seen from space' over liquid cloudy portion of grid cell.  This is the value from uppermost model layer with liquid cloud or, if available, it is better to sum over all liquid cloud tops, no matter where they occur, as long as they are seen from the top of the atmosphere. Weight by total liquid cloud top fraction of  (as seen from TOA) each time sample when computing monthly mean." id="cldncl" label="cldncl" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="number_concentration_of_cloud_liquid_water_particles_in_air_at_liquid_water_cloud_top" title="Cloud Droplet Number Concentration of Cloud Tops" uid="069ed8a3f93e92dab9e61f59b4d5338e" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="Droplets are liquid only.  Values are weighted by liquid cloud fraction in each layer when vertically integrating, and for monthly means the samples are weighted by total liquid cloud fraction (as seen from TOA)." id="cldnvi" label="cldnvi" procComment="" procnote="vi" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_number_content_of_cloud_droplets" title="Column Integrated Cloud Droplet Number" uid="f946653cd518e221676f263a895c7852" unid="fd71c99c-3468-11e6-ba71-5404a60d96b5" units="m-2"/>
<item description="Cloud water mixing ratio" id="cldwatmxrat" label="cldwatmxrat" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="cloud_liquid_water_mixing_ratio" title="Cloud Water Mixing Ratio" uid="59151288-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Carbon mass per unit area in leaves." id="cLeaf" label="cLeaf" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="leaf_carbon_content" title="Carbon Mass in Leaves" uid="50e31118c282faf3bfc90b25909433c1" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Percentage cloud cover in layer centred on 220hPa" id="clhcalipso" label="clhcalipso" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfOff" provmip="CMIP5" sn="cloud_area_fraction_in_atmosphere_layer" title="CALIPSO High Level Cloud Area Percentage" uid="7308096ae00ff52340909b2a59415f82" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Includes both large-scale and convective cloud. This is calculated as the mass of cloud ice in the grid cell divided by the mass of air (including the water in all phases) in the grid cell. It includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." id="cli" label="cli" procComment="" procnote="" prov="CMIP5_cfSites" provmip="CMIP5" sn="mass_fraction_of_cloud_ice_in_air" title="Mass Fraction of Cloud Ice" uid="dd916e3e2eca18cda5d9f81749d0c91c" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="Calculated as the mass of convective cloud ice  in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." id="clic" label="clic" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfMon" provmip="CMIP5" sn="mass_fraction_of_convective_cloud_ice_in_air" title="Mass Fraction of Convective Cloud Ice" uid="76f247229d5b524d94dfaedd577eeb84" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="climodis" label="climodis" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="ice_cloud_area_fraction" title="MODIS Ice Cloud Area Percentage" uid="5914308e-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Calculated as the mass of stratiform cloud ice  in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." id="clis" label="clis" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="mass_fraction_of_stratiform_cloud_ice_in_air" title="Mass Fraction of Stratiform Cloud Ice" uid="4dbe7bd9b38439125b341edba15aa66a" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Percentage cloud cover in optical depth categories." id="clisccp" label="clisccp" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="cloud_area_fraction_in_atmosphere_layer" title="ISCCP Cloud Area Fraction" uid="fa7666d61b92de5bad1ad76561b8b850" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="unset" id="cLitter" label="cLitter" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="litter_carbon_content" title="Carbon Mass in Litter Pool" uid="ece03799edff3053efe82e9512d55ed9" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="cLitterAbove" label="cLitterAbove" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_litter_carbon_content" title="Carbon Mass in Above-Ground Litter" uid="edffed802a10e341650e8d25ed05581f" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="cLitterBelow" label="cLitterBelow" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="subsurface_litter_carbon_content" title="Carbon Mass in Below-Ground Litter" uid="226e0454adb91fa1d508255d66ed8daf" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="cLitterCwd" label="cLitterCwd" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="litter_wood_debris_carbon_content" title="Carbon Mass in Coarse Woody Debris" uid="5912b196-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="end of year values (not annual mean)" id="cLitterLut" label="cLitterLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="litter_carbon_content" title="carbon  in above and belowground litter pools on land use tiles" uid="5913b280-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="sub-surface litter pool fed by root inputs." id="cLitterSubSurf" label="cLitterSubSurf" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="subsurface_litter_carbon_content" title="Carbon Mass in Below-Ground Litter" uid="5913b4ec-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Surface or near-surface litter pool fed by leaf and above-ground litterfall" id="cLitterSurf" label="cLitterSurf" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="surface_litter_carbon_content" title="Carbon Mass in Above-Ground Litter" uid="590f4c7c-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="mass of ice water in the column divided by the area of the column (not just the area of the cloudy portion of the column). Includes precipitating frozen hydrometeors ONLY if the precipitating hydrometeor affects the calculation of radiative transfer in model." id="clivi" label="clivi" procComment="" procnote="" prov="CMIP5_Amon" provmip="CMIP5" sn="atmosphere_cloud_ice_content" title="Ice Water Path" uid="73c496f5669cc122cf1cddfe4df2a27a" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="calculate mass of convective ice water in the column divided by the area of the column (not just the area of the cloudy portion of the column). This includes precipitating frozen hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." id="clivic" label="clivic" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="atmosphere_convective_cloud_ice_content" title="Convective Ice Water Path" uid="59150acc-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Percentage cloud cover in layer centred on 840hPa" id="cllcalipso" label="cllcalipso" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfOff" provmip="CMIP5" sn="cloud_area_fraction_in_atmosphere_layer" title="CALIPSO Low Level Cloud Cover Percentage" uid="0bbbf303ac691061a69938846f32b23b" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage cloud cover in layer centred on 560hPa" id="clmcalipso" label="clmcalipso" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfOff" provmip="CMIP5" sn="cloud_area_fraction_in_atmosphere_layer" title="CALIPSO Mid Level Cloud Percentage" uid="fe9d4b45792f7d6430fe2a9c9b7234b1" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Cloud percentage in spectral bands and layers as observed by the Multi-angle Imaging SpectroRadiometer (MISR) instrument." id="clmisr" label="clmisr" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="cloud_area_fraction_in_atmosphere_layer" title="Percentage Cloud Cover as Calculated by the MISR Simulator" uid="59151ed6-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="unset" id="cls" label="cls" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfMon" provmip="CMIP5" sn="stratiform_cloud_area_fraction_in_atmosphere_layer" title="Percentage Cover of Stratiform Cloud" uid="2cd1940e7201d5adb02ba157a74fc33e" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Total cloud area fraction for the whole atmospheric column, as seen from the surface or the top of the atmosphere. Includes both large-scale and convective cloud." id="clt" label="clt" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="cloud_area_fraction" title="Total Cloud Cover Percentage" uid="7c2249d424dde72f8616d42870a9d425" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Convective cloud area fraction for the whole atmospheric column, as seen from the surface or the top of the atmosphere. Includes only convective cloud." id="cltc" label="cltc" procComment="" procnote="" prov="CFMIP" provmip="CFMIP" sn="convective_cloud_area_fraction" title="Convective Cloud Cover Percentage" uid="4e6ce0bc3ad0814b4c0523304965513f" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="unset" id="cltcalipso" label="cltcalipso" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfOff" provmip="CMIP5" sn="cloud_area_fraction" title="CALIPSO Total Cloud Cover Percentage" uid="ce9ab9b945fcc86013ad10431d8f252e" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage total cloud cover, simulating ISCCP observations." id="cltisccp" label="cltisccp" procComment="" procnote="" prov="CMIP5_cfDay,CMIP5_cfMon" provmip="CMIP5" sn="cloud_area_fraction" title="ISCCP Total Cloud Cover Percentage" uid="b045cae1f65ba99831648f136b309e91" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="cltmodis" label="cltmodis" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="cloud_area_fraction" title="MODIS Total Cloud Cover Percentage" uid="5912dd74-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Includes both large-scale and convective cloud. Calculate as the mass of cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cells. Precipitating hydrometeors are included ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." id="clw" label="clw" procComment="" procnote="" prov="CMIP5_cfSites" provmip="CMIP5" sn="mass_fraction_of_cloud_liquid_water_in_air" title="Mass Fraction of Cloud Liquid Water" uid="86b2b3318a73839edfafa9d46864aadc" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="Calculated as the mass of convective cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." id="clwc" label="clwc" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfMon" provmip="CMIP5" sn="mass_fraction_of_convective_cloud_liquid_water_in_air" title="Mass Fraction of Convective Cloud Liquid Water" uid="9b75db3b829a01b02dfe952824150a33" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="clwmodis" label="clwmodis" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="liquid_cloud_area_fraction" title="MODIS Liquid Cloud Fraction" uid="590e9c50-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Calculated as the mass of stratiform cloud liquid water in the grid cell divided by the mass of air (including the water in all phases) in the grid cell.  This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." id="clws" label="clws" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfMon" provmip="CMIP5" sn="mass_fraction_of_stratiform_cloud_liquid_water_in_air" title="Mass Fraction of Stratiform Cloud Liquid Water" uid="e4dc8fb121d8dc2cbc44f1f28eea183b" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Mass of condensed (liquid + ice) water in the column divided by the area of the column (not just the area of the cloudy portion of the column). Includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." id="clwvi" label="clwvi" procComment="" procnote="" prov="CMIP5_Amon" provmip="CMIP5" sn="atmosphere_cloud_condensed_water_content" title="Condensed Water Path" uid="80a1dd605b563e9f09c718a5ba9cb9cc" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="calculate mass of convective condensed (liquid + ice) water in the column divided by the area of the column (not just the area of the cloudy portion of the column). This includes precipitating hydrometeors ONLY if the precipitating hydrometeors affect the calculation of radiative transfer in model." id="clwvic" label="clwvic" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="atmosphere_convective_cloud_condensed_water_content" title="Convective Condensed Water Path" uid="590ef7b8-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="e.g., labile, fruits, reserves, etc." id="cMisc" label="cMisc" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="miscellaneous_living_matter_carbon_content" title="Carbon Mass in Other Living Compartments on Land" uid="f3532407075647328e7da9c24f00193d" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="cnc" label="cnc" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="vegetation_area_fraction" title="Canopy covered area percentage" uid="591526ec-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="co" label="co" procComment="" procnote="" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mole_fraction_of_carbon_monoxide_in_air" title="CO volume mixing ratio" uid="fe6c8654-a41f-11e5-9025-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="co2" label="co2" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="mole_fraction_of_carbon_dioxide_in_air" title="CO2 volume mixing ratio" uid="9bb9a503065dfbd30c9bbe5c3c6abf99" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Total atmospheric mass of Carbon Dioxide" id="co2mass" label="co2mass" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="atmosphere_mass_of_carbon_dioxide" title="Total Atmospheric Mass of CO2" uid="ddf060894b16cf89e906ecfedbba4ffb" unid="fd7113ee-3468-11e6-ba71-5404a60d96b5" units="kg"/>
<item description="As co2, but only at the surface" id="co2s" label="co2s" procComment="" procnote="" prov="CMIP6 endorsement [DCPP]" provmip="DCPP" sn="mole_fraction_of_carbon_dioxide_in_air" title="Atmosphere CO2" uid="591469b4-9e49-11e5-803c-0d0b866b59f3" unid="fd70094a-3468-11e6-ba71-5404a60d96b5" units="1e-06"/>
<item description="" id="co3" label="co3" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water" title="Carbonate Ion Concentration" uid="9791ce56083fe450761a27a7dc158225" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="co3satarag" label="co3satarag" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="mole_concentration_of_aragonite_expressed_as_carbon_in_sea_water_at_saturation" title="Mole Concentration of Carbonate ion for Seawater in equilibrium with pure Aragonite" uid="065edaa295c376f0e9bc1985bc3f491c" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="co3satcalc" label="co3satcalc" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="mole_concentration_of_calcite_expressed_as_carbon_in_sea_water_at_saturation" title="Mole Concentration of Carbonate ion for Seawater in equilibrium with pure Calcite" uid="28907f4f1855d3d22166c87b8e5300be" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="cod" label="cod" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_cloud" title="Cloud Optical Depth" uid="db3d77eebc6dc2fbcab4e0f894e46037" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Column integral of (mcu-mcd)" id="columnmassflux" label="columnmassflux" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="atmosphere_net_upward_convective_mass_flux" title="Column Integrated Mass Flux" uid="590d8018-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="unset" id="concbb" label="concbb" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="mass_concentration_of_biomass_burning_dry_aerosol_in_air" title="Concentration of Biomass Burning Aerosol" uid="43a0cb6cd118dcb5c209824269a0aa74" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="includes all particles with diameter larger than 1 micron" id="conccmcn" label="conccmcn" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="number_concentration_of_coarse_mode_ambient_aerosol_in_air" title="Number Concentration Coarse Mode Aerosol" uid="73f9d7b26beaacf47a2be4ab14f875b8" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="unset" id="conccn" label="conccn" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="number_concentration_of_ambient_aerosol_in_air" title="Aerosol Number Concentration" uid="70b0b8239a6ffb48b4a4f3086da12150" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="unset" id="concdust" label="concdust" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="mass_concentration_of_dust_dry_aerosol_in_air" title="Concentration of Dust" uid="a9e338f20a1b85e4758c5b3cb0ad961c" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="includes all particles with diameter smaller than 3 nm" id="concnmcn" label="concnmcn" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="number_concentration_of_nucleation_mode_ambient_aerosol_in_air" title="Number Concentration of Nucleation Mode Aerosol" uid="f2ab103442d41c890bc004ef71dc71f2" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="unset" id="concpoa" label="concpoa" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="mass_concentration_of_primary_particulate_organic_matter_dry_aerosol_in_air" title="Concentration of Dry Aerosol Primary Organic Matter" uid="dea41d3bfc22035d883f42360676e8cf" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="E.g. fruits, seeds, etc." id="cOther" label="cOther" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="other_vegegtation_components_carbon_content" title="Carbon Mass in Vegetation Components other than Leaves, Stems and Roots" uid="5914b748-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Carbon mass per unit area in that has been removed from the environment through  landuse change." id="cProduct" label="cProduct" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="carbon_content_of_products_of_anthropogenic_land_use_change" title="Carbon Mass in Products of Landuse Change" uid="57c2e414bde585cc60a7b2f980e1f870" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Carbon mass per unit area in roots, including fine and coarse roots." id="cRoot" label="cRoot" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="root_carbon_content" title="Carbon Mass in Roots" uid="e897309433f283b8bf1a4c60dc310edd" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Percentage of entire grid cell  that is covered by crop." id="cropFrac" label="cropFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage Crop Cover" uid="f730de87987b0357d3954c93c4a0c7f7" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage of entire grid cell covered by C3 crops" id="cropFracC3" label="cropFracC3" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="area_fraction" title="Percentage Cover by C3 Crops" uid="5916fc60-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage of entire grid cell covered by C4 crops" id="cropFracC4" label="cropFracC4" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="area_fraction" title="Percentage Cover by C4 Crops" uid="59170444-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Carbon mass in the full depth of the soil model." id="cSoil" label="cSoil" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="soil_carbon_content" title="Carbon Mass in Model Soil Pool" uid="6c08493dc9183b6ec7005a6be27f67f1" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="cSoilBelow1m" label="cSoilBelow1m" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="soil_carbon_content_below_1m_depth" title="Carbon Mass in Soil Pool below 1m Depth" uid="590d6812-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Carbon mass per unit area in fast soil pool. Fast means a lifetime of less than 10 years for reference climate conditions (20th century) in the absence of water limitations." id="cSoilFast" label="cSoilFast" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="fast_soil_pool_carbon_content" title="Carbon Mass in Fast Soil Pool" uid="e072c35c161c93f2320579511ed1849f" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="end of year values (not annual mean)" id="cSoilLut" label="cSoilLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="soil_carbon_content" title="carbon  in soil pool on land use tiles" uid="590f80d4-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Carbon mass per unit area in medium (rate) soil pool. Medium means a lifetime of more than than 10 years and less than 100 years for reference climate conditions (20th century) in the absence of water limitations." id="cSoilMedium" label="cSoilMedium" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="medium_soil_pool_carbon_content" title="Carbon Mass in Medium Soil Pool" uid="da701000818e31103a9b7d9eedee14a2" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Carbon mass per unit area in slow soil pool. Slow means a lifetime of more than 100 years for reference climate (20th century) in the absence of water limitations." id="cSoilSlow" label="cSoilSlow" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="slow_soil_pool_carbon_content" title="Carbon Mass in Slow Soil Pool" uid="369a3a9e55ca8e6729a62a79bf701e5d" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="including sapwood and hardwood." id="cStem" label="cStem" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="stem_carbon_content" title="Carbon Mass in Stem" uid="59171df8-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Different from LMON this flux should include all fires occurring on the land use tile, including natural, man-made and deforestation fires" id="cTotFireLut" label="cTotFireLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="" title="Total carbon loss from natural and managed fire on land use tile, including deforestation fires" uid="59148f52-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Carbon mass per unit area in vegetation." id="cVeg" label="cVeg" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="vegetation_carbon_content" title="Carbon Mass in Vegetation" uid="3434c274f8ad8754f594d2b23c2d37db" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="end of year values (not annual mean)" id="cVegLut" label="cVegLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="vegetation_carbon_content" title="carbon in vegetation on land use tiles" uid="590e39fe-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="cw" label="cw" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="canopy_water_amount" title="Total Canopy Water Storage" uid="591409a6-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Carbon mass per unit area in wood, including sapwood and hardwood." id="cWood" label="cWood" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="wood_carbon_content" title="Carbon Mass in Wood" uid="64d818a9a2f9e72570449c024070950e" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Rate of change of Aragonite carbon mole concentration  due to dissolution" id="darag" label="darag" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="tendency_of_mole_concentration_of_aragonite_expressed_as_carbon_in_sea_water_due_to_dissolution" title="Aragonite Dissolution" uid="402d88cf81105fe603118df92bb9eecb" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Rate of change of Calcite carbon mole concentration  due to dissolution" id="dcalc" label="dcalc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="tendency_of_mole_concentration_of_calcite_expressed_as_carbon_in_sea_water_due_to_dissolution" title="Calcite Dissolution" uid="d14c09e91e6240dd9097dfad0a1853c8" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="" id="dcw" label="dcw" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="change_over_time_in_canopy_water_amount" title="Change in Interception Storage" uid="59170f66-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="This is the in-cloud emissivity obtained by considering only the cloudy portion of the grid cell." id="demc" label="demc" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="convective_cloud_longwave_emissivity" title="Convective Cloud Emissivity" uid="583cc0e465e20507f5aff35387691c4b" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="This is the in-cloud emissivity obtained by considering only the cloudy portion of the grid cell." id="dems" label="dems" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="stratiform_cloud_longwave_emissivity" title="Stratiform Cloud Emissivity" uid="04666369846efb977098a42584d9bd42" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Balkanski - LSCE" id="depdust" label="depdust" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_total_deposition" title="Total Deposition Rate of Dust" uid="59131910-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Ocean bathymetry.   Reported here is the sea floor depth for present day relative to z=0 geoid. Reported as missing for land grid cells." id="deptho" label="deptho" procComment="" procnote="" prov="OMIP.fx" provmip="OMIP" sn="sea_floor_depth_below_geoid" title="Sea Floor Depth Below Geoid" uid="f1b8ddb539cb96eb65453dce4c8bb978" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Sum of detrital organic carbon component concentrations" id="detoc" label="detoc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_organic_detritus_expressed_as_carbon_in_sea_water" title="Detrital Organic Carbon Concentration" uid="b0a9616ddee15d1f3740ce445bd82fb1" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Dissolved iron in sea water,  including both Fe2+ and Fe3+ ions (but not particulate detrital iron)" id="dfe" label="dfe" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_dissolved_iron_in_sea_water" title="Dissolved Iron Concentration" uid="5250c73892803497448e18ba0310c423" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Depth from surface to the first zero degree isotherm. Above this isotherm T &lt; 0o, and below this line T &gt; 0o." id="dfr" label="dfr" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="depth_of_frozen_soil" title="Frozen Soil Depth" uid="590f834a-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="" id="dgw" label="dgw" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="change_over_time_in_groundwater" title="Change in Groundwater" uid="59148822-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Other sub-grid scale/numerical zonal drag excluding that already provided for the parameterized orographic and non-ororgraphic gravity waves. This would be used to calculate the total 'diabatic drag'. Contributions to this additional drag such Rayleigh friction and diffusion that can be calculated from the monthly mean wind fields should not be included, but details (e.g. coefficients) of the friction and/or diffusion used in the model should be provided separately." id="diabdrag" label="diabdrag" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_eastward_wind_due_to_numerical_artefacts" title="Tendency of Eastward Wind from Numerical Artefacts" uid="5d432c16b179052a4e94c63af356c67c" unid="fd71b06a-3468-11e6-ba71-5404a60d96b5" units="m s-2"/>
<item description="Lateral biharmonic viscosity applied to the momentum equitions." id="difmxybo" label="difmxybo" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="ocean_momentum_xy_biharmonic_diffusivity" title="ocean momentum xy biharmonic diffusivity" uid="84115d24881654a3deceba63b22cba06" unid="fd720e70-3468-11e6-ba71-5404a60d96b5" units="m4 s-1"/>
<item description="Lateral Laplacian viscosity applied to the momentum equitions." id="difmxylo" label="difmxylo" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="ocean_momentum_xy_laplacian_diffusivity" title="Ocean Momentum xy Laplacian Diffusivity" uid="64c32fcf490e2e5e9918a5401fa48424" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="diftrbbo" label="diftrbbo" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_tracer_bolus_biharmonic_diffusivity" title="Ocean Tracer Bolus Biharmonic Diffusivity" uid="b21073e1a8fa421ecd21766bc8442acd" unid="fd720e70-3468-11e6-ba71-5404a60d96b5" units="m4 s-1"/>
<item description="Ocean tracer diffusivity associated with parameterized eddy-induced advective transport. Sometimes this diffusivity is called the 'thickness' diffusivity. For CMIP5, this diagnostic was called 'ocean tracer bolus laplacian diffusivity'.  The CMIP6 name is physically more relevant." id="diftrblo" label="diftrblo" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="ocean_tracer_bolus_laplacian_diffusivity" title="Ocean Tracer Bolus Laplacian Diffusivity" uid="1cf6c7fa0adedf95b3eaad5fb3f96b1c" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="diftrebo" label="diftrebo" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_tracer_epineutral_biharmonic_diffusivity" title="Ocean Tracer Epineutral Biharmonic Diffusivity" uid="00460a02b5fde2d2bc592e8ac81af0c5" unid="fd720e70-3468-11e6-ba71-5404a60d96b5" units="m4 s-1"/>
<item description="Ocean tracer diffusivity associated with parameterized eddy-induced diffusive transport oriented along neutral or isopycnal directions. Sometimes this diffusivity is called the neutral diffusivity or isopycnal diffusivity or Redi diffusivity." id="diftrelo" label="diftrelo" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="ocean_tracer_epineutral_laplacian_diffusivity" title="ocean tracer epineutral laplacian diffusivity" uid="b02d071fff99f2632aa8ac5e83e92215" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="diftrxybo" label="diftrxybo" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_tracer_xy_biharmonic_diffusivity" title="Ocean Tracer XY Biharmonic Diffusivity" uid="007c5380d1b91abef954c3b97871f018" unid="fd720e70-3468-11e6-ba71-5404a60d96b5" units="m4 s-1"/>
<item description="unset" id="diftrxylo" label="diftrxylo" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_tracer_xy_laplacian_diffusivity" title="Ocean Tracer XY Laplacian Diffusivity" uid="478c43820503be64675fb49227d2f999" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="Vertical/dianeutral diffusivity applied to prognostic temperature field." id="difvho" label="difvho" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="ocean_vertical_heat_diffusivity" title="Ocean Vertical Heat Diffusivity" uid="120719dde7f96f9bc088acd33b97967f" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="difvmbo" label="difvmbo" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_vertical_momentum_diffusivity_due_to_background" title="Ocean Vertical Momentum Diffusivity due to Background" uid="f94930c327a257dddea9ef9d0e260ed3" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="difvmfdo" label="difvmfdo" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_vertical_momentum_diffusivity_due_to_form_drag" title="Ocean Vertical Momentum Diffusivity due to Form Drag" uid="62cb333ec6550e64596f563d114977af" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="difvmo" label="difvmo" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_vertical_momentum_diffusivity" title="Ocean Vertical Momentum Diffusivity" uid="5f19c4be9ae133db06403c986c8136d6" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="difvmto" label="difvmto" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_vertical_momentum_diffusivity_due_to_tides" title="Ocean Vertical Momentum Diffusivity due to Tides" uid="9e50f2bc84a18f56a9c317be11770663" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="Vertical/dianeutral diffusivity applied to prognostic salinity field." id="difvso" label="difvso" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="ocean_vertical_salt_diffusivity" title="ocean vertical salt diffusivity" uid="52b1076476b074a18a91b9da1baa6bc3" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="difvtrbo" label="difvtrbo" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_vertical_tracer_diffusivity_due_to_background" title="Ocean Vertical Tracer Diffusivity due to Background" uid="4fb426293126d528f2bbf902b6ede847" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="difvtrto" label="difvtrto" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_vertical_tracer_diffusivity_due_to_tides" title="Ocean Vertical Tracer Diffusivity due to Tides" uid="70094996b08eba1d39c13d30dc44b30f" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="unset" id="dispkevfo" label="dispkevfo" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="ocean_kinetic_energy_dissipation_per_unit_area_due_to_vertical_friction" title="Ocean Kinetic Energy Dissipation Per Unit Area due to Vertical Friction" uid="abb3f8b62cc0e93f4ef5487c41ef10cb" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Depth integrated impacts on kinetic energy arising from lateral frictional dissipation associated with Laplacian and/or biharmonic viscosity. For CMIP5, this diagnostic was 3d, whereas the CMIP6 depth integrated diagnostic is sufficient for many purposes and reduces archive requirements." id="dispkexyfo" label="dispkexyfo" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="ocean_kinetic_energy_dissipation_per_unit_area_due_to_xy_friction" title="ocean kinetic energy dissipation per unit area due to xy friction" uid="f56a3a44b60650b58309b1d8cf58b913" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" id="dissi13c" label="dissi13c" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="mole_concentration_of_dissolved_inorganic_carbon13_in_sea_water" title="Dissolved Inorganic 13Carbon Concentration" uid="59175660-9e49-11e5-803c-0d0b866b59f3" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="as specified by C4MIP" id="dissi14c" label="dissi14c" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="mole_concentration_of_dissolved_inorganic_c14_in_sea_water" title="Concentration of DI14C" uid="59144254-9e49-11e5-803c-0d0b866b59f3" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Abiotic Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" id="dissi14cabio" label="dissi14cabio" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="mole_concentration_of_dissolved_inorganic_carbon14_in_sea_water" title="Abiotic Dissolved Inorganic 14Carbon Concentration" uid="1391b0d99790cec6597b02ce4d7c5a67" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" id="dissic" label="dissic" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_dissolved_inorganic_carbon_in_sea_water" title="Dissolved Inorganic Carbon Concentration" uid="13654e951d583dc7d02b5c23485e6eb5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Abiotic Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" id="dissicabio" label="dissicabio" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_abiotic_component" title="Abiotic Dissolved Inorganic Carbon Concentration" uid="55febff83b78e06576947e1c0e5b7a7d" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration at preindustrial atmospheric xCO2" id="dissicnat" label="dissicnat" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_natural_component" title="Natural Dissolved Inorganic Carbon Concentration" uid="2fcdf51262cdbc4279810b7a487b149e" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Sum of dissolved carbon component concentrations explicitly represented (i.e. not ~40 uM refractory unless explicit)" id="dissoc" label="dissoc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_dissolved_organic_carbon_in_sea_water" title="Dissolved Organic Carbon Concentration" uid="b4ae9d56d038ff977f0db7f578841c5a" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="The net mass flux  represents the difference between the updraft and downdraft components.   This is calculated as the convective mass flux divided by the area of the whole grid cell (not just the area of the cloud)." id="dmc" label="dmc" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="atmosphere_net_upward_deep_convective_mass_flux" title="Deep Convective Mass Flux" uid="517f72b8577df7e97ce2dea8f1143e94" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Depth from surface to the zero degree isotherm. Above this isotherm T &gt; 0o, and below this line T &lt; 0o." id="dmlt" label="dmlt" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="depth_of_subsurface_melting" title="Depth to soil thaw" uid="590d8fc2-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="" id="dms" label="dms" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="mole_fraction_of_dimethyl_sulfide_in_air" title="DMS volume mixing ratio" uid="04f25e5e4c98a0a98575bc3d805bb03a" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Mole concentration of dimethyl sulphide in water" id="dmso" label="dmso" procComment="" procnote="" prov="CMIP6 endorsement [OMIP]" provmip="OMIP" sn="mole_concentration_of_dimethyl_sulfide_in_sea_water" title="Dimethyl Sulphide Concentration" uid="bdce9878-233e-11e6-a788-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="dpco2" label="dpco2" procComment="" procnote="" prov="CMIP5,C4MIP,LS3MIP,PMIP" provmip="CMIP5" sn="surface_carbon_dioxide_partial_pressure_difference_between_sea_water_and_air" title="Delta PCO2" uid="011e37046b327b256ca0e6b5f8722699" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="" id="dpo2" label="dpo2" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="surface_molecular_oxygen_partial_pressure_difference_between_sea_water_and_air" title="Delta PO2" uid="abe5993d07b8b52e770ed957b060f9ed" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Primary (organic carbon) production by the calcite-producing phytoplankton component alone" id="dpocdtcalc" label="dpocdtcalc" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_calcareous_phytoplankton" title="Tendency of Mole Concentration of Organic Carbon in Sea Water due to Net Primary Production by Calcareous Phytoplankton" uid="7519e042c1a5a9c6f835b44e6e62f401" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Primary (organic carbon) production by the diazotrophic phytoplankton component alone" id="dpocdtdiaz" label="dpocdtdiaz" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_diazotrophs" title="Tendency of Mole Concentration of Organic Carbon in Sea Water due to Net Primary Production by Diazotrophs" uid="6e3f4e2b5b8d007f2e660d89a730d96e" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Primary (organic carbon) production by the picophytoplankton (&lt;2 um) component alone" id="dpocdtpico" label="dpocdtpico" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_picophytoplankton" title="Tendency of Mole Concentration of Organic Carbon in Sea Water due to Net Primary Production by Picophytoplankton" uid="ad2a6301b95f4d6bbca05358194773ed" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="" id="drivw" label="drivw" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="change_over_time_in_river_water_amount" title="Change in River Storage" uid="591313de-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." id="drybc" label="drybc" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_dry_deposition" title="dry deposition rate of black carbon aerosol mass" uid="f17637206609c6f9e14190d3ac6a1e6b" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." id="drydust" label="drydust" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_dry_deposition" title="dry deposition rate of dust" uid="6444d8c6e394c5d66ae3f732f0ede043" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition" id="drynh3" label="drynh3" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_ammonia_due_to_dry_deposition" title="Dry Deposition Rate of nh3" uid="9fd5c69c5f00bd2434436f2e9033f545" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition" id="drynh4" label="drynh4" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_ammonium_dry_aerosol_particles_due_to_dry_deposition" title="dry deposition rate of nh4" uid="8e67a3e82efbb02a7efe67da456408fa" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="NOy is the sum of all simulated oxidized nitrogen species out of NO, NO2, HNO3, HNO4, NO3aerosol, NO3(radical), N2O5, PAN, other organic nitrates. Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." id="drynoy" label="drynoy" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_noy_expressed_as_nitrogen_due_to_dry_deposition" title="dry deposition rate of noy" uid="f4e5c381e643cd68d3104cf75cc675bd" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." id="dryo3" label="dryo3" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_ozone_due_to_dry_deposition" title="Dry Deposition Rate of o3" uid="88cfa07efc9539cfb8c465a664f63e55" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Tendency of atmosphere mass content of organic dry aerosol due to dry deposition: This is the sum of dry deposition of POA and dry deposition of SOA (see next two entries). 'Mass' refers to the mass of organic matter, not mass of organic carbon alone.  We recommend a scale factor of POM=1.4*OC, unless your model has more detailed info available. Was called dry_pom in old ACCMIP Excel table. Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." id="dryoa" label="dryoa" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_dry_deposition" title="dry deposition rate of dry aerosol total organic matter" uid="6f095163598ce89d463f74ae2a096270" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition" id="dryso2" label="dryso2" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_dry_deposition" title="Dry Deposition Rate of so2" uid="e49733975533eeec7407d54d8373b155" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="dry deposition includes gravitational settling, impact scavenging, and turbulent deposition" id="dryso4" label="dryso4" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_dry_deposition" title="dry deposition rate of so4" uid="1e4b4b00e55243dc7815c0ffc015faee" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Dry deposition includes gravitational settling, impact scavenging, and turbulent deposition." id="dryss" label="dryss" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_seasalt_dry_aerosol_particles_due_to_dry_deposition" title="dry deposition rate of seasalt" uid="9b53f7b02bc4f1e2af69632f52a18b28" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="dslw" label="dslw" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="change_over_time_in_water_content_of_soil_layer" title="Change in soil moisture" uid="5914bc20-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="dsn" label="dsn" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="change_over_time_in_surface_snow_and_ice_amount" title="Change in snow water equivalent" uid="590f1d10-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="dsw" label="dsw" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="change_over_time_in_surface_water_amount" title="Change in Surface Water Storage" uid="590f182e-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="This is the in-cloud optical depth obtained by considering only the cloudy portion of the grid cell" id="dtauc" label="dtauc" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="atmosphere_optical_thickness_due_to_convective_cloud" title="Convective Cloud Optical Depth" uid="7c0c62d0dc4787a601a1bc1c4e3f7597" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="This is the in-cloud optical depth obtained by considering only the cloudy portion of the grid cell." id="dtaus" label="dtaus" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="atmosphere_optical_thickness_due_to_stratiform_cloud" title="Stratiform Cloud Optical Depth" uid="ffa75c4442ad340cb0cdeb11aa19f044" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Change in heat storage over the soil layer and the vegetation for which the energy balance is calculated, accumulated over the sampling time interval." id="dtes" label="dtes" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="change_over_time_in_thermal_energy_content_of_surface" title="Change in surface heat storage" uid="5917f9c6-9e49-11e5-803c-0d0b866b59f3" unid="fd704e14-3468-11e6-ba71-5404a60d96b5" units="J m-2"/>
<item description="Change in cold content over the snow layer for which the energy balance is calculated, accumulated over the sampling time interval. This should also include the energy contained in the liquid water in the snow pack." id="dtesn" label="dtesn" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="change_over_time_in_thermal_energy_content_of_surface_snow_and_ice" title="Change in snow/ice cold content" uid="5913ad62-9e49-11e5-803c-0d0b866b59f3" unid="fd704e14-3468-11e6-ba71-5404a60d96b5" units="J m-2"/>
<item description="" id="ec" label="ec" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="liquid_water_evaporation_flux_from_canopy" title="Interception evaporation" uid="590f0bf4-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Aerosol Extinction @550nm" id="ec550aer" label="ec550aer" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="volume_extinction_coefficient_in_air_due_to_ambient_aerosol_particles" title="Aerosol extinction coefficient" uid="be9cffbb781e32b0bc311b22fa5c0322" unid="fd71c168-3468-11e6-ba71-5404a60d96b5" units="m-1"/>
<item description="Vertical diffusion coefficient for temperature due to parametrised eddies" id="edt" label="edt" procComment="" procnote="" prov="CMIP5_cfSites" provmip="CMIP5" sn="atmosphere_heat_diffusivity" title="Eddy Diffusivity Coefficient for Temperature Variable" uid="c373986159daf18eee63ca731d52b6f7" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="anthrophogenic  emission of CO" id="emiaco" label="emiaco" procComment="" procnote="vi" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission" title="total emission rate of anthropogenic co" uid="ea546e38aa8fc0e021f03e746e1adb10" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Store flux as Nitrogen. Anthropogenic fraction. NOx=NO+NO2, Includes agricultural waste burning but no other biomass burning. Integrate 3D emission field vertically to 2d field." id="emianox" label="emianox" procComment="" procnote="vi" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_due_to_emission" title="anthropogenic emission rate of nox" uid="691673a210102ac652eed2b784dd2ab4" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="anthropogenic part of emioa" id="emiaoa" label="emiaoa" procComment="" procnote="vi" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_net_chemical_production_and_emission" title="total emission of anthropogenic  organic aerosol" uid="a4e52f0f3833b395c09c73f1b6f3f748" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate 3D emission field vertically to 2d field." id="emibc" label="emibc" procComment="" procnote="vi" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_emission" title="emission rate of black carbon aerosol mass" uid="4d3400f4c74e9cd4d4100da7a915e6d9" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate 3D emission field vertically to 2d field._If_ fixed molecular weight of NMVOC is not available in model, please provide in units of kilomole m-2 s-1 (i.e. kg m-2 s-1 as if model NMVOC had molecular weight of 1) and add a comment to your file." id="emibvoc" label="emibvoc" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_biogenic_nmvoc_expressed_as_carbon_due_to_emission" title="total emission rate of biogenic nmvoc" uid="27f1a04b96a7ee0c588ad33c6e1f30fe" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate 3D emission field vertically to 2d field." id="emico" label="emico" procComment="" procnote="vi" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_carbon_monoxide_due_to_emission" title="Total Emission Rate of co" uid="754b682975aaa6baabc618db3903bba8" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate 3D emission field vertically to 2d field." id="emidms" label="emidms" procComment="" procnote="vi" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_dimethyl_sulfide_due_to_emission" title="Total Emission Rate of dms" uid="280c4503513a8be95b5cbfc157615c6e" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate 3D emission field vertically to 2d field." id="emidust" label="emidust" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_emission" title="total emission rate of dust" uid="96d843d6b5a59d1e53e07df9641def86" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate 3D emission field vertically to 2d field" id="emiisop" label="emiisop" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_isoprene_due_to_emission" title="Total Emission Rate of isoprene" uid="811a140bb9962156e6c3cbc16a144f8d" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate the NOx production for lightning over model layer. proposed name: tendency_of_atmosphere_mass_content_of_nox_from_lightning" id="emilnox" label="emilnox" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_moles_of_nox_expressed_as_nitrogen" title="layer-integrated lightning production of NOx" uid="534001c2fd879bfda1d9b66d0a61144c" unid="31f154d8-b175-11e6-aa9d-5404a60d96b5" units="mol s-1"/>
<item description="Integrate 3D emission field vertically to 2d field." id="eminh3" label="eminh3" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_ammonia_due_to_emission" title="Total Emission Rate of nh3" uid="0f732311bca54b8620535615258be52d" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="NOx=NO+NO2. Integrate 3D emission field vertically to 2d field." id="eminox" label="eminox" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_nox_expressed_as_nitrogen_due_to_emission" title="Total Emission Rate of nox" uid="9a6a4f8bd6adfd9c68cb6a7961f295ea" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="This is the sum of total emission of POA and total production of SOA (emipoa+chepsoa). &quot;&quot;Mass&quot;&quot; refers to the mass of organic matter, not mass of organic carbon alone. We recommend a scale factor of POM=1.4*OC, unless your model has more detailed info available.  Integrate 3D chemical production and emission field vertically to 2d field." id="emioa" label="emioa" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_net_chemical_production_and_emission" title="primary emission and chemical production of dry aerosol organic matter" uid="523886b41b608ce9215833b0406b9c27" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate 3D emission field vertically to 2d field." id="emiso2" label="emiso2" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_emission" title="Total Emission Rate of so2" uid="e35112d35f6f5cc88e1ebceefbd09133" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Direct primary emission does not include secondary sulfate production. Integrate 3D emission field vertically to 2d field." id="emiso4" label="emiso4" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_emission" title="total direct emission rate of so4" uid="e479e7abd9bcef1806494ce9b50f39b3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate 3D emission field vertically to 2d field." id="emiss" label="emiss" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_seasalt_dry_aerosol_particles_due_to_emission" title="total emission rate of seasalt" uid="377058633cbc6b6700caad600fb06009" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Integrate 3D emission field vertically to 2d field. _If_ fixed molecular weight of NMVOC is not available in model, please provide in units of kilomole m-2 s-1 (i.e. kg m-2 s-1 as if model NMVOC had molecular weight of 1) and add a comment to your file." id="emivoc" label="emivoc" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_nmvoc_due_to_emission" title="total emission rate of nmvoc" uid="8198a7882dd91603f07b93e929ccdbd0" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="eow" label="eow" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="liquid_water_evaporation_flux_from_open_water" title="Open Water Evaporation" uid="5917ca14-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="eparag100" label="eparag100" procComment="" procnote="" prov="CMIP5,C4MIP,LS3MIP" provmip="CMIP5" sn="sinking_mole_flux_of_aragonite_expressed_as_carbon_in_sea_water" title="Downward Flux of Aragonite" uid="f43d7527cd48c992f075339b2bbbf9ef" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="epc100" label="epc100" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="sinking_mole_flux_of_particulate_organic_matter_expressed_as_carbon_in_sea_water" title="Downward Flux of Particle Organic Carbon" uid="4500aac3ce5985eff562e6a170a88574" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="epcalc100" label="epcalc100" procComment="" procnote="" prov="CMIP5,C4MIP,DCPP,LS3MIP,PMIP" provmip="CMIP5" sn="sinking_mole_flux_of_calcite_expressed_as_carbon_in_sea_water" title="Downward Flux of Calcite" uid="6308b546e0eb4e1962d36ba5b98904ee" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="epfe100" label="epfe100" procComment="" procnote="" prov="CMIP5,C4MIP,LS3MIP" provmip="CMIP5" sn="sinking_mole_flux_of_particulate_iron_in_sea_water" title="Downward Flux of Particulate Iron" uid="5ad003b9cbc58ca2c9117bb2d144605f" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Transformed Eulerian Mean Diagnostics Meridional component Fy of Eliassen-Palm (EP) flux (Fy, Fz) derived from 6hr or higher frequency fields (use daily fields or 12 hr fields if the 6 hr are not available). Please use the definitions given by equation 3.5.3a of Andrews, Holton and Leovy text book, but scaled by density to have units m3 s-2." id="epfy" label="epfy" procComment="" procnote="zm" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="northward_eliassen_palm_flux_in_air" title="Northward Component of the Eliassen-Palm Flux" uid="9522ca96d0b066ebe8defd5541de0582" unid="fd720632-3468-11e6-ba71-5404a60d96b5" units="m3 s-2"/>
<item description="Transformed Eulerian Mean Diagnostics Meridional component Fz of the Eliassen-Palm (EP) flux (Fy, Fz) derived from 6hr or higher frequency fields (use daily fields or 12 hr fields if the 6 hr are not available). Please use the definitions given by equation 3.5.3b of Andrews, Holton and Leovy text book, but scaled by density to have units m3 s-2." id="epfz" label="epfz" procComment="" procnote="zm" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="upward_eliassen_palm_flux_in_air" title="Upward Component of the Eliassen-Palm Flux" uid="85631e0f7a8fdcb10737a525f4134181" unid="fd720632-3468-11e6-ba71-5404a60d96b5" units="m3 s-2"/>
<item description="" id="epn100" label="epn100" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="sinking_mole_flux_of_particulate_nitrogen_in_sea_water" title="Downward Flux of Particulate Nitrogen" uid="5a17eb002c56c129c27f6e2b8e0c06d7" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="epp100" label="epp100" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="sinking_mole_flux_of_particulate_phosphorus_in_sea_water" title="Downward Flux of Particulate Phosphorus" uid="600c9692a7eaef4037565fa8846ae6ba" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="epsi100" label="epsi100" procComment="" procnote="" prov="CMIP5,C4MIP,DCPP,LS3MIP,PMIP" provmip="CMIP5" sn="sinking_mole_flux_of_particulate_silicon_in_sea_water" title="Downward Flux of Particulate Silica" uid="f0260f7e851aaf39ac2349b365db89b5" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="es" label="es" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="liquid_water_evaporation_flux_from_soil" title="Bare soil evaporation" uid="590f1324-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="esn" label="esn" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="liquid_water_evaporation_flux_from_surface_snow" title="Snow Evaporation" uid="59152958-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="et" label="et" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_evapotranspiration" title="Total Evapotranspiration" uid="590f0e56-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="computed as the total mass of water vapor evaporating from the ice-free portion of the ocean  divided by the area of the ocean portion of the grid cell." id="evs" label="evs" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="water_evaporation_flux" title="Water Evaporation Flux Where Ice Free Ocean over Sea" uid="70ecea904324e6f3b891276634412350" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Evaporation at surface: flux of water into the atmosphere due to conversion of both liquid and solid phases to vapor (from underlying surface and vegetation)" id="evspsbl" label="evspsbl" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem,PMIP3_Aclim,PMIP3_Amon,SPECS_Amon" provmip="CMIP5" sn="water_evaporation_flux" title="Evaporation" uid="089961a3af4d54d5fb045cf3750e760c" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="at surface; potential flux of water into the atmosphere due to conversion of both liquid and solid phases to vapor (from underlying surface and vegetation)" id="evspsblpot" label="evspsblpot" procComment="" procnote="" prov="CORDEX_6h,CORDEX_day" provmip="CORDEX" sn="water_potential_evaporation_flux" title="Potential Evapotranspiration" uid="2ca539fe3d21e4555ac39018c99b357d" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Water evaporation from soil (including sublimation)." id="evspsblsoi" label="evspsblsoi" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="water_evaporation_flux_from_soil" title="Water Evaporation from Soil" uid="fb6dac37f41c49ca02fc234d4da1a782" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The canopy evaporation and sublimation (if present in model); may include dew formation as a negative flux." id="evspsblveg" label="evspsblveg" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="water_evaporation_flux_from_canopy" title="Evaporation from Canopy" uid="32ed0e80b1ae2adc7d4fb4b71bce9285" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Vertical diffusion coefficient for momentum due to parametrised eddies" id="evu" label="evu" procComment="" procnote="" prov="CMIP5_cfSites" provmip="CMIP5" sn="atmosphere_momentum_diffusivity" title="Eddy Viscosity Coefficient for Momentum Variables" uid="52c137a21845ae294b27ad40eaca096d" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="Downward flux of Aragonite" id="exparag" label="exparag" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="sinking_mole_flux_of_aragonite_expressed_as_carbon_in_sea_water" title="Downward Flux of Aragonite" uid="684d3f3543045a89ecbb0ca81ba6705f" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Downward flux of particulate organic carbon" id="expc" label="expc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="sinking_mole_flux_of_particulate_organic_matter_expressed_as_carbon_in_sea_water" title="Downward Flux of Particulate Organic Carbon" uid="4f309d6b2d689c19254dccc24c66e32d" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Downward flux of Calcite" id="expcalc" label="expcalc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="sinking_mole_flux_of_calcite_expressed_as_carbon_in_sea_water" title="Downward Flux of Calcite" uid="71480abb30ae62d262fcea6cfdd753cf" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="expcfe" label="expcfe" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="sinking_mole_flux_of_particulate_iron_in_sea_water" title="Sinking Particulate Iron Flux" uid="bf956dccd4ff85281065bbf66335b35a" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="expfe" label="expfe" procComment="" procnote="" prov="OMIP.Oyr.bgc.75" provmip="OMIP" sn="sinking_mole_flux_of_particulate_iron_in_sea_water" title="Sinking Particulate Iron Flux" uid="e52528e8-dd83-11e5-9194-ac72891c3257" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="expn" label="expn" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="sinking_mole_flux_of_particulate_organic_nitrogen_in_sea_water" title="Sinking Particulate Organic Nitrogen Flux" uid="6fc1dd9341ca569ad866695db9878618" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="expp" label="expp" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="sinking_mole_flux_of_particulate_organic_phosphorus_in_sea_water" title="Sinking Particulate Organic Phosphorus Flux" uid="60f0a8f8a0311f9c386e64e0b62cf3bd" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="expsi" label="expsi" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="sinking_mole_flux_of_particulate_silicon_in_sea_water" title="Sinking Particulate Silica Flux" uid="236430ceeb7aa3d23577b3a03d13f7fb" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="will require some careful definition to make sure we capture everything - any human activity that releases carbon to the atmosphere instead of into product pool goes here. E.g. Deforestation fire, harvest assumed to decompose straight away, grazing..." id="fAnthDisturb" label="fAnthDisturb" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_anthrogpogenic_emission" title="carbon mass flux into atmosphere due to any human activity" uid="59149f2e-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="vertical integral of net biological terms in time rate of change of alkalinity" id="fbddtalk" label="fbddtalk" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="integral_wrt_depth_of_tendency_of_sea_water_alkalinity_expressed_as_mole_equivalent_due_to_biological_processes" title="Rate of Change of Biological Alkalinity due to Biological Activity" uid="d66b7d75af3d1ed4e83b2f15a51ca731" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="vertical integral of net biological terms in time rate of change of dissolved inorganic carbon" id="fbddtdic" label="fbddtdic" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_carbon_due_to_biological_processes" title="Rate of Change of Dissolved Inorganic Carbon due to Biological Activity" uid="0f19e65613afd83f8d9b888d2067ced4" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="vertical integral of net biological terms in time rate of change of dissolved inorganic iron" id="fbddtdife" label="fbddtdife" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_iron_due_to_biological_processes" title="Rate of Change of Dissolved Inorganic Iron due to Biological Activity" uid="52ebeea7464b9fc011a92f21e65d6a7a" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="vertical integral of net biological terms in time rate of change of nitrogen nutrients (e.g. NO3+NH4)" id="fbddtdin" label="fbddtdin" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_nitrogen_due_to_biological_processes" title="Rate of Change of Dissolved Inorganic Nitrogen due to Biological Activity" uid="6c19638a0652fcbc6c6ff8455c536445" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="vertical integral of net biological terms in time rate of change of phosphate" id="fbddtdip" label="fbddtdip" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_phosphorus_due_to_biological_processes" title="Rate of Change of Dissolved Inorganic Phosphate due to Biological Activity" uid="2f046f30404d6cfcd5286a2a7f12d8fa" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="vertical integral of net biological terms in time rate of change of dissolved inorganic silicate" id="fbddtdisi" label="fbddtdisi" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_silicon_due_to_biological_processes" title="Rate of Change of Dissolved Inorganic Silicate due to Biological Activity" uid="18060c6741a6b65c90435d19adfbbc98" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="fBNF" label="fBNF" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="biological_nitrogen_fixation" title="biological nitrogen fixation" uid="590d2ed8-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fBNFasymb" label="fBNFasymb" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="asymbiontic_biological_nitrogen_fixation" title="asymbiontic biological nitrogen fixation" uid="590f2698-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fBNFsymb" label="fBNFsymb" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="symbiontic_biological_nitrogen_fixation" title="symbiontic biological nitrogen fixation" uid="590e1974-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="leached carbon etc that goes into run off or river routing and finds its way into ocean should be reported here." id="fCLandToOcean" label="fCLandToOcean" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="carbon_mass_flux_into_ocean_from_rivers" title="Lateral transfer of carbon out of gridcell that eventually goes into ocean" uid="590ddf9a-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="This is requested only for the emission-driven coupled carbon climate model runs.  Does not include natural fire sources but, includes all anthropogenic sources, including fossil fuel use, cement production, agricultural burning, and sources associated with anthropogenic land use change excluding forest regrowth." id="fco2antt" label="fco2antt" procComment="" procnote="emOnly" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_carbon_dioxide_expressed_as_carbon_due_to_anthropogenic_emission" title="Carbon Mass Flux into Atmosphere Due to All Anthropogenic Emissions of CO2" uid="cc1b9e3073d751143fe8ab63ca9fcc45" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="This is the prescribed anthropogenic CO2 flux from fossil fuel use, including cement production, and flaring (but not from land-use changes, agricultural burning, forest regrowth, etc.)" id="fco2fos" label="fco2fos" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_fossil_fuel_combustion" title="Carbon Mass Flux into Atmosphere Due to Fossil Fuel Emissions of CO2" uid="5e49c0b73ac161d5e5dd05173416c400" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="This is what the atmosphere sees (on its own grid).  This field should be equivalent to the combined natural fluxes of carbon  that account for natural exchanges between the atmosphere and land (nep) or ocean (fgco2) reservoirs." id="fco2nat" label="fco2nat" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_natural_sources" title="Surface Carbon Mass Flux into the Atmosphere Due to Natural Sources" uid="299fb9d19040c4aa3862644286261ad2" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="vertical integral of net time rate of change of alkalinity" id="fddtalk" label="fddtalk" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="integral_wrt_depth_of_tendency_of_sea_water_alkalinity_expressed_as_mole_equivalent" title="Rate of Change of Alkalinity" uid="3e0c9853afc682db9a950cc5bc3c1c3a" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="fddtdic" label="fddtdic" procComment="" procnote="" prov="CMIP5,C4MIP,LS3MIP" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_carbon" title="Rate of Change of Net Dissolved Inorganic Carbon" uid="1333394a296e7f8af6c9bad15cb9778d" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="vertical integral of net time rate of change of dissolved inorganic iron" id="fddtdife" label="fddtdife" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_iron" title="Rate of Change of Net Dissolved Inorganic Iron" uid="df087f7801b9ca8b671eba159de9b6e7" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Net time rate of change of nitrogen nutrients (e.g. NO3+NH4)" id="fddtdin" label="fddtdin" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_nitrogen" title="Rate of Change of Net Dissolved Inorganic Nitrogen" uid="d3e6e20c91db32a83bcf3d8d8d9dafd3" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="vertical integral of net  time rate of change of phosphate" id="fddtdip" label="fddtdip" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_phosphorus" title="Rate of Change of Net Dissolved Inorganic Phosphate" uid="80a2832b0619764647393e3815ff399b" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="vertical integral of net time rate of change of dissolved inorganic silicate" id="fddtdisi" label="fddtdisi" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_dissolved_inorganic_silicon" title="Rate of Change of Net Dissolved Inorganic Silicate" uid="ee10c562c1164acf3bf03955dd6fc00d" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="as specified by C4MIP" id="fDeforest" label="fDeforest" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="deforested_biomass_due_to_anthorpogenic_land_use_change" title="Deforested biomass as a result of anthropogenic land use change" uid="59131f28-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="When land use change results in deforestation of natural vegetation (trees or grasslands) then natural biomass is removed. The treatment of deforested biomass differs significantly across models, but it should be straight-forward to compare deforested biomass across models." id="fDeforestToAtmos" label="fDeforestToAtmos" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="surface_net_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_anthropogenic_land_use_change" title="Deforested biomass that goes into atmosphere as a result of anthropogenic land use change" uid="591324be-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="When land use change results in deforestation of natural vegetation (trees or grasslands) then natural biomass is removed. The treatment of deforested biomass differs significantly across models, but it should be straight-forward to compare deforested biomass across models." id="fDeforestToProduct" label="fDeforestToProduct" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="deforested_biomass_into_product_pool_due_to_anthorpogenic_land_use_change" title="Deforested biomass that goes into product pool as a result of anthropogenic land use change" uid="5913de9a-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Dissolution, remineralization and desorption of iron back to the dissolved phase" id="fediss" label="fediss" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_dissolved_iron_in_sea_water_due_to_dissolution_from_inorganic_particles" title="Particle Source of Dissolved Iron" uid="9af5cb75998bb01d32958af3aeb30083" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Dissolved Fe removed through nonbiogenic scavenging onto particles" id="fescav" label="fescav" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_dissolved_iron_in_sea_water_due_to_scavenging_by_inorganic_particles" title="Nonbiogenic Iron Scavenging" uid="9a9dda6b54b64f67bda703c77465cceb" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="CO2 emissions (expressed as a carbon mass flux per unit area) from natural fires and human ignition fires as calculated by the fire module of the dynamic vegetation model, but excluding any CO2 flux from fire included in fLuc (CO2 Flux to Atmosphere from Land Use Change)." id="fFire" label="fFire" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_fires_excluding_anthropogenic_land_use_change" title="Carbon Mass Flux into Atmosphere due to CO2 Emission from Fire" uid="be3bec2766baa15a7d57b8c2689fdf3d" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Only total fire emissions can be compared to observations." id="fFireAll" label="fFireAll" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="fire_CO2_emissions_from_all_sources" title="Carbon Mass Flux into Atmosphere due to CO2 emissions from Fire resulting from all sources including natural, anthropogenic and land use change." uid="590eb456-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="CO2 emissions from natural fires" id="fFireNat" label="fFireNat" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="fire_CO2_emissions_from_wildfire" title="Carbon Mass Flux into Atmosphere due to CO2 Emission from natural Fire" uid="590f58de-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fg13co2" label="fg13co2" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="air_sea_flux_of_13CO2" title="Total air-sea flux of 13CO2" uid="590e5b82-9e49-11e5-803c-0d0b866b59f3" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="as specified by C4MIP" id="fg14co2" label="fg14co2" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="air_sea_flux_of_14CO2" title="Total air-sea flux of 14CO2" uid="5917788e-9e49-11e5-803c-0d0b866b59f3" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Gas exchange flux of abiotic 14CO2 (positive into ocean)" id="fg14co2abio" label="fg14co2abio" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="surface_downward_mass_flux_of_abiotic_14_carbon_dioxide_expressed_as_carbon" title="Surface Downward Abiotic 14CO2 Flux" uid="f36046ab9a8a24ce4d7431e2defd9cf6" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="gas exchange flux of CFC11" id="fgcfc11" label="fgcfc11" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="surface_downward_mole_flux_of_cfc11" title="Surface Downward CFC11 flux" uid="0940cbee6105037e4b7aa5579004f124" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol sec-1 m-2"/>
<item description="gas exchange flux of CFC12" id="fgcfc12" label="fgcfc12" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="surface_downward_mole_flux_of_cfc12" title="Surface Downward CFC12 flux" uid="e9e21426e4810d0bb2d3dddb24dbf4dc" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol sec-1 m-2"/>
<item description="Gas exchange flux of CO2 (positive into ocean)" id="fgco2" label="fgco2" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="surface_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon" title="Surface Downward CO2 Flux" uid="f64c4ac230024801b1f140d806a00972" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Gas exchange flux of abiotic CO2 (positive into ocean)" id="fgco2abio" label="fgco2abio" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="surface_downward_mass_flux_of_abiotic_carbon_dioxide_expressed_as_carbon" title="Surface Downward Abiotic CO2 Flux" uid="042e575e61a271e122d317ca7b39dcb4" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Gas exchange flux of natural CO2 (positive into ocean)" id="fgco2nat" label="fgco2nat" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="surface_downward_mass_flux_of_natural_carbon_dioxide_expressed_as_carbon" title="Surface Downward Natural CO2 Flux" uid="97c037c3357f24c4e06c07123224b400" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Gas exchange flux of DMS (positive into atmosphere)" id="fgdms" label="fgdms" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="surface_upward_mole_flux_of_dimethyl_sulfide" title="Surface Upward DMS Flux" uid="190f38cb06f9a1f3133c3dcf66e0421e" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Gas exchange flux of O2 (positive into ocean)" id="fgo2" label="fgo2" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="surface_downward_mole_flux_of_molecular_oxygen" title="Surface Downward O2 Flux" uid="02e40424bc4b63c1ae535165def98421" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Carbon mass flux per unit area due to grazing on land" id="fGrazing" label="fGrazing" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_grazing" title="Carbon Mass Flux into Atmosphere due to Grazing on Land" uid="b78f432cc8fbadf21b9a1fcf07d781a7" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="gas exchange flux of SF6" id="fgsf6" label="fgsf6" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="surface_downward_mole_flux_of_sf6" title="Surface Downward SF6 flux" uid="4a62506a657921cdde7c173c0ae09b98" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol sec-1 m-2"/>
<item description="Carbon mass flux per unit area due to crop harvesting" id="fHarvest" label="fHarvest" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_crop_harvesting" title="Carbon Mass Flux into Atmosphere due to Crop Harvesting" uid="f126552ec807a8280d6d43ed084f2fc9" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="any harvested carbon that is assumed to decompose immediately into the atmosphere is reported here" id="fHarvestToAtmos" label="fHarvestToAtmos" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_crop_harvesting" title="Harvested biomass that goes straight into atmosphere" uid="590d9f1c-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="be it food or wood harvest, any carbon that is subsequently stored is reported here" id="fHarvestToProduct" label="fHarvestToProduct" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="harvested_biomass_into_product_pool" title="Harvested biomass that goes into product pool" uid="5917a796-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="computed as the iceberg melt water  flux into the ocean divided by the area of the ocean portion of the grid cell." id="ficeberg" label="ficeberg" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="water_flux_into_sea_water_from_icebergs" title="Water Flux into Sea Water From Icebergs" uid="0638f32ebcc32d63faad121d5a83e3be" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Computed as the water flux into the ocean due to land ice (runoff water from surface and base of land ice or melt from base of ice shelf or vertical ice front) into the ocean divided by the area ocean portion of the grid cell" id="flandice" label="flandice" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="water_flux_into_sea_water_from_land_ice" title="Water flux into Sea Water from Land Ice" uid="591505ae-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="proposed name: lightning_flash_rate (units to be interpreted as &quot;counts km-2 s-1)" id="flashrate" label="flashrate" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="lightning_flash_rate" title="Lightning Flash Rate" uid="23ecf19e478a3ed9026b011e1e1fed02" unid="fd718dce-3468-11e6-ba71-5404a60d96b5" units="km-2 s-1"/>
<item description="Required for unambiguous separation of vegetation and soil + litter turnover times, since total fire flux draws from both sources" id="fLitterFire" label="fLitterFire" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="fire_CO2_emissions_from_litter_carbon" title="Carbon Mass Flux from Litter, CWD or any non-living pool into Atmosphere due to CO2 Emission from all Fire" uid="5914f2a8-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Carbon mass flux per unit area into soil from litter (dead plant material in or above the soil)." id="fLitterSoil" label="fLitterSoil" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="carbon_mass_flux_into_soil_from_litter" title="Total Carbon Mass Flux from Litter to Soil" uid="45f5477848196383f1ac8039e0dcfcab" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Carbon mass flux per unit area into atmosphere due to human changes to land (excluding forest regrowth) accounting possibly for different time-scales related to fate of the wood, for example." id="fLuc" label="fLuc" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_net_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_anthropogenic_land_use_change" title="Net Carbon Mass Flux into Atmosphere due to Land Use Change" uid="2191e3410c3a2beedfec222f81f028b6" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fN2O" label="fN2O" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="land_net_n2o_flux" title="Total land N2O flux" uid="5912cf78-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="fNdep" label="fNdep" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="deposition_of_nitrogen_onto_land" title="Dry and Wet Deposition of Reactive Nitrogen onto Land" uid="5913bfe6-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fNdepox" label="fNdepox" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="deposition_of_oxidised_nitrogen_onto_land" title="Dry and Wet Deposition of Oxidised Reactive Nitrogen onto Land" uid="59151756-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fNdepred" label="fNdepred" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="deposition_of_reduced_nitrogen_onto_land" title="Dry and Wet Deposition of Reduced Reactive Nitrogen onto Land" uid="5913aa10-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fNgas" label="fNgas" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="land_nitrogen_lost_to_atmosphere" title="Total Nitrogen lost to the atmosphere (sum of NHx, NOx, N2O, N2)" uid="5914d462-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="fNgasFire" label="fNgasFire" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="land_nitrogen_lost_to_atmosphere_due_to_fire" title="Total N lost to the atmosphere (including NHx, NOx, N2O, N2) from fire." uid="5913e156-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="fNgasNonFire" label="fNgasNonFire" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="land_nitrogen_lost_to_atmosphere_not_due_to_fire" title="Total N lost to the atmosphere (including NHx, NOx, N2O, N2) from all processes except fire." uid="59174d14-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="leached nitrogen etc that goes into run off or river routing and finds its way into ocean should be reported here." id="fNLandToOcean" label="fNLandToOcean" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="nitrogen_mass_flux_into_ocean_from_rivers" title="Lateral transfer of nitrogen out of gridcell that eventually goes into ocean" uid="59151c42-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fNleach" label="fNleach" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="land_nitrogen_lost_to_leaching" title="Total N loss to leaching or runoff (sum of ammonium, nitrite and nitrate)" uid="591514ea-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="fNLitterSoil" label="fNLitterSoil" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="nitrogen_mass_flux_into_soil_from_litter" title="Total Nitrogen Mass Flux from Litter to Soil" uid="590ded6e-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Not all models split losses into gasesous and leaching" id="fNloss" label="fNloss" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="land_nitrogen_lost" title="Total N lost (including NHx, NOx, N2O, N2 and leaching)" uid="591478be-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fNnetmin" label="fNnetmin" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="net_nitrogen_mineralisation" title="Net nitrogen release from soil and litter as the outcome of nitrogen immobilisation and gross mineralisation" uid="590dda36-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="fNOx" label="fNOx" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="land_net_nox_flux" title="Total land NOx flux" uid="590f097e-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="When land use change results in deforestation of natural vegetation (trees or grasslands) then natural biomass is removed. The treatment of deforested biomass differs significantly across models, but it shoule be straight-forward to compare deforested biomass across models." id="fNProduct" label="fNProduct" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="nitrogen_mass_flux_to_product_pool_due_to_anthorpogenic_activity" title="Deforested or harvested biomass as a result of anthropogenic land use or change" uid="5913e3e0-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="fNup" label="fNup" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="plant_nitrogen_uptake" title="total plant nitrogen uptake (sum of ammonium and nitrate), irrespective of the source of nitrogen" uid="5917c654-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="fNVegLitter" label="fNVegLitter" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="litter_nitrogen_flux" title="Total Nitrogen Mass Flux from Vegetation to Litter" uid="5913ba00-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="In some models part of nitrogen (e.g., root exudate) can go directly into the soil pool without entering litter." id="fNVegSoil" label="fNVegSoil" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="nitrogen_mass_flux_into_soil_from_vegetation_excluding_litter" title="Total Nitrogen Mass Flux from Vegetation Directly to Soil" uid="5912d5ea-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="fProductDecomp" label="fProductDecomp" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="Carbon_flux_out_of_storage_product_pools_into_atmos" title="decomposition out of product pools to CO2 in atmos" uid="590f933a-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="cumulative fractional transitions over the year; note that fraction should be reported as fraction of atmospheric grid cell" id="fracInLut" label="fracInLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="area_fraction" title="annual gross fraction that was transferred into this tile from other land use tiles" uid="59177b18-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="end of year values (not annual mean); note that fraction should be reported as fraction of land grid cell (example: frac_lnd = 0.5, frac_ocn = 0.5, frac_crop_lnd = 0.2 (of land portion of grid cell), then frac_lut(crp) = 0.5*0.2 = 0.1)" id="fracLut" label="fracLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="area_fraction" title="fraction of grid cell for each land use tile" uid="591423aa-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="cumulative fractional transitions over the year; note that fraction should be reported as fraction of atmospheric grid cell" id="fracOutLut" label="fracOutLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="area_fraction" title="annual gross fraction of land use tile  that was transferred into other land use tiles" uid="5913dbf2-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="frfe" label="frfe" procComment="" procnote="" prov="CMIP5,C4MIP,LS3MIP" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_iron_due_to_sedimentation" title="Iron Loss to Sediments" uid="ae3a674b4f541f95d2b05da4a84507e7" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Inorganic Carbon loss to sediments" id="fric" label="fric" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="tendency_of_ocean_mole_content_of_inorganic_carbon_due_to_sedimentation" title="Downward Inorganic Carbon Flux at Ocean Bottom" uid="e799552047be54bf13ccbe494c73cc81" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="computed as the river flux of water into the ocean divided by the area of the ocean portion of the grid cell." id="friver" label="friver" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="water_flux_into_sea_water_from_rivers" title="Water Flux into Sea Water From Rivers" uid="be153e40e1e09d1d46a191b3a99be7f5" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="frn" label="frn" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="tendency_of_ocean_mole_content_of_elemental_nitrogen_due_to_denitrification_and_sedimentation" title="Nitrogen Loss to Sediments and through Denitrification" uid="c73793c9a403918cf29279cbc374d509" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Organic Carbon loss to sediments" id="froc" label="froc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="tendency_of_ocean_mole_content_of_organic_carbon_due_to_sedimentation" title="Downward Organic Carbon Flux at Ocean Bottom" uid="5895b847e6247f0058199d1b26772655" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Iron supply through deposition flux onto sea surface, runoff, coasts, sediments, etc" id="fsfe" label="fsfe" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_iron_due_to_deposition_and_runoff_and_sediment_dissolution" title="Surface Downward Net Flux of Iron" uid="b385b4f43e7385eb7bfe4e2175bb086d" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="computed as the sea ice thermodynamic water flux into the ocean divided by the area of the ocean portion of the grid cell." id="fsitherm" label="fsitherm" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="water_flux_into_sea_water_due_to_sea_ice_thermodynamics" title="Water Flux into Sea Water due to Sea Ice Thermodynamics" uid="f718ef1940e6feab018d81f508bd87c2" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="fsn" label="fsn" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="tendency_of_ocean_mole_content_of_elemental_nitrogen_due_to_deposition_and_fixation_and_runoff" title="Surface Downward Net Flux of Nitrogen" uid="96b53e6411f945d703ee5d081faee987" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Required for unambiguous separation of vegetation and soil + litter turnover times, since total fire flux draws from both sources" id="fVegFire" label="fVegFire" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="fire_CO2_emissions_from_vegetation_carbon" title="Carbon Mass Flux from Vegetation into Atmosphere due to CO2 Emission from all Fire" uid="590e2f36-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="unset" id="fVegLitter" label="fVegLitter" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="litter_carbon_flux" title="Total Carbon Mass Flux from Vegetation to Litter" uid="43cf738374ffa1253a603ea54447203f" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="needed to separate changing vegetation C turnover times resulting from changing allocation versus changing mortality" id="fVegLitterMortality" label="fVegLitterMortality" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="mortality_litter_carbon_flux" title="Total Carbon Mass Flux from Vegetation to Litter as a Result of Mortality" uid="5913a696-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="needed to separate changing vegetation C turnover times resulting from changing allocation versus changing mortality" id="fVegLitterSenescence" label="fVegLitterSenescence" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="senescence_litter_carbon_flux" title="Total Carbon Mass Flux from Vegetation to Litter as a Result of Leaf, Branch, and Root Senescence" uid="591348fe-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Carbon mass flux per unit area from vegetation directly into soil, without intermediate conversion to litter." id="fVegSoil" label="fVegSoil" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="carbon_mass_flux_into_soil_from_vegetation_excluding_litter" title="Total Carbon Mass Flux from Vegetation Directly to Soil" uid="15fea217c64dbec48b115765548b89ae" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="unset" id="gpp" label="gpp" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="gross_primary_productivity_of_biomass_expressed_as_carbon" title="Carbon Mass Flux out of Atmosphere due to Gross Primary Production on Land" uid="89c4bb4f45a0182fc00a1b86b13241a5" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="gppc13" label="gppc13" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="gross_primary_productivity_of_c13" title="Mass Flux of 13C out of Atmosphere due to Gross Primary Production on Land" uid="590f9ace-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="gppc14" label="gppc14" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="gross_primary_productivity_of_c14" title="Mass Flux of 14C out of Atmosphere due to Gross Primary Production on Land" uid="590f95c4-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="gppLut" label="gppLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="gross_primary_productivity_of_biomass_expressed_as_carbon" title="gross primary productivity on land use tile" uid="590a8976-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Percentage of entire grid cell that is covered by natural grass." id="grassFrac" label="grassFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Natural Grass Area Percentage" uid="f972af18f1817a7bb5f961b534641394" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="grassFracC3" label="grassFracC3" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="area_fraction" title="C3 grass Area Percentage" uid="590dc8ac-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="grassFracC4" label="grassFracC4" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="area_fraction" title="C4 grass Area Percentage" uid="590dc37a-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="graz" label="graz" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_grazing_of_phytoplankton" title="Total Grazing of Phytoplankton by Zooplankton" uid="28a54e8b5b73c4ae915a82ed99c74459" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="unset" id="grpllsprof" label="grpllsprof" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="large_scale_graupel_flux" title="Stratiform Graupel Flux" uid="e2574373178c92d41bbc0f8516c16016" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Graupel mixing ratio" id="grplmxrat" label="grplmxrat" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="mass_fraction_of_graupel_in_air" title="Graupel Mixing Ratio" uid="590f21d4-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="includes all phases of water" id="h2o" label="h2o" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="mass_fraction_of_water_in_air" title="Mass Fraction of Water" uid="a7cf325e9bf994ade073a1297378a57c" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Roche - LSCE" id="H2p" label="H2p" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="2H in total precipitation" uid="590e105a-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="Roche - LSCE" id="H2s" label="H2s" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="2H in solid precipitation" uid="5912fb88-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="Roche - LSCE" id="H2wv" label="H2wv" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="H2 in water vapor" uid="5914fd52-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="unset" id="hcfc22global" label="hcfc22global" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="mole_fraction_of_hcfc22_in_air" title="Global Mean Mole Fraction of HCFC22" uid="2c1d2748570f208b1dde04d1e926b5e0" unid="fd7018fe-3468-11e6-ba71-5404a60d96b5" units="1e-12"/>
<item description="" id="hcho" label="hcho" procComment="" procnote="" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mole_fraction_of_formaldehyde_in_air" title="Formaldehyde volume mixing ratio" uid="fe6bdb96-a41f-11e5-9025-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="hcl" label="hcl" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_hydrogen_chloride_in_air" title="HCl volume mixing ratio" uid="cc8f92a2635774d636748ec8007c4bab" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Used in PMIP2" id="hcont300" label="hcont300" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="heat_content_of_ocean_layer" title="Heat content of upper 300 meters" uid="59138f8a-9e49-11e5-803c-0d0b866b59f3" unid="fd719ee0-3468-11e6-ba71-5404a60d96b5" units="m K"/>
<item description="Contains contributions from all physical processes affecting the northward heat transport, including resolved advection, parameterized advection, lateral diffusion, etc. Diagnosed here as a function of latitude and basin.   Use Celsius for temperature scale." id="hfbasin" label="hfbasin" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="northward_ocean_heat_transport" title="Northward Ocean Heat Transport" uid="1f5bb8c9dd54043a9d5f71dfe38f5a19" unid="fd70b0c0-3468-11e6-ba71-5404a60d96b5" units="W"/>
<item description="Contributions to heat transport from parameterized eddy-induced advective transport due to any subgrid advective process. Diagnosed here as a function of latitude and basin.  Use Celsius for temperature scale." id="hfbasinpadv" label="hfbasinpadv" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="northward_ocean_heat_transport_due_to_parameterized_eddy_advection" title="northward ocean heat transport due to parameterized eddy advection" uid="2e3e882a650986c1fdc5df05f5f10263" unid="fd70b0c0-3468-11e6-ba71-5404a60d96b5" units="W"/>
<item description="Contributions to heat transport from parameterized mesoscale eddy-induced advective transport. Diagnosed here as a function of latitude and basin.  Use Celsius for temperature scale." id="hfbasinpmadv" label="hfbasinpmadv" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="northward_ocean_heat_transport_due_to_parameterized_mesoscale_advection" title="northward ocean heat transport due to parameterized mesoscale advection" uid="32cbc6ae59c0abfe8e9c526e548452cc" unid="fd70b0c0-3468-11e6-ba71-5404a60d96b5" units="W"/>
<item description="Contributions to heat transport from parameterized mesoscale eddy-induced diffusive transport (i.e., neutral diffusion). Diagnosed here as a function of latitude and basin." id="hfbasinpmdiff" label="hfbasinpmdiff" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="northward_ocean_heat_transport_due_to_parameterized_mesoscale_diffusion" title="northward ocean heat transport due to parameterized mesoscale diffusion" uid="88f1496a06008de969d5913384e6cb17" unid="fd70b0c0-3468-11e6-ba71-5404a60d96b5" units="W"/>
<item description="Contributions to heat transport from parameterized mesoscale eddy-induced advective transport. Diagnosed here as a function of latitude and basin.  Use Celsius for temperature scale." id="hfbasinpsmadv" label="hfbasinpsmadv" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="northward_ocean_heat_transport_due_to_parameterized_submesoscale_advection" title="northward ocean heat transport due to parameterized submesoscale advection" uid="cfc72744e73c1f6116661e251316c04f" unid="fd70b0c0-3468-11e6-ba71-5404a60d96b5" units="W"/>
<item description="" id="hfcorr" label="hfcorr" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="heat_flux_correction" title="Heat Flux Correction" uid="0312fb7cbaaff353e66b17c21fb13482" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hfdsl" label="hfdsl" procComment="" procnote="" prov="CMIP6 (LS3MIP)" provmip="LS3MIP" sn="surface_downward_heat_flux_in_air" title="Downward Heat Flux at Land Surface" uid="5d2b76d0-0e25-11e7-bdeb-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="This is the net flux of heat entering the liquid water column through its upper surface (excluding any &quot;flux adjustment&quot;) ." id="hfds" label="hfds" procComment="" procnote="" prov="CMIP5,C4MIP,DCPP,HighResMIP,ISMIP6,LS3MIP,PMIP" provmip="CMIP5" sn="surface_downward_heat_flux_in_sea_water" title="Downward Heat Flux at Sea Water Surface" uid="db14915fa8f71225f7775d0d922197ec" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="the net downward heat flux from the atmosphere into the snow that lies on land divided by the land area in the grid cell; reported as 0.0 for snow-free land regions or where the land fraction is 0." id="hfdsn" label="hfdsn" procComment="" procnote="" prov="CMIP5_LImon,PMIP3_LIclim,PMIP3_LImon" provmip="CMIP5" sn="surface_downward_heat_flux_in_snow" title="Downward Heat Flux into Snow Where Land over Land" uid="a634ef4f4c0cda3a3c0c02652ca8cc6a" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="This is defined as &quot;where ice_free_sea over sea&quot;" id="hfevapds" label="hfevapds" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="temperature_flux_due_to_evaporation_expressed_as_heat_flux_out_of_sea_water" title="Temperature Flux due to Evaporation Expressed as Heat Flux Out of Sea Water" uid="11f31866ee4fca2f68e25ccd529ede8a" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hfgeou" label="hfgeou" procComment="" procnote="" prov="OMIP.fx,OMIP.Omon" provmip="OMIP" sn="upward_geothermal_heat_flux_at_sea_floor" title="Upward Geothermal Heat Flux at Sea Floor" uid="1418ccb847c5c235176620baf22d7b33" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upward geothermal heat flux per unit area beneath land ice" id="hfgeoubed" label="hfgeoubed" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="upward_geothermal_heat_flux_at_ground_level_in_land_ice" title="Geothermal Heat flux beneath land ice" uid="5914a1ea-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hfibthermds" label="hfibthermds" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="heat_flux_into_sea_water_due_to_iceberg_thermodynamics" title="Heat Flux into Sea Water due to Iceberg Thermodynamics" uid="bd938fec017c18d3eee106db55f924c5" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hfls" label="hfls" procComment="" procnote="" prov="CMIP5_Amon" provmip="CMIP5" sn="surface_upward_latent_heat_flux" title="Surface Upward Latent Heat Flux" uid="95cbf6ac889c8fe7d92e20e8c34960d1" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hflsLut" label="hflsLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="surface_upward_latent_heat_flux" title="latent heat flux on land use tile" uid="590ee804-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="This is defined as with the cell methods string: where ice_free_sea over sea" id="hflso" label="hflso" procComment="" procnote="" prov="CMIP5_Omon" provmip="CMIP5" sn="surface_downward_latent_heat_flux" title="Surface Downward Latent Heat Flux" uid="ad2c59f6784b7b6a8b2a95424a1a642d" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Energy consumed or released during liquid/solid phase changes." id="hfmlt" label="hfmlt" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_snow_and_ice_melt_heat_flux" title="Energy of fusion" uid="590eacc2-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="This is defined as &quot;where ice_free_sea over sea&quot;; i.e., the total flux (considered here) entering the ice-free portion of the grid cell divided by the area of the ocean portion of the grid cell.  All such heat fluxes are computed based on Celsius scale." id="hfrainds" label="hfrainds" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="temperature_flux_due_to_rainfall_expressed_as_heat_flux_into_sea_water" title="Temperature Flux due to Rainfall Expressed as Heat Flux into Sea Water" uid="af7707ac309cab4b2f2ce461f89ab741" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Heat transferred to a snow cover by rain.." id="hfrs" label="hfrs" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="temperature_flux_due_to_rainfall_expressed_as_heat_flux_onto_snow_and_ice" title="Heat transferred to snowpack by rainfall" uid="5913462e-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hfrunoffds" label="hfrunoffds" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="temperature_flux_due_to_runoff_expressed_as_heat_flux_into_sea_water" title="Temperature Flux due to Runoff Expressed as Heat Flux into Sea Water" uid="155ede0bff2578a736e6379552483f4e" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Energy consumed or released during vapor/solid phase changes." id="hfsbl" label="hfsbl" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_snow_and_ice_sublimation_heat_flux" title="Energy of sublimation" uid="591449ca-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hfsifrazil" label="hfsifrazil" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="heat_flux_into_sea_water_due_to_freezing_of_frazil_ice" title="Heat Flux into Sea Water due to Frazil Ice Formation" uid="1b7e762395c4de9ec5c5c7bda3ce3781" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hfsnthermds" label="hfsnthermds" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="heat_flux_into_sea_water_due_to_snow_thermodynamics" title="Heat Flux into Sea Water due to Snow Thermodynamics" uid="22fae57fa6f2e7e2744a3a9fe3c0dbca" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hfss" label="hfss" procComment="" procnote="" prov="CMIP5_Amon" provmip="CMIP5" sn="surface_upward_sensible_heat_flux" title="Surface Upward Sensible Heat Flux" uid="a13ed886b17e20cdae8b89b9ff8e4610" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="hfssLut" label="hfssLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="surface_upward_sensible_heat_flux" title="sensible heat flux on land use tile" uid="590e590c-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="This is defined as &quot;where ice_free_sea over sea&quot;" id="hfsso" label="hfsso" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,ISMIP6,LS3MIP,PMIP" provmip="CMIP5" sn="surface_downward_sensible_heat_flux" title="Surface Downward Sensible Heat Flux" uid="e60a812c3a4351f1747a8bf9fb48aec8" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Contains all contributions to &quot;x-ward&quot; heat transport from resolved and parameterized processes.  Use Celsius for temperature scale." id="hfx" label="hfx" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_heat_x_transport" title="Ocean Heat X Transport" uid="26542cc98f984d1b098796374a7ed264" unid="fd70b0c0-3468-11e6-ba71-5404a60d96b5" units="W"/>
<item description="Contains all contributions to &quot;y-ward&quot; heat transport from resolved and parameterized processes. Use Celsius for temperature scale." id="hfy" label="hfy" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_heat_y_transport" title="Ocean Heat Y Transport" uid="fa3149feef6236e0cc3207a977d2d0a5" unid="fd70b0c0-3468-11e6-ba71-5404a60d96b5" units="W"/>
<item description="" id="hno3" label="hno3" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_nitric_acid_in_air" title="HNO3 volume mixing ratio" uid="07ae8a0c132c9bf65a2722885a2fcd08" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="From all advective mass transport processes, resolved and parameterized." id="htovgyre" label="htovgyre" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="northward_ocean_heat_transport_due_to_gyre" title="Northward Ocean Heat Transport due to Gyre" uid="e332882b170bce82d39f02b78fd87e79" unid="fd70b0c0-3468-11e6-ba71-5404a60d96b5" units="W"/>
<item description="From all advective mass transport processes, resolved and parameterized." id="htovovrt" label="htovovrt" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="northward_ocean_heat_transport_due_to_overturning" title="Northward Ocean Heat Transport due to Overturning" uid="2e1651d57e5cc5036810331a67ef6ed7" unid="fd70b0c0-3468-11e6-ba71-5404a60d96b5" units="W"/>
<item description="The relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." id="hur" label="hur" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfSites,CMIP5_day,PMIP3_Aclim,PMIP3_Amon,PMIP3_day" provmip="CMIP5" sn="relative_humidity" title="Relative Humidity" uid="3cc6766c2d001a58d18dfe7f60fd5e66" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="hursmax" label="hursmax" procComment="" procnote="nsrf" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="relative_humidity" title="Daily Maximum Near-Surface Relative Humidity" uid="590f4196-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="hursmin" label="hursmin" procComment="" procnote="nsrf" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="relative_humidity" title="Daily Minimum Near-Surface Relative Humidity" uid="59152bba-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="The relative humidity with respect to liquid water for T&gt; 0 C, and with respect to ice for T&lt;0 C." id="hurs" label="hurs" procComment="" procnote="nsrf" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="relative_humidity" title="Near-Surface Relative Humidity" uid="c75f684ec69602e9de82b48e53afb2cc" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="hus" label="hus" procComment="" procnote="" prov="CMIP5_6hrLev,CMIP5_Amon,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfSites,CMIP5_day,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_Amon" provmip="CMIP5" sn="specific_humidity" title="Specific Humidity" uid="53f4724d228998d54191c73352532ce3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="unset" id="hus850" label="hus850" procComment="" procnote="" prov="CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="specific_humidity" title="Specific Humidity" uid="af0e7f4ba96314bef40cc98e5dd078af" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Near-surface (usually, 2 meter) specific humidity." id="huss" label="huss" procComment="" procnote="nsrf" prov="CORDEX_3h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="specific_humidity" title="Near-Surface Specific Humidity" uid="ebfefc2ab8716ef597b128171b275945" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Normally, the specific humidity should be reported at the 2 meter height" id="hussLut" label="hussLut" procComment="" procnote="nsrf" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="specific_humidity" title="near-surface specific humidity on land use tile" uid="59178a72-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Total area of the floating ice shelves (the component of ice sheet that flows over ocean)" id="iareafl" label="iareafl" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="floating_ice_shelf_area" title="Area covered by floating ice shelves" uid="590e00b0-9e49-11e5-803c-0d0b866b59f3" unid="fd71de78-3468-11e6-ba71-5404a60d96b5" units="m2"/>
<item description="Total area of the grounded ice sheets (the component of ice sheet resting over bedrock)" id="iareagr" label="iareagr" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="grounded_ice_sheet_area" title="Area covered by grounded ice sheet" uid="41468a3a-4f40-11e6-a814-ac72891c3257" unid="fd71de78-3468-11e6-ba71-5404a60d96b5" units="m2"/>
<item description="Loss of ice mass resulting from surface melting. Computed as the total surface melt water on the land ice portion of the grid cell divided by land ice area in the grid cell." id="icem" label="icem" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_surface_melt_flux" title="Surface ice melt flux" uid="590e1c1c-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Inorganic Carbon supply to ocean through runoff (separate from gas exchange)" id="icfriver" label="icfriver" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="tendency_of_ocean_mole_content_of_inorganic_carbon_due_to_runoff_and_sediment_dissolution" title="Flux of Inorganic Carbon Into Ocean Surface by Runoff" uid="9c4f9fe04addd510e5fbedd35e01a5db" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Ice Crystal number concentration in ice clouds" id="inc" label="inc" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="number_concentration_of_ice_crystals_in_air" title="Ice Crystal Number Concentration" uid="daf32f6bf53a77e4e30be04b9587f47a" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="Vertically integrated DIC" id="intdic" label="intdic" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="ocean_mass_content_of_dissolved_inorganic_carbon" title="Dissolved Inorganic Carbon Content" uid="5fc649c5cc7f4737f3a81d1c6b151b26" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Vertically integrated DOC (explicit pools only)" id="intdoc" label="intdoc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="ocean_mass_content_of_dissolved_organic_carbon" title="Dissolved Organic Carbon Content" uid="a1bd45ea349a310ceaec3f0c417f8aa5" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Vertically integrated aragonite production" id="intparag" label="intparag" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_aragonite_expressed_as_carbon_due_to_biological_production" title="Aragonite Production" uid="baf651d5dbd448df196faedae8a97b22" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Vertically integrated biogenic iron production" id="intpbfe" label="intpbfe" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_iron_due_to_biological_production" title="Iron Production" uid="28d5c13c016320943983914bc63e6abd" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Vertically integrated biogenic nitrogen production" id="intpbn" label="intpbn" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="tendency_of_ocean_mole_content_of_nitrogen_due_to_biological_production" title="Nitrogen Production" uid="4f6a8297671856ee117fa285ad5d6e88" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Vertically integrated biogenic phosphorus production" id="intpbp" label="intpbp" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="tendency_of_ocean_mole_content_of_phosphorus_due_to_biological_production" title="Phosphorus Production" uid="923468afd1b3d19662d02978682c305f" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Vertically integrated biogenic silica production" id="intpbsi" label="intpbsi" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_silicon_due_to_biological_production" title="Silica Production" uid="351cb82f1f858d9c0e1094eaf477c9bc" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Vertically integrated calcite production" id="intpcalcite" label="intpcalcite" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_calcite_expressed_as_carbon_due_to_biological_production" title="Calcite Production" uid="c1a2f2eeee3b74cd94a2946050785278" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Vertically integrated nitrogen fixation" id="intpn2" label="intpn2" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="tendency_of_ocean_mole_content_of_elemental_nitrogen_due_to_fixation" title="Nitrogen Fixation Rate in Ocean" uid="6c2e81334ca2f0de1813f46d64ee1924" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Vertically integrated POC" id="intpoc" label="intpoc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="ocean_mass_content_of_particulate_organic_matter_expressed_as_carbon" title="Particulate Organic Carbon Content" uid="ede7b0fb492e75c5fb9139996880695a" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Vertically integrated total primary (organic carbon) production by phytoplankton.  This should equal the sum of intpdiat+intpphymisc, but those individual components may be unavailable in some models." id="intpp" label="intpp" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_phytoplankton" title="Primary Organic Carbon Production by All Types of Phytoplankton" uid="f240d371c4585a7647bd775cc97abbee" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="intppcalc" label="intppcalc" procComment="" procnote="" prov="OMIP.Omon.bgc.90" provmip="OMIP" sn="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_calcareous_phytoplankton" title="Net Primary Mole Productivity of Carbon by Calcareous Phytoplankton" uid="e5284596-dd83-11e5-9194-ac72891c3257" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Vertically integrated primary (organic carbon) production by the diatom phytoplankton component alone" id="intppdiat" label="intppdiat" procComment="" procnote="" prov="OMIP.Omon.bgc.88" provmip="OMIP" sn="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_diatoms" title="Net Primary Organic Carbon Production by Diatoms" uid="e527e1f0-dd83-11e5-9194-ac72891c3257" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="intppdiaz" label="intppdiaz" procComment="" procnote="" prov="OMIP.Omon.bgc.89" provmip="OMIP" sn="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_diazotrophs" title="Net Primary Mole Productivity of Carbon by Diazotrophs" uid="e52807e8-dd83-11e5-9194-ac72891c3257" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Vertically integrated total primary (organic carbon) production by other phytoplankton components alone" id="intppmisc" label="intppmisc" procComment="" procnote="" prov="OMIP.Omon.bgc.92" provmip="OMIP" sn="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_miscellaneous_phytoplankton" title="Net Primary Organic Carbon Production by Other Phytoplankton" uid="e5289ab4-dd83-11e5-9194-ac72891c3257" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="intpppico" label="intpppico" procComment="" procnote="" prov="OMIP.Omon.bgc.91" provmip="OMIP" sn="net_primary_mole_productivity_of_biomass_expressed_as_carbon_by_picophytoplankton" title="Net Primary Mole Productivity of Carbon by Picophytoplankton" uid="e5287110-dd83-11e5-9194-ac72891c3257" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Used in PMIP2" id="intuadse" label="intuadse" procComment="" procnote="vi" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="vertical_integral_eastward_wind_by_dry_static_energy" title="Vertically integrated Eastward dry transport (cp.T +zg).u (Mass_weighted_vertical integral of the product of northward wind by dry static_energy per mass unit)" uid="5917acf0-9e49-11e5-803c-0d0b866b59f3" unid="fd700148-3468-11e6-ba71-5404a60d96b5" units="1.e6 J m-1 s-1"/>
<item description="Used in PMIP2" id="intuaw" label="intuaw" procComment="" procnote="vi" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="vertical_integral_eastward_wind_by_total_water" title="Vertically integrated Eastward moisture transport (Mass_weighted_vertical integral of the product of eastward wind by total water mass per unit mass)" uid="590de58a-9e49-11e5-803c-0d0b866b59f3" unid="fd713860-3468-11e6-ba71-5404a60d96b5" units="kg m-1 s-1"/>
<item description="Used in PMIP2" id="intvadse" label="intvadse" procComment="" procnote="vi" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="vertical_integral_northward_wind_by_dry_static_energy" title="Vertically integrated Northward dry transport (cp.T +zg).v (Mass_weighted_vertical integral of the product of northward wind by dry static_energy per mass unit)" uid="59147b48-9e49-11e5-803c-0d0b866b59f3" unid="fd700148-3468-11e6-ba71-5404a60d96b5" units="1.e6 J m-1 s-1"/>
<item description="Used in PMIP2" id="intvaw" label="intvaw" procComment="" procnote="vi" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="vertical_integral_northward_wind_by_total_water" title="Vertically integrated Northward moisture transport (Mass_weighted_vertical integral of the product of northward wind by total water mass per unit mass)" uid="591444ca-9e49-11e5-803c-0d0b866b59f3" unid="fd713860-3468-11e6-ba71-5404a60d96b5" units="kg m-1 s-1"/>
<item description="" id="isop" label="isop" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_isoprene_in_air" title="Isoprene volume mixing ratio" uid="d9c1ba0b5e1b43f738cd1fbe4a765906" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="jno2" label="jno2" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="photolysis_rate_of_nitrogen_dioxide" title="photolysis rate of NO2" uid="dd6aa1c1ecadd98014d1c1a7bbcb0429" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="rate of o2 -&gt; o1d+o" id="jo2" label="jo2" procComment="" procnote="" prov="CMIP6 endorsement [DAMIP]" provmip="DAMIP" sn="photolysis_rate_of_molecular_oxygen" title="photoloysis rate of O2" uid="59137d56-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="sum of rates o3 -&gt; o1d+o2 and o3 -&gt; o+o2" id="jo3" label="jo3" procComment="" procnote="" prov="CMIP6 endorsement [DAMIP]" provmip="DAMIP" sn="photolysis_rate_of_ozone" title="photoloysis rate of O3" uid="59137fd6-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="" id="jpdftaureicemodis" label="jpdftaureicemodis" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="cloud_area_fraction_in_atmosphere_layer" title="MODIS Optical Thickness-Particle Size joint  distribution, ice" uid="59149a10-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="jpdftaureliqmodis" label="jpdftaureliqmodis" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="cloud_area_fraction_in_atmosphere_layer" title="MODIS Optical Thickness-Particle Size joint  distribution, liquid" uid="5912eff8-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="lai" label="lai" procComment="" procnote="" prov="CMIP5_Lmon" provmip="CMIP5" sn="leaf_area_index" title="Leaf Area Index" uid="6c3e8db1b45a6ae7e80ca5a265c0fd50" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Note that if tile does not model lai, for example, on the urban tile, then should be reported as missing value" id="laiLut" label="laiLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="" title="Leaf Area Index on Land Use Tile" uid="590f8d36-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Percentage of grid cell area occupied by different model vegetation/land cover categories. The categories may differ from model to model, depending on each model's subgrid land cover category definitions. Categories may include natural vegetation, anthropogenic vegetation, bare soil, lakes, urban areas, glaciers, etc. Sum of all should equal the fraction of the grid-cell that is land." id="landCoverFrac" label="landCoverFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage of Area by Vegetation/Land Cover Category" uid="f3710647d155ec76d2c4cdfa866be579" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="lateralCtransfer" label="lateralCtransfer" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="lateral_carbon_transfer_over_land" title="Lateral transfer of carbon into (positive) or out of (negative) a grid cell." uid="590d5a5c-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Mean surface albedo of entire land ice covered part of the grid cell" id="lialb" label="lialb" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="surface_albedo" title="Land ice or snow albedo" uid="5912e2f6-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Specific mass balance means the net rate at which ice is added per unit area at the land ice base.  A negative value means loss of ice. Computed as the total basal mass balance on the floating land ice (floating ice shelf) portion of the grid cell divided by floating land ice (floating ice shelf) area in the grid cell. Cell_methods: area: mean where floating_ice_shelf" id="libmassbffl" label="libmassbffl" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_basal_specific_mass_balance_flux" title="Basal specific mass balance flux of floating ice shelf" uid="41460524-4f40-11e6-a814-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Specific mass balance means the net rate at which ice is added per unit area at the land ice base.  A negative value means loss of ice. Computed as the total basal mass balance on the grounded land ice portion of the grid cell divided by grounded land ice area in the grid cell. Cell_methods: area: mean where grounded_ice_sheet" id="libmassbfgr" label="libmassbfgr" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_basal_specific_mass_balance_flux" title="Basal specific mass balance flux of grounded ice sheet" uid="4145ad04-4f40-11e6-a814-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Loss of ice mass resulting from iceberg calving. Computed as the rate of mass loss by the ice shelf (in kg s-1) divided by the horizontal area of the ice sheet (m2) in the grid box." id="licalvf" label="licalvf" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_specific_mass_flux_due_to_calving" title="Land ice calving flux" uid="590e4e58-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total mass balance at the ice front (or vertical margin). It includes both iceberg calving and melt on vertical ice front" id="lifmassbf" label="lifmassbf" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_specific_mass_flux_due_to_calving_and_ice_front_melting" title="Land ice vertical front mass balance flux" uid="59130394-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The ice sheet mass is computed as the volume times density" id="lim" label="lim" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_mass" title="Ice sheet mass" uid="41467ee6-4f40-11e6-a814-ac72891c3257" unid="fd7113ee-3468-11e6-ba71-5404a60d96b5" units="kg"/>
<item description="" id="limfecalc" label="limfecalc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="iron_limitation_of_calcareous_phytoplankton" title="Iron limitation of Calcareous Phytoplankton" uid="4e0d59a6102625043f701d5527c44957" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limfediat" label="limfediat" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="iron_limitation_of_diatoms" title="Iron limitation of Diatoms" uid="1dfd4bb59374157f2bcd5338c90a54b4" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limfediaz" label="limfediaz" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="iron_limitation_of_diazotrophs" title="Iron limitation of Diazotrophs" uid="98544553b7ee286405344aa2e3e88c8e" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limfemisc" label="limfemisc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="iron_limitation_of_miscellaneous_phytoplankton" title="Iron Limitation of Other Phytoplankton" uid="86b89f8138a6ec9830def56892753017" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limfepico" label="limfepico" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="iron_limitation_of_picophytoplankton" title="Iron limitation of Picophytoplankton" uid="b73b4f189e333c9c2426d55fbdfad32f" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limirrcalc" label="limirrcalc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="irradiance_limitation_of_calcareous_phytoplankton" title="Irradiance limitation of Calcareous Phytoplankton" uid="bbca9d7202577ef64ed889685489a6aa" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limirrdiat" label="limirrdiat" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="irradiance_limitation_of_diatoms" title="Irradiance limitation of Diatoms" uid="3f25d295551edcd3949776cccca7656c" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limirrdiaz" label="limirrdiaz" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="irradiance_limitation_of_diazotrophs" title="Irradiance limitation of Diazotrophs" uid="9d815caba4e72a31b250865a534d95bd" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limirrmisc" label="limirrmisc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="irradiance_limitation_of_miscellaneous_phytoplankton" title="Irradiance Limitation of Other Phytoplankton" uid="883fe8c76f1bd133e9075182240b1ca0" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limirrpico" label="limirrpico" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="irradiance_limitation_of_picophytoplankton" title="Irradiance limitation of Picophytoplankton" uid="1e8aa2d7958602eef45a81400ab57bd5" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limncalc" label="limncalc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="nitrogen_limitation_of_calcareous_phytoplankton" title="Nitrogen limitation of Calcareous Phytoplankton" uid="197a59d0c69811cf92e1e7bcbe56cb61" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limndiat" label="limndiat" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="nitrogen_limitation_of_diatoms" title="Nitrogen limitation of Diatoms" uid="f1b2785c2f21b3ca1fbe97a1152920f6" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limndiaz" label="limndiaz" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="nitrogen_limitation_of_diazotrophs" title="Nitrogen limitation of Diazotrophs" uid="df05d7b7c578eeb7aa49c2ef6f79b30f" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limnmisc" label="limnmisc" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="nitrogen_limitation_of_miscellaneous_phytoplankton" title="Nitrogen Limitation of Other Phytoplankton" uid="ba8065ebbce734a631b427699ddbaf7e" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="limnpico" label="limnpico" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="nitrogen_limitation_of_picophytoplankton" title="Nitrogen limitation of Picophytoplankton" uid="fd9db3b1f9e7f5e778bebf3c16a344f6" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="The ice sheet mass is computed as the volume above flotation times density. Changes in land_ice_mass_not_displacing_sea_water will always result in a change in sea level, unlike changes in land_ice_mass which may not result in sea level change (such as melting of the floating ice shelves, or portion of ice that sits on bedrock below sea level)" id="limnsw" label="limnsw" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_mass_not_displacing_sea_water" title="Ice sheet mass that does not displace sea water" uid="590f019a-9e49-11e5-803c-0d0b866b59f3" unid="fd7113ee-3468-11e6-ba71-5404a60d96b5" units="kg"/>
<item description="Basal temperature that is used to force the ice sheet models, it is the temperature AT ice shelf-ocean interface.  Cell_methods: area: mean where floating_ice_shelf" id="litempbotfl" label="litempbotfl" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_basal_temperature" title="Basal temperature of floating ice shelf" uid="4144f026-4f40-11e6-a814-ac72891c3257" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Basal temperature that is used to force the ice sheet models, it is the temperature AT ice sheet - bedrock interface. Cell_methods: area: mean where grounded_ice_sheet" id="litempbotgr" label="litempbotgr" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_basal_temperature" title="Basal temperature of grounded ice sheet" uid="4144a01c-4f40-11e6-a814-ac72891c3257" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="The thickness of the ice sheet" id="lithk" label="lithk" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_thickness" title="Ice Sheet Thickness" uid="59176b14-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="unset" id="loadbc" label="loadbc" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_mass_content_of_black_carbon_dry_aerosol" title="Load of Black Carbon Aerosol" uid="63f4c915f87b16a8be343d68da4cb588" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="loaddust" label="loaddust" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_mass_content_of_dust_dry_aerosol" title="Load of Dust" uid="c23a39645d860d5a2d7f34ea91d1fd82" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="loadnh4" label="loadnh4" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_mass_content_of_ammonium_dry_aerosol" title="Load of NH4" uid="56a47cf7cfc55a6e7e2cd20570ca58d2" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="loadno3" label="loadno3" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_mass_content_of_nitrate_dry_aerosol" title="Load of NO3" uid="ea403af77498d4ba904c34318ad875d2" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="atmosphere dry organic content: This is the vertically integrated sum of atmosphere_primary_organic_content and atmosphere_secondary_organic_content (see next two table entries)." id="loadoa" label="loadoa" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol" title="Load of Dry Aerosol Organic Matter" uid="0083db3aca27478aebd38e9de419dda1" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="loadpoa" label="loadpoa" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_mass_content_of_primary_particulate_organic_matter_dry_aerosol" title="Load of Dry Aerosol Primary Organic Matter" uid="0b532d0ceea95666627dcf99b44f68c3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="loadso4" label="loadso4" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_mass_content_of_sulfate_dry_aerosol" title="Load of SO4" uid="a17b2a3bcad6c41455a7e2474fb1fdcb" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="loadsoa" label="loadsoa" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_mass_content_of_secondary_particulate_organic_matter_dry_aerosol" title="Load of Dry Aerosol Secondary Organic Matter" uid="3ba3b98a96f7c6bc89f96004879811d3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="loadss" label="loadss" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_mass_content_of_seasalt_dry_aerosol" title="Load of Seasalt" uid="e8d9deb887c24ae8008ca2179208f99d" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="monthly averaged atmospheric loss" id="lossch4" label="lossch4" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mole_concentration_of_methane_due_to_chemical_destruction" title="Monthly Loss of atmospheric Methane" uid="83a106b1a10c23b2891aabceec43a873" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="monthly averaged atmospheric loss" id="lossco" label="lossco" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_of_mole_concentration_of_carbon_monoxide_due_to_chemical_destruction" title="Monthly Loss of atmospheric Carbon Monoxide" uid="4b34ac408326ab2ca7b58f2ac846f3e5" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="monthly averaged atmospheric loss" id="lossn2o" label="lossn2o" procComment="" procnote="" prov="CMIP6 endorsement [AerChemMIP]" provmip="AerChemMIP" sn="tendency_of_atmosphere_of_mole_concentration_of_nitrous_oxide_due_to_chemical_destruction" title="Monthly Loss of atmospheric Nitrous Oxide" uid="2b133ea2-1b42-11e6-a696-35cd2d8034df" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="proposed name: potential_temperature_difference_between_700hPa_and_1000hPa (Lower Tropospheric Stability)" id="lts" label="lts" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="potential_temperature_difference_between_700hPa_and_1000hPa" title="lower tropospheric stability" uid="e8092b698b834018e5b1aefde43926b4" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="" id="lwp" label="lwp" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_mass_content_of_cloud_liquid_water" title="liquid water path" uid="e6b31a1928879fcd3c92fe7b592f070e" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="downwelling longwave  flux  due to volcanic aerosols at the surface to be diagnosed through double radiation call" id="lwsffluxaero" label="lwsffluxaero" procComment="" procnote="" prov="CMIP6 endorsement [VolMIP]" provmip="VolMIP" sn="longwave__flux__due_to_volcanic_aerosols_at_the_surface" title="Longwave flux  due to volcanic aerosols at the surface" uid="5914d1ba-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="The total mass of liquid water contained interstitially within the whole depth of the snow layer of the land portion of a grid cell divided by the area of the land portion of the cell." id="lwsnl" label="lwsnl" procComment="" procnote="" prov="CMIP5_LImon,PMIP3_LIclim,PMIP3_LImon" provmip="CMIP5" sn="liquid_water_content_of_snow_layer" title="Liquid Water Content of Snow Layer" uid="c7452587dbc0d44ad81fc174a656ecea" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Balkanski - LSCE" id="lwsrfasdust" label="lwsrfasdust" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="tendency_of_all_sky_surface_longwave_flux_to_dust_ambient_aerosol_particles" title="All-sky Surface Longwave radiative flux due to Dust" uid="5914ede4-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Balkanski - LSCE" id="lwsrfcsdust" label="lwsrfcsdust" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="tendency_of_clear_sky_surface_longwave_flux_to_dust_ambient_aerosol_particles" title="Clear-sky Surface Longwave radiative flux due to Dust" uid="591497a4-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="proposed name: toa_instantaneous_longwave_forcing_due_to_dust_ambient_aerosol" id="lwtoaasdust" label="lwtoaasdust" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="toa_instantaneous_longwave_forcing" title="all sky lw-rf dust at toa" uid="f9f66ff437154f86913937f9e2d9a26d" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Balkanski - LSCE" id="lwtoacs" label="lwtoacs" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="tendency_of_clear_sky_top_of_atmosphere_longwave_flux_to_dust_ambient_aerosol_particles___2D_field_radiative_properties" title="Clear-sky TOA Longwave radiative flux due to Dust" uid="59134bf6-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="proposed name: toa_instantaneous_longwave_forcing_due_to_ambient_aerosol_assuming_clear_sky" id="lwtoacsaer" label="lwtoacsaer" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="toa_instantaneous_longwave_forcing" title="clear sky lw-rf aerosols at toa" uid="ab57604d6acd918c08aa6252145c608e" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="downwelling longwave flux due to volcanic aerosols at TOA under clear sky to be diagnosed through double radiation call" id="lwtoafluxaerocs" label="lwtoafluxaerocs" procComment="" procnote="" prov="CMIP6 endorsement [VolMIP]" provmip="VolMIP" sn="longwave_flux_due_to_volcanic_aerosols_at_TOA_under_clear_sky" title="Longwave flux due to volcanic aerosols at TOA under clear sky" uid="590f1586-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Tracer grid-cell mass per unit area used for computing tracer budgets. For Boussinesq models with static ocean grid cell thickness, masscello = rhozero*thickcello, where thickcello is static cell thickness and rhozero is constant Boussinesq reference density. More generally, masscello is time dependent and reported as part of Omon." id="masscello" label="masscello" procComment="" procnote="" prov="OMIP.fx" provmip="OMIP" sn="sea_water_mass_per_unit_area" title="Ocean Grid-Cell Mass per area" uid="9122e7b627c429163fd0857dc366e14e" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Total mass of liquid seawater. For Boussinesq models, report this diagnostic as Boussinesq reference density times total volume." id="masso" label="masso" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_mass" title="Sea Water Mass" uid="7619324f698659657f466d5dc6660b9d" unid="fd7113ee-3468-11e6-ba71-5404a60d96b5" units="kg"/>
<item description="maximum boundary layer height during the day (add cell_methods attribute: &quot;time: maximum&quot;)" id="maxpblz" label="maxpblz" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="atmosphere_boundary_layer_thickness" title="maximum PBL height" uid="f70b088300f35ad3b19c67d2490612dd" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="The net mass flux should represent the difference between the updraft and downdraft components.  The flux is computed as the mass divided by the area of the grid cell." id="mc" label="mc" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cfDay,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="atmosphere_net_upward_convective_mass_flux" title="Convective Mass Flux" uid="6d790fe4caa7feff46a41ae7b3811e52" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Calculated as the convective mass flux divided by the area of the whole grid cell (not just the area of the cloud)." id="mcd" label="mcd" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="atmosphere_downdraft_convective_mass_flux" title="Downdraft Convective Mass Flux" uid="e889a99259ce24104c8b21894ace22da" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="In accordance with common usage in geophysical disciplines, &quot;flux&quot; implies per unit area, called &quot;flux density&quot; in physics. The atmosphere convective mass flux is the vertical transport of mass for a field of cumulus clouds or thermals, given by the product of air density and vertical velocity. For an area-average, cell_methods should specify whether the average is over all the area or the area of updrafts only." id="mcu" label="mcu" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="atmosphere_updraft_convective_mass_flux" title="Convective Updraft Mass Flux" uid="62aa098b13f86fa22de1a874536a64ae" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Balkanski - LSCE" id="md" label="md" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_emission" title="Wet diameter mode coarse insoluble" uid="590e4674-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="mfo" label="mfo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_transport_across_line" title="Sea Water Transport" uid="91d62d57f0a58495fdf4358dc3ba1165" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="minimum boundary layer height during the day (add cell_methods attribute: &quot;time: minimum&quot;)" id="minpblz" label="minpblz" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="atmosphere_boundary_layer_thickness" title="minimum PBL height" uid="a503e8c8011c952b0b832e6074ad387d" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Sigma T is potential density referenced to ocean surface." id="mlotst" label="mlotst" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_mixed_layer_thickness_defined_by_sigma_t" title="Ocean Mixed Layer Thickness Defined by Sigma T" uid="b1ac17c786f782027deb9a5985ad106e" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="" id="mlotstsq" label="mlotstsq" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="square_of_ocean_mixed_layer_thickness_defined_by_sigma_t" title="Square of Ocean Mixed Layer Thickness Defined by Sigma T" uid="1c502fa4d453b20feafa63a862eaeb57" unid="fd71de78-3468-11e6-ba71-5404a60d96b5" units="m2"/>
<item description="" id="mmraerh2o" label="mmraerh2o" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_water_in_ambient_aerosol_particles_in_air" title="Aerosol water mass mixing ratio" uid="e3fdfe758c0165caf74dcbb2531c83b3" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="" id="mmraerso4" label="mmraerso4" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_sulfate_dry_aerosol_in_air" title="Aerosol Sulfate Mass Mixing Ratio" uid="e8926f985cc114531710e8e14a039f42" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="" id="mmrbc" label="mmrbc" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_elemental_carbon_dry_aerosol_particles_in_air" title="Elemental carbon mass mixing ratio" uid="d63c4dd912d79edc6221c0e09da24a79" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="" id="mmrdust" label="mmrdust" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_dust_dry_aerosol_particles_in_air" title="Dust aerosol mass mixing ratio" uid="dcecb293537e640a0bfc8f88a92967fe" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="" id="mmrnh4" label="mmrnh4" procComment="" procnote="" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mass_fraction_of_ammonium_dry_aerosol_particles_in_air" title="NH4 mass mixing ratio" uid="fe6ccf42-a41f-11e5-9025-ac72891c3257" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="" id="mmrno3" label="mmrno3" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_nitrate_dry_aerosol_particles_in_air" title="NO3 aerosol mass mixing ratio" uid="11619ca70c37ffd25d5b234c03ca4d4f" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="We recommend a scale factor of POM=1.4*OC, unless your model has more detailed info available." id="mmroa" label="mmroa" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_particulate_organic_matter_dry_aerosol_particles_in_air" title="Total organic aerosol mass mixing ratio" uid="79433cf8854f00ee833d6c2979fa5eb1" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="E.g. mass_fraction_of_pm1_aerosol_at_50_percent_relative_humidity_in_air. proposed name:  mass_fraction_of_pm1_dry_aerosol_in_air" id="mmrpm1" label="mmrpm1" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_pm1_dry_aerosol_particles_in_air" title="PM1.0 mass mixing ratio" uid="e3e6208c3cf8ae5ac917ee971cb42e29" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="E.g. mass_fraction_of_pm10_aerosol_at_50_percent_relative_humidity_in_air, proposed name: mass_fraction_of_pm10_dry_aerosol_in_air" id="mmrpm10" label="mmrpm10" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_pm10_ambient_aerosol_particles_in_air" title="PM10 mass mixing ratio" uid="6aee2e2f22bb5a7a9aee1f88926dfd92" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="E.g. mass_fraction_of_pm2p5_aerosol_at_50_percent_relative_humidity_in_air, proposed_name: mass_fraction_of_pm2p5_dry_aerosol_in_air" id="mmrpm2p5" label="mmrpm2p5" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_pm2p5_dry_aerosol_particles_in_air" title="PM2.5 mass mixing ratio" uid="4ff3e42362266bd75ad3bcfc785465a3" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="" id="mmrso4" label="mmrso4" procComment="" procnote="" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mass_fraction_of_sulfate_dry_aerosol_particles_in_air" title="Aerosol sulfate mass mixing ratio" uid="fe6ca6e8-a41f-11e5-9025-ac72891c3257" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="" id="mmrsoa" label="mmrsoa" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_secondary_particulate_organic_matter_dry_aerosol_particles_in_air" title="Secondary organic aerosol mass mixing ratio" uid="8c58644da8e357d61b70eac2a0afb4f9" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="" id="mmrss" label="mmrss" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mass_fraction_of_seasalt_dry_aerosol_particles_in_air" title="Sea Salt mass mixing ratio" uid="5980f8e283fd4709e4542c0652756dc1" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="The mean age of air is defined as the mean time that a stratospheric air mass has been out of contact with the well-mixed troposphere." id="meanage" label="meanage" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="age_of_stratospheric_air" title="Mean Age of Stratospheric Air" uid="e703d0fcbdd5f975485b3404a331ed91" unid="fd729ae8-3468-11e6-ba71-5404a60d96b5" units="yr"/>
<item description="The mass per unit area (summed over all model layers) of frozen water." id="mrfso" label="mrfso" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="soil_frozen_water_content" title="Soil Frozen Water Content" uid="154d00de9ab9aff72373a673df10946a" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Fraction of soil moisture mass in the solid phase in each user-defined soil layer (3D variable)" id="mrfsofr" label="mrfsofr" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="mass_fraction_of_frozen_water_in_soil_moisture" title="Average layer fraction of frozen moisture" uid="59174094-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Fraction of soil moisture mass in the liquid phase in each user-defined soil layer (3D variable)" id="mrlqso" label="mrlqso" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="mass_fraction_of_unfrozen_water_in_soil_moisture" title="Average layer fraction of liquid moisture" uid="591432f0-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="The mass of water in all phases, including ice, in soil layers.  Report as missing for grid cells with no land." id="mrlsl" label="mrlsl" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="moisture_content_of_soil_layer" title="Water Content per Unit Area of Soil Layers" uid="9f9b6ac3b6a206d024fb2a340dc338d5" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="mrlso" label="mrlso" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="soil_liquid_water_content" title="Soil Liquid Water Content" uid="59130e98-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="The total run-off (including drainage through the base of the soil model) per unit area leaving the land portion of the grid cell." id="mrro" label="mrro" procComment="" procnote="" prov="CMIP5_Lmon" provmip="CMIP5" sn="runoff_flux" title="Total Run-off" uid="e0a0f457ec117b27ca8353b11bf9d4fa" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="mrrob" label="mrrob" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="subsurface_runoff_flux" title="Subsurface runoff" uid="5914f050-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Runoff flux over land ice is the difference between any available liquid water in the snowpack less any refreezing. Computed as the sum of rainfall and melt of snow or ice less any refreezing or water retained in the snowpack" id="mrroLi" label="mrroLi" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_runoff_flux" title="Land Ice Runoff Flux" uid="41455e80-4f40-11e6-a814-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="the total runoff (including &quot;drainage&quot; through the base of the soil model) leaving the land use tile portion of the grid cell" id="mrroLut" label="mrroLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="runoff_flux" title="Total runoff from land use tile" uid="5913bc80-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The total surface run off leaving the land portion of the grid cell (excluding drainage through the base of the soil model)." id="mrros" label="mrros" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_runoff_flux" title="Surface Run off" uid="26a31ad76858198bd4d719aafeebe801" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="mrsfl" label="mrsfl" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="frozen_moisture_content_of_soil_layer" title="Frozen water content of soil layer" uid="590d17f4-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="mrsll" label="mrsll" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="liquid_moisture_content_of_soil_layer" title="Liquid water content of soil layer" uid="5914640a-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="the mass per unit area  (summed over all soil layers) of water in all phases." id="mrso" label="mrso" procComment="" procnote="" prov="CMIP5_Lmon" provmip="CMIP5" sn="soil_moisture_content" title="Total Soil Moisture Content" uid="af574f1ac4a9f44a2d943352a455cfeb" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="&quot;reported *where land*: divide the total water holding capacity of all the soil in the grid cell by the land area in the grid cell;  reported as *missing* where the land fraction is 0.&quot;" id="mrsofc" label="mrsofc" procComment="" procnote="" prov="CMIP5_fx,PMIP3_fx,SPECS_fx" provmip="CMIP5" sn="soil_moisture_content_at_field_capacity" title="Capacity of Soil to Store Water" uid="ec6da64bcabf72243b381d6b50bffa5f" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="mrsol" label="mrsol" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="moisture_content_of_soil_layer" title="Total water content of soil layer" uid="591389b8-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="mrsoLut" label="mrsoLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="soil_moisture_content" title="Total soil moisture" uid="590d606a-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="The mass of water in all phases in the upper 10cm of the  soil layer." id="mrsos" label="mrsos" procComment="" procnote="" prov="CMIP5_3hr,CMIP5_Lmon,CMIP5_day,PMIP3_Lclim,PMIP3_Lmon,PMIP3_day,SPECS_Lmon" provmip="CMIP5" sn="moisture_content_of_soil_layer" title="Moisture in Upper Portion of Soil Column" uid="40c091a01dc9db6d6d5901528c375ab3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="the mass of water in all phases in a thin surface layer; integrate over uppermost 10cm" id="mrsosLut" label="mrsosLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="moisture_content_of_soil_layer" title="Moisture in Upper Portion of Soil Column of land use tile" uid="590f983a-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Vertically integrated soil moisture divided by maximum allowable soil moisture above wilting point." id="mrsow" label="mrsow" procComment="" procnote="vi" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="volume_fraction_of_condensed_water_in_soil_at_field_capacity" title="Total Soil Wetness" uid="59133b34-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="as specified by C4MIP" id="mrtws" label="mrtws" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="total_water_storage" title="Total water storage in a grid cell" uid="590d24c4-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Streamfunction or its approximation for free surface models. See OMDP document for details." id="msftbarot" label="msftbarot" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_barotropic_mass_streamfunction" title="Ocean Barotropic Mass Streamfunction" uid="5edcb9a162e51d0a2c8d42a75bed04ef" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Overturning mass streamfunction arising from all advective mass transport processes, resolved and parameterized." id="msftmrho" label="msftmrho" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="ocean_meridional_overturning_mass_streamfunction" title="Ocean Meridional Overturning Mass Streamfunction" uid="faeffb2438794e8400143533d61d1623" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="CMIP5 called this &quot;due to Bolus Advection&quot;.  Name change respects the more general physics of the mesoscale parameterizations." id="msftmrhompa" label="msftmrhompa" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_meridional_overturning_mass_streamfunction_due_to_parameterized_mesoscale_advection" title="ocean meridional overturning mass streamfunction due to parameterized mesoscale advection" uid="54bc1fc90fca4b22cd73cc18e3f6ec07" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Overturning mass streamfunction arising from all advective mass transport processes, resolved and parameterized." id="msftmyz" label="msftmyz" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_meridional_overturning_mass_streamfunction" title="Ocean Meridional Overturning Mass Streamfunction" uid="fe8d7416c92bdae56503590599286800" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="CMIP5 called this &quot;due to Bolus Advection&quot;.  Name change respects the more general physics of the mesoscale parameterizations." id="msftmzmpa" label="msftmzmpa" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_meridional_overturning_mass_streamfunction_due_to_parameterized_mesoscale_advection" title="ocean meridional overturning mass streamfunction due to parameterized mesoscale advection" uid="bd75f065fbaddd5d92f4767c6d6baaff" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Report only if there is a submesoscale eddy parameterization." id="msftmzsmpa" label="msftmzsmpa" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_meridional_overturning_mass_streamfunction_due_to_parameterized_submesoscale_advection" title="ocean meridional overturning mass streamfunction due to parameterized submesoscale advection" uid="136d81b44d45d8f7c549469ff69a74a7" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Overturning mass streamfunction arising from all advective mass transport processes, resolved and parameterized." id="msftyrho" label="msftyrho" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="ocean_y_overturning_mass_streamfunction" title="Ocean Y Overturning Mass Streamfunction" uid="29a3aaf848070fb8ff4ecb7aa2dfa2eb" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="CMIP5 called this &quot;due to Bolus Advection&quot;.  Name change respects the more general physics of the mesoscale parameterizations." id="msftyrhompa" label="msftyrhompa" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_y_overturning_mass_streamfunction_due_to_parameterized_mesoscale_advection" title="ocean Y overturning mass streamfunction due to parameterized mesoscale advection" uid="66a6e45b205b239932b72fa67a6500ed" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Overturning mass streamfunction arising from all advective mass transport processes, resolved and parameterized." id="msftyyz" label="msftyyz" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_y_overturning_mass_streamfunction" title="Ocean Y Overturning Mass Streamfunction" uid="59cc645887ed0a072bb553283e15f732" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="CMIP5 called this &quot;due to Bolus Advection&quot;.  Name change respects the more general physics of the mesoscale parameterizations." id="msftyzmpa" label="msftyzmpa" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_y_overturning_mass_streamfunction_due_to_parameterized_mesoscale_advection" title="ocean Y overturning mass streamfunction due to parameterized mesoscale advection" uid="481469b8223841a5382d43e7c6ae204e" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Report only if there is a submesoscale eddy parameterization." id="msftyzsmpa" label="msftyzsmpa" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_meridional_overturning_mass_streamfunction_due_to_parameterized_submesoscale_advection" title="ocean Y overturning mass streamfunction due to parameterized submesoscale advection" uid="2ac2d8645abddc0eb9fe53a7ea680465" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="" id="n2o" label="n2o" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="mole_fraction_of_nitrous_oxide_in_air" title="N2O volume mixing ratio" uid="942125e5a461fef57b1477b9a2bd5fa0" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Global mean Nitrous Oxide (N2O)" id="n2oglobal" label="n2oglobal" procComment="" procnote="" prov="CMIP5_Amon,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="mole_fraction_of_nitrous_oxide_in_air" title="Global Mean Mole Fraction of N2O" uid="09c328529f2fac58c1b016da33ba394c" unid="fd701138-3468-11e6-ba71-5404a60d96b5" units="1e-09"/>
<item description="This is the net mass flux of carbon from atmosphere into land, calculated as photosynthesis MINUS the sum of  plant and soil respiration, carbon fluxes from fire, harvest, grazing  and land use change. Positive flux is into the land." id="nbp" label="nbp" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes" title="Carbon Mass Flux out of Atmosphere due to Net Biospheric Production on Land" uid="337d362541c3e2a3f907abcaffa5c262" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Computed as npp minus heterotrophic respiration minus fire minus C leaching minus harvesting/clearing. Positive rate is into the land, negative rate is from the land.  Do not include fluxes from anthropogenic product pools to atmosphere" id="necbLut" label="necbLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes" title="net rate of C accumulation (or loss) on land use tile" uid="590ed0a8-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Natural flux of CO2 (expressed as a mass flux of carbon) from the atmosphere to the land calculated as the difference between uptake associated will photosynthesis and the release of CO2 from the sum of plant and soil respiration and fire.  Positive flux is into the land.  emissions from natural fires and human ignition fires as calculated by the fire module of the dynamic vegetation model, but excluding any CO2 flux from fire included in fLuc (CO2 Flux to Atmosphere from Land Use Change)." id="nep" label="nep" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes_excluding_anthropogenic_land_use_change" title="Net Carbon Mass Flux out of Atmosphere due to Net Ecosystem Productivity on Land." uid="b71c89e6003d19738e44474eaacf8ef0" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="netAtmosLandC13Flux" label="netAtmosLandC13Flux" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="net_atmos_to_land_C13_flux" title="Net Mass Flux of 13C between atmosphere and land (positive into land) as a result of all processes." uid="59176d94-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="netAtmosLandC14Flux" label="netAtmosLandC14Flux" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="net_atmos_to_land_C14_flux" title="Net Mass Flux of 14C between atmosphere and land (positive into land) as a result of all processes." uid="59132b58-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="netAtmosLandCO2Flux" label="netAtmosLandCO2Flux" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="surface_net_downward_mass_flux_of_carbon_dioxide_expressed_as_carbon_due_to_all_land_processes" title="Net flux of CO2 between atmosphere and land (positive into land) as a result of all processes." uid="59152142-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="nh4" label="nh4" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_ammonium_in_sea_water" title="Dissolved Ammonium Concentration" uid="5a887812bc95f4c8377af5051a2566fe" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="as specified by C4MIP" id="nLand" label="nLand" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="total_land_nitrogen" title="Total nitrogen in all terrestrial nitrogen pools" uid="59142e0e-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="nLeaf" label="nLeaf" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="leaf_nitrogen_content" title="Nitrogen Mass in Leaves" uid="591397be-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="nLitter" label="nLitter" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="litter_nitrogen_content" title="Nitrogen Mass in Litter Pool" uid="590e70f4-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="nLitterCwd" label="nLitterCwd" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="litter_wood_debris_nitrogen_content" title="Nitrogen Mass in Coarse Woody Debris" uid="5914de26-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="SUM of ammonium, nitrite, nitrate, etc over all soil layers" id="nMineral" label="nMineral" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="mineral_soil_nitrogen_content" title="Mineral nitrogen in the soil" uid="5913fa10-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="SUM of ammonium over all soil layers" id="nMineralNH4" label="nMineralNH4" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="mineral_nh4_soil_nitrogen_content" title="Mineral ammonium in the soil" uid="59151012-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="SUM of nitrate over all soil layers" id="nMineralNO3" label="nMineralNO3" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="mineral_no3_soil_nitrogen_content" title="Mineral nitrate in the soil" uid="59129468-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="no" label="no" procComment="" procnote="" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mole_fraction_of_nitrogen_monoxide_in_air" title="NO volume mixing ratio" uid="fe6ce54a-a41f-11e5-9025-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="no2" label="no2" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_nitrogen_dioxide_in_air" title="NO2 volume mixing ratio" uid="648f83bb87b09bb8c24aaf82bf3c9aef" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="no3" label="no3" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_nitrate_in_sea_water" title="Dissolved Nitrate Concentration" uid="96acc3ed79b2bd5e4dbd613a4c27720f" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="E.g. fruits, seeds, etc." id="nOther" label="nOther" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="other_vegegtation_components_nitrogen_content" title="Nitrogen mass in vegetation components other than leaves, stem and root" uid="5917cc94-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="unset" id="npp" label="npp" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="net_primary_productivity_of_biomass_expressed_as_carbon" title="Carbon Mass Flux out of Atmosphere due to Net Primary Production on Land" uid="b3267e6a8cd7e4a5401e7fbca2c4bf5a" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="This is the rate of carbon uptake by leaves due to NPP" id="nppLeaf" label="nppLeaf" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="net_primary_productivity_of_carbon_accumulated_in_leaves" title="Carbon Mass Flux due to NPP Allocation to Leaf" uid="df06d844bd95ddd2f0f62f54941c4b88" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="nppLut" label="nppLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="net_primary_productivity_of_biomass_expressed_as_carbon" title="net primary productivity on land use tile" uid="59148a84-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="This is the rate of carbon uptake by roots due to NPP" id="nppRoot" label="nppRoot" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="net_primary_productivity_of_carbon_accumulated_in_roots" title="Carbon Mass Flux due to NPP Allocation to Roots" uid="091b217c2450d012fb2e192dee04053f" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="This is the rate of carbon uptake by wood due to NPP" id="nppWood" label="nppWood" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="net_primary_productivity_of_carbon_accumulated_in_wood" title="Carbon Mass Flux due to NPP Allocation to Wood" uid="fb5bd0286cdca991d0f67c498513f602" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="nProduct" label="nProduct" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="nitrogen_content_of_products_of_anthropogenic_land_use_change" title="Nitrogen Mass in Products of Land Use Change" uid="5917f21e-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="including fine and coarse roots." id="nRoot" label="nRoot" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="root_nitrogen_content" title="Nitrogen Mass in Roots" uid="59136dfc-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="nSoil" label="nSoil" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="soil_nitrogen_content" title="Nitrogen Mass in Soil Pool" uid="590e5100-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="including sapwood and hardwood." id="nStem" label="nStem" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="stem_nitrogen_content" title="Nitrogen Mass in Stem" uid="59128f0e-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="as specified by C4MIP" id="nVeg" label="nVeg" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="vegetation_nitrogen_content" title="Nitrogen Mass in Vegetation" uid="59176128-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="nwdFracLut" label="nwdFracLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="" title="fraction of land use tile tile that is non-woody vegetation ( e.g. herbaceous crops)" uid="59170110-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1"/>
<item description="Roche - LSCE" id="O17p" label="O17p" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="17O in total precipitation" uid="590f10b8-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="Roche - LSCE" id="O17s" label="O17s" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="17O in solid precipitation" uid="591401a4-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="Roche - LSCE" id="O17wv" label="O17wv" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="O17 in water vapor" uid="590f7e72-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="Roche - LSCE" id="O18p" label="O18p" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="18O in total precipitation" uid="590e4408-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="Roche - LSCE" id="O18s" label="O18s" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="18O in solid precipitation" uid="591763b2-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="Roche - LSCE" id="O18sw" label="O18sw" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="O18 in sea water" uid="590e0dd0-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="Roche - LSCE" id="O18wv" label="O18wv" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="O18 in water vapor" uid="590d4440-9e49-11e5-803c-0d0b866b59f3" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
<item description="" id="o2" label="o2" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_dissolved_molecular_oxygen_in_sea_water" title="Dissolved Oxygen Concentration" uid="c2705ac5fb7561a3aa5744c1163bf2d7" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="o2min" label="o2min" procComment="" procnote="" prov="CMIP5,C4MIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_dissolved_molecular_oxygen_in_sea_water_at_shallowest_local_minimum_in_vertical_profile" title="Oxygen Minimum Concentration" uid="01f509c26cfbd2f30789d91b026e0016" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="o2sat" label="o2sat" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="mole_concentration_of_dissolved_molecular_oxygen_in_sea_water_at_saturation" title="Dissolved Oxygen Concentration at Saturation" uid="e4e75ce1fe85a547cd0d39d4b64ec0e2" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="o3" label="o3" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_ozone_in_air" title="Ozone volume mixing ratio" uid="1d4594c97188efd47935238a429e02e4" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="ONLY provide the sum of the following reactions: (i) O(1D)+H2O; (ii) O3+HO2; (iii) O3+OH; (iv) O3+alkenes (isoprene, ethene,...)" id="o3loss" label="o3loss" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mole_concentration_of_ozone_due_to_chemical_destruction" title="O3 destruction rate" uid="8f702d9afa69b3f0e0fb2a64470e12d8" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="ONLY provide the sum of all the HO2/RO2 + NO reactions (as k*[HO2]*[NO])" id="o3prod" label="o3prod" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mole_concentration_of_ozone_due_to_chemical_production" title="O3 production rate" uid="9799d95c5c691eec9bb4c1bf9b050191" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Ozone tracer intended to map out strat-trop exchange (STE) of ozone." id="o3ste" label="o3ste" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_ozone_in_air" title="Ozone volume mixing ratio" uid="218a6b28-8995-11e6-b63d-5404a60d96b5" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Organic Carbon supply to ocean through runoff (separate from gas exchange)" id="ocfriver" label="ocfriver" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="tendency_of_ocean_mole_content_of_organic_carbon_due_to_runoff_and_sediment_dissolution" title="Flux of Organic Carbon Into Ocean Surface by Runoff" uid="5be0620fea71e2541aa08aac57ed9243" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="Tendency of heat content for a grid cell from parameterized dianeutral mixing. Reported only for models that use conservative temperature as prognostic field." id="ocontempdiff" label="ocontempdiff" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_conservative_temperature_expressed_as_heat_content_due_to_parameterized_dianeutral_mixing" title="Tendency of Sea Water Conservative Temperature Expressed as Heat Content due to parameterized dianeutral mixing" uid="c4b3f6005f73f2fc2d0e348fdff3c2bc" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Tendency of heat content for a grid cell from parameterized eddy advection (any form of eddy advection). Reported only for models that use conservative temperature as prognostic field." id="ocontemppadvect" label="ocontemppadvect" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_conservative_temperature_expressed_as_heat_content_due_to_parameterized_eddy_advection" title="Tendency of Sea Water Conservative Temperature Expressed as Heat Content due to parameterized eddy advection" uid="c172481027367670eaf1e53fb8d2e841" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Tendency of heat content for a grid cell from parameterized mesoscale eddy diffusion. Reported only for models that use conservative temperature as prognostic field." id="ocontemppmdiff" label="ocontemppmdiff" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_conservative_temperature_expressed_as_heat_content_due_to_parameterized_mesoscale_diffusion" title="Tendency of Sea Water Conservative Temperature Expressed as Heat Content due to parameterized mesoscale diffusion" uid="7c5c71f969a6318b3fa5ff2875272caf" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Tendency of heat content for a grid cell from parameterized submesoscale eddy advection. Reported only for models that use conservative temperature as prognostic field." id="ocontemppsmadvect" label="ocontemppsmadvect" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_conservative_temperature_expressed_as_heat_content_due_to_parameterized_submesoscale_advection" title="Tendency of Sea Water Conservative Temperature Expressed as Heat Content due to parameterized submesoscale advection" uid="1742f769c80d35356bf80ab91789eec6" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="ocontemprmadvect" label="ocontemprmadvect" procComment="" procnote="" prov="CMIP6 endorsement [FAFMIP]" provmip="FAFMIP" sn="tendency_of_sea_water_conservative_temperature_expressed_as_heat_content_due_to_residual_mean_advection" title="Tendency of Sea Water Conservative Temperature Expressed as Heat Content due to Residual Mean Advection" uid="479c5de8-12cc-11e6-b2bc-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Tendency of heat content for a grid cell from all processes. Reported only for models that use conservative temperature as prognostic field." id="ocontemptend" label="ocontemptend" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_conservative_temperature_expressed_as_heat_content" title="Tendency of Sea Water Conservative Temperature Expressed as Heat Content" uid="c4c0cce59536f11df06a045fa8d0c091" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="AOD from the ambient aerosls (i.e., includes aerosol water).  Does not include AOD from stratospheric aerosols if these are prescribed but includes other possible background aerosol types. Needs a comment attribute &quot;wavelength: 440 nm&quot;" id="od440aer" label="od440aer" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_ambient_aerosol_particles" title="ambient aerosol optical thickness at 440 nm" uid="c5331238e635e9c913da1eb247859206" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Balkanski - LSCE" id="od443dust" label="od443dust" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="atmosphere_optical_thickness_due_to_dust_ambient_aerosol_particles" title="Optical thickness at 443 nm Dust" uid="59130948-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="AOD from the ambient aerosls (i.e., includes aerosol water).  Does not include AOD from stratospheric aerosols if these are prescribed but includes other possible background aerosol types. Needs a comment attribute &quot;wavelength: 550 nm&quot;" id="od550aer" label="od550aer" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_ambient_aerosol_particles" title="ambient aerosol optical thickness at 550 nm" uid="8f2fb9e812c26ee6cb8d9673e09d2644" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="proposed name: atmosphere_optical_thickness_due_to_water_ambient_aerosol" id="od550aerh2o" label="od550aerh2o" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_water_in_ambient_aerosol" title="aerosol water aod at 550nm" uid="3a9ddc45d480891285324a10ce98bc62" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Balkanski - LSCE" id="od550aerso" label="od550aerso" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="Stratospheric Optical depth at 550 nm (all aerosols) 2D-field (here we limit the computation of OD to the stratosphere only)" uid="591720a0-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="From tropopause to stratopause as defined by the model" id="od550aerstrat" label="od550aerstrat" procComment="" procnote="" prov="CMIP6 endorsement [GeoMIP]" provmip="GeoMIP" sn="strat_aerosol_optical_depth" title="Stratospheric Aerosol Optical Depth at 550nm" uid="590f8aca-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="total organic aerosol AOD due to biomass burning (excluding so4, nitrate BB components)" id="od550bb" label="od550bb" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_particulate_organic_matter_ambient_aerosol" title="bb aod@550nm" uid="a0c10a4b65d3b79db581a649058a08b1" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="od550bc" label="od550bc" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_black_carbon_ambient_aerosol" title="black carbon aod at 550nm" uid="15f4ad18bed7c35304209c651ef3758a" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="od550dust" label="od550dust" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_dust_ambient_aerosol" title="dust aod@550nm" uid="6bc406259290f4e4beaaaf960455d779" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="od550 due to particles with wet diameter less than 1 um  (ambient here means wetted). When models do not include explicit size information, it can be assumed that all anthropogenic aerosols and natural secondary aerosols have diameter less than 1 um." id="od550lt1aer" label="od550lt1aer" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_optical_thickness_due_to_pm1_ambient_aerosol" title="ambient fine aerosol optical thickness at 550 nm" uid="05aec7fe79d030ffc90a089a6a60b0f2" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="proposed name: atmosphere_optical_thickness_due_to_nitrate_ambient_aerosol" id="od550no3" label="od550no3" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_nitrate_ambient_aerosol" title="nitrate aod@550nm" uid="9e383b9714070f2b9f44effca08f50ac" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="od550oa" label="od550oa" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_particulate_organic_matter_ambient_aerosol" title="pom aod@550nm" uid="88dbb9df33c0581eefa084932d25ad0a" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="proposed name: atmosphere_optical_thickness_due_to_sulfate_ambient_aerosol" id="od550so4" label="od550so4" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_sulfate_ambient_aerosol" title="sulfate aod@550nm" uid="b9ca453bfa3c606401892e5768ca7d6c" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Balkanski - LSCE" id="od550so4so" label="od550so4so" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="" title="Stratospheric Optical depth at 550 nm (sulphate only) 2D-field (here we limit the computation of OD to the stratosphere only)" uid="5914cf30-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="total organic aerosol AOD due to secondary aerosol formation" id="od550soa" label="od550soa" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_particulate_organic_matter_ambient_aerosol" title="soa aod@550nm" uid="c682767d841fcdb714a3914519fabf93" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="od550ss" label="od550ss" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="atmosphere_optical_thickness_due_to_seasalt_ambient_aerosol" title="sea salt aod@550nm" uid="a4105b51d498d46985677801436e7649" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Balkanski - LSCE" id="od865dust" label="od865dust" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="atmosphere_optical_thickness_due_to_dust_ambient_aerosol_particles" title="Optical thickness at 865 nm Dust" uid="5914c0ee-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="AOD from the ambient aerosls (i.e., includes aerosol water).  Does not include AOD from stratospheric aerosols if these are prescribed but includes other possible background aerosol types. Needs a comment attribute &quot;wavelength: 870 nm&quot;" id="od870aer" label="od870aer" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="atmosphere_optical_thickness_due_to_ambient_aerosol_particles" title="ambient aerosol optical thickness at 870 nm" uid="0a9c3f8ff6151a5baa8bb93d5a1fa090" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="oh" label="oh" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_hydroxyl_radical_in_air" title="OH volume mixing ratio" uid="609d47152c2ed8122caa2528117aff9a" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="unset" id="omldamax" label="omldamax" procComment="" procnote="" prov="CMIP5_Omon,CMIP5_day,PMIP3_Oclim,PMIP3_Omon,PMIP3_day" provmip="CMIP5" sn="ocean_mixed_layer_thickness_defined_by_mixing_scheme" title="Mean Daily Maximum Ocean Mixed Layer Thickness Defined by Mixing Scheme" uid="5f8dc9362d17e2daa42dd6f0f38afb76" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Tendency of heat content for a grid cell from parameterized dianeutral mixing. Reported only for models that use potential temperature as prognostic field." id="opottempdiff" label="opottempdiff" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_potential_temperature_expressed_as_heat_content_due_to_parameterized_dianeutral_mixing" title="tendency of sea water potential temperature expressed as heat content due to parameterized dianeutral mixing" uid="2aa31f177542022b5d6ca809cf01eff5" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="opottempmint" label="opottempmint" procComment="" procnote="" prov="CMIP6 endorsement [FAFMIP]" provmip="FAFMIP" sn="integral_wrt_depth_of_product_of_sea_water_density_and_potential_temperature" title="" uid="59133ddc-9e49-11e5-803c-0d0b866b59f3" unid="fd70e27a-3468-11e6-ba71-5404a60d96b5" units="degC kg m-2"/>
<item description="Tendency of heat content for a grid cell from parameterized eddy advection (any form of eddy advection). Reported only for models that use potential temperature as prognostic field." id="opottemppadvect" label="opottemppadvect" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_potential_temperature_expressed_as_heat_content_due_to_parameterized_eddy_advection" title="tendency of sea water potential temperature expressed as heat content due to parameterized eddy advection" uid="8530ec1d1281da71f660df7c61571e38" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Tendency of heat content for a grid cell from parameterized mesoscale eddy diffusion. Reported only for models that use potential temperature as prognostic field." id="opottemppmdiff" label="opottemppmdiff" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_potential_temperature_expressed_as_heat_content_due_to_parameterized_mesoscale_diffusion" title="tendency of sea water potential temperature expressed as heat content due to parameterized mesoscale diffusion" uid="bf9968cc511b92e99f89e9856bd38fb6" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Tendency of heat content for a grid cell from parameterized submesoscale eddy advection. Reported only for models that use potential temperature as prognostic field." id="opottemppsmadvect" label="opottemppsmadvect" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_potential_temperature_expressed_as_heat_content_due_to_parameterized_submesoscale_advection" title="tendency of sea water potential temperature expressed as heat content due to parameterized submesoscale advection" uid="64c745ab7c8597bb0afed2bafd12c20c" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="opottemprmadvect" label="opottemprmadvect" procComment="" procnote="" prov="CMIP6 endorsement [FAFMIP]" provmip="FAFMIP" sn="tendency_of_sea_water_potential_temperature_expressed_as_heat_content_due_to_residual_mean_advection" title="Tendency of Sea Eater Potential Temperature Expressed as Heat Content due to Residual Mean Advection" uid="3cbe53c2-12cc-11e6-b2bc-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Tendency of heat content for a grid cell from all processes. Reported only for models that use potential temperature as prognostic field." id="opottemptend" label="opottemptend" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_potential_temperature_expressed_as_heat_content" title="tendency of sea water potential temperature expressed as heat content" uid="d447c41b5f4e8c44f1fe64503cb4caa1" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." id="orog" label="orog" procComment="" procnote="" prov="CCMI1_annual,CCMI1_daily,CCMI1_fixed,CCMI1_hourly,CCMI1_monthly,CMIP5_6hrLev,CMIP5_Amon,CMIP5_aero,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfSites,CORDEX_fx,PMIP3_Aclim,PMIP3_Amon,SPECS_6hr,SPECS_Amon" provmip="CMIP5" sn="surface_altitude" title="surface altitude" uid="00e77372e8b909d9a827a0790e991fd9" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Tendency of salt content for a grid cell from parameterized dianeutral mixing." id="osaltdiff" label="osaltdiff" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_salinity_expressed_as_salt_content_due_to_parameterized_dianeutral_mixing" title="tendency of sea water salinity expressed as salt content due to parameterized dianeutral mixing" uid="a41ce7d71eb9622c88b8f18438cbe36c" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Tendency of salt content for a grid cell from parameterized eddy advection (any form of eddy advection)." id="osaltpadvect" label="osaltpadvect" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_salinity_expressed_as_salt_content_due_to_parameterized_eddy_advection" title="tendency of sea water salinity expressed as salt content due to parameterized eddy advection" uid="f507e49404f47a6255539751483d8bdc" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Tendency of salt content for a grid cell from parameterized mesoscale eddy diffusion." id="osaltpmdiff" label="osaltpmdiff" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_salinity_expressed_as_salt_content_due_to_parameterized_mesoscale_diffusion" title="tendency of sea water salinity expressed as salt content due to parameterized mesoscale diffusion" uid="02e08dbdee260db0debd5685cb62934f" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Tendency of salt content for a grid cell from parameterized submesoscale eddy advection." id="osaltpsmadvect" label="osaltpsmadvect" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_salinity_expressed_as_salt_content_due_to_parameterized_submesoscale_advection" title="tendency of sea water salinity expressed as salt content due to parameterized submesoscale advection" uid="9259f1caedb47c287bc1c9dfc3c6f756" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="osaltrmadvect" label="osaltrmadvect" procComment="" procnote="" prov="CMIP6 endorsement [FAFMIP]" provmip="FAFMIP" sn="tendency_of_sea_water_salinity_expressed_as_salt_content_due_to_residual_mean_advection" title="Tendency of Sea Water Salinity Expressed as Salt Content due to Residual Mean Advection" uid="4f1bd1a2-12cc-11e6-b2bc-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Tendency of salt content for a grid cell from all processes." id="osalttend" label="osalttend" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_sea_water_salinity_expressed_as_salt_content" title="tendency of sea water salinity expressed as salt content" uid="14d70240caeb3a95922af16eca2d497b" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="total chemical loss rate for o+o1d+o3" id="oxloss" label="oxloss" procComment="" procnote="" prov="CMIP6 endorsement [DAMIP]" provmip="DAMIP" sn="tendency_of_mole_concentration_of_ozone_and_atomic_oxygen_and_1D_oxygen_atom_due_to_chemical_destruction" title="total Ox loss rate" uid="590db8c6-9e49-11e5-803c-0d0b866b59f3" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="total production rate of o+o1d+o3 including o2 photolysis and all o3 producing reactions" id="oxprod" label="oxprod" procComment="" procnote="" prov="CMIP6 endorsement [DAMIP]" provmip="DAMIP" sn="tendency_of_mole_concentration_of_ozone_and_atomic_oxygen_and_1D_oxygen_atom_due_to_chemical_production_and_photolysis" title="total Ox production rate" uid="5917ff52-9e49-11e5-803c-0d0b866b59f3" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="" id="pabigthetao" label="pabigthetao" procComment="" procnote="" prov="CMIP6 endorsement [FAFMIP]" provmip="FAFMIP" sn="sea_water_added_conservative_temperature" title="Sea Water Added Conservative Temperature" uid="15410a16-f746-11e5-950e-5404a60d96b5" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="" id="pan" label="pan" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_peroxyacetyl_nitrate_in_air" title="PAN volume mixing ratio" uid="586c3879af2023a43fd12c2e0a64b6af" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="parag" label="parag" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="tendency_of_mole_concentration_of_aragonite_expressed_as_carbon_in_sea_water_due_to_biological_production" title="Aragonite Production" uid="6aec29521de81a361630aac9ffc69f8f" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Simulated reflectance from PARASOL as seen at the top of the atmosphere for 5 solar zenith angles. Valid only over ocean and for one viewing direction (viewing zenith angle of 30 degrees and relative azimuth angle 320 degrees)." id="parasolRefl" label="parasolRefl" procComment="" procnote="" prov="CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfOff" provmip="CMIP5" sn="toa_bidirectional_reflectance" title="PARASOL Reflectance" uid="a06b8e83250b870d9f39dc1f6534efcb" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Percentage of entire grid cell  that is covered by anthropogenic pasture." id="pastureFrac" label="pastureFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage of Land which is Anthropogenic Pasture" uid="64c3bc72c46203646eb28fee17f6a5f7" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="pathetao" label="pathetao" procComment="" procnote="" prov="CMIP6 endorsement [FAFMIP]" provmip="FAFMIP" sn="sea_water_additional_potential_temperature" title="" uid="590df00c-9e49-11e5-803c-0d0b866b59f3" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="" id="pbfe" label="pbfe" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="tendency_of_mole_concentration_of_iron_in_sea_water_due_to_biological_production" title="Biogenic Iron Production" uid="a336fa5c0a328636d04ea8f648dcd7c7" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="" id="pbo" label="pbo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_pressure_at_sea_floor" title="Sea Water Pressure at Sea floor" uid="3ed1667233f6ae4fe3c5ff93cd2de2f3" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="" id="pbsi" label="pbsi" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="tendency_of_mole_concentration_of_silicon_in_sea_water_due_to_biological_production" title="Biogenic Silica Production" uid="683b8f723c94f4a3b3e65569b975d648" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="" id="pcalc" label="pcalc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="tendency_of_mole_concentration_of_calcite_expressed_as_carbon_in_sea_water_due_to_biological_production" title="Calcite Production" uid="57235dfe47c3e04ac63a3c850ef16458" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="as specified by C4MIP" id="pcp" label="pcp" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="total_precipitation_flux" title="Total precipitation" uid="5913edcc-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="ISCCP Mean Cloud Top Pressure. Time-means are weighted by the ISCCP Total Cloud Fraction {:cltisccp} - see  http://cfmip.metoffice.com/COSP.html" id="pctisccp" label="pctisccp" procComment="" procnote="" prov="CMIP5_cfDay,CMIP5_cfMon" provmip="CMIP5" sn="air_pressure_at_cloud_top" title="ISCCP Mean Cloud Top Pressure" uid="987be9b68c051baf4f0c5b6e8c26b4d8" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Primary (organic carbon) production by the diatom component alone" id="pdi" label="pdi" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_diatoms" title="Diatom Primary Carbon Production" uid="82b959ef614903ae8fa6bc2b03b7ee43" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="*where land over land*, i.e., this is the total mass of liquid water contained within the permafrost layer within the land portion of a grid cell divided by the area of the land portion of the cell." id="pflw" label="pflw" procComment="" procnote="" prov="CMIP5_LImon,PMIP3_LIclim,PMIP3_LImon" provmip="CMIP5" sn="liquid_water_content_of_permafrost_layer" title="Liquid Water Content of Permafrost Layer" uid="67adc30ae1278d2ef6d696ba0e2c92e8" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Air pressure on model levels" id="pfull" label="pfull" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cfDay,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="air_pressure" title="Pressure on Model Levels" uid="7a107875bd58c5e655e8f87152a3bad7" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="negative log of hydrogen ion concentration with the concentration expressed as mol H kg-1." id="ph" label="ph" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="sea_water_ph_reported_on_total_scale" title="pH" uid="b50af258aff9f9ca19fdf1ec4b039a55" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Air pressure on model half-levels" id="phalf" label="phalf" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cfDay,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="air_pressure" title="Pressure on Model Half-Levels" uid="154ab10964742eaff37de9cc5beef39c" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="proposed name: photolysis_rate_of_ozone_to_O1D" id="photo1d" label="photo1d" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="photolysis_rate_of_ozone_to_1D_oxygen_atom" title="photolysis rate of O3 to O1d" uid="a2609abee6ecd5d535a48e29ae70e852" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="sum of phytoplankton carbon component concentrations.  In most (all?) cases this is the sum of phycdiat and phycmisc (i.e., &quot;Diatom Carbon Concentration&quot; and &quot;Non-Diatom Phytoplankton Carbon Concentration&quot;" id="phyc" label="phyc" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_phytoplankton_expressed_as_carbon_in_sea_water" title="Phytoplankton Carbon Concentration" uid="54eb2f6651441ff52f9aea4d43a83024" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon concentration from calcareous (calcite-producing) phytoplankton component alone" id="phycalc" label="phycalc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_calcareous_phytoplankton_expressed_as_carbon_in_sea_water" title="Mole Concentration of Calcareous Phytoplankton expressed as Carbon in Sea Water" uid="38c7aa97ad0f74e33dfd3f115124d04f" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of phytoplankton organic carbon component concentrations at the sea surface" id="phycos" label="phycos" procComment="" procnote="nsrf" prov="OMIP_day" provmip="OMIP" sn="mole_concentration_of_phytoplankton_expressed_as_carbon_in_sea_water" title="Sea Surface Phytoplankton Carbon Concentration" uid="314e3eb73c9ccbdd132899317d87d856" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon from the diatom phytoplankton component concentration alone" id="phydiat" label="phydiat" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_diatoms_expressed_as_carbon_in_sea_water" title="Mole Concentration of Diatoms expressed as Carbon in Sea Water" uid="5880ab9386066d5d620774a46840cc25" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon concentration from the diazotrophic phytoplankton component alone" id="phydiaz" label="phydiaz" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_diazotrophs_expressed_as_carbon_in_sea_water" title="Mole Concentration of Diazotrophs Expressed as Carbon in Sea Water" uid="ad7df7199759ad25164da83e37a6da17" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of phytoplankton iron component concentrations" id="phyfe" label="phyfe" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_phytoplankton_expressed_as_iron_in_sea_water" title="Phytoplankton Iron Concentration" uid="87f531b94bd9ca68e33e89d7e3e81be4" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon concentration from additional phytoplankton component alone" id="phymisc" label="phymisc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_miscellaneous_phytoplankton_expressed_as_carbon_in_sea_water" title="Mole Concentration of Miscellaneous Phytoplankton expressed as Carbon in Sea Water" uid="9a7cb6c8481412d525ba1101f82b892d" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of phytoplankton nitrogen component concentrations" id="phyn" label="phyn" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_phytoplankton_expressed_as_nitrogen_in_sea_water" title="Phytoplankton Nitrogen Concentration" uid="80f337469efdd0d5392ad995a90fd15c" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of phytoplankton phosphorus components" id="phyp" label="phyp" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="mole_concentration_of_phytoplankton_expressed_as_phosphorus_in_sea_water" title="Phytoplankton Phosphorus Concentration" uid="1ae710e405acc14b368f55d9205be258" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon concentration from the picophytoplankton (&lt;2 um) component alone" id="phypico" label="phypico" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_picophytoplankton_expressed_as_carbon_in_sea_water" title="Mole Concentration of Picophytoplankton expressed as Carbon in Sea Water" uid="3aa265a13ddf4caa82a8e1e3d4482f42" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of phytoplankton silica component concentrations" id="physi" label="physi" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="mole_concentration_of_phytoplankton_expressed_as_silicon_in_sea_water" title="Phytoplankton Silica Concentration" uid="6cde3055df67931d84608fc5b7694f65" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="The atmospheric pressure at the model layer midpoints for all times and levels in the associated output variables" id="pmlev" label="pmlev" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="air_pressure" title="Air Pressure" uid="0f3a1e49361eb4954c18e1fe0ae7910b" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Primary (organic carbon) production by phytoplankton due to nitrate uptake alone" id="pnitrate" label="pnitrate" procComment="" procnote="" prov="CMIP5_Oyr" provmip="CMIP5" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_nitrate_utilization" title="Primary Carbon Production by Phytoplankton due to Nitrate Uptake Alone" uid="a3dd8da8b39dde98682ad859d8f5f5c2" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="" id="po4" label="po4" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_dissolved_inorganic_phosphorus_in_sea_water" title="Total Dissolved Inorganic Phosphorus Concentration" uid="72366111fcb3d2a0d14dc917e8fca8eb" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of particulate organic nitrogen component concentrations" id="pon" label="pon" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP" provmip="CMIP5" sn="mole_concentration_of_particulate_organic_matter_expressed_as_nitrogen_in_sea_water" title="Particulate Organic Nitrogen Concentration" uid="14e5a31ac93e26c50f8c01ed9a032168" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of particulate organic phosphorus component concentrations" id="pop" label="pop" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_particulate_organic_matter_expressed_as_phosphorus_in_sea_water" title="Particulate Organic Phosphorus Concentration" uid="562c99ff069851867df730ed9531c796" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="potet" label="potet" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="water_potential_evapotranspiration_flux" title="Potential Evapotranspiration" uid="591437f0-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="total primary (organic carbon) production by phytoplankton" id="pp" label="pp" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production" title="Primary Carbon Production by Phytoplankton" uid="41cef8aa37d1f0164ae061f293d4361c" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Primary (organic carbon) production by the calcite-producing phytoplankton component alone" id="ppcalc" label="ppcalc" procComment="" procnote="" prov="OMIP.Oyr.bgc.84" provmip="OMIP" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_calcareous_phytoplankton" title="Tendency of Mole Concentration of Organic Carbon in Sea Water due to Net Primary Production by Calcareous Phytoplankton" uid="e526caea-dd83-11e5-9194-ac72891c3257" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Primary (organic carbon) production by the diatom component alone" id="ppdiat" label="ppdiat" procComment="" procnote="" prov="OMIP.Oyr.bgc.82" provmip="OMIP" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_diatoms" title="Diatom Primary Carbon Production" uid="e525bed4-dd83-11e5-9194-ac72891c3257" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Primary (organic carbon) production by the diazotrophic phytoplankton component alone" id="ppdiaz" label="ppdiaz" procComment="" procnote="" prov="OMIP.Oyr.bgc.83" provmip="OMIP" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_diazotrophs" title="Tendency of Mole Concentration of Organic Carbon in Sea Water due to Net Primary Production by Diazotrophs" uid="e52644bc-dd83-11e5-9194-ac72891c3257" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Primary (organic carbon) production by other phytoplankton components alone" id="ppmisc" label="ppmisc" procComment="" procnote="" prov="OMIP.Oyr.bgc.87" provmip="OMIP" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_miscellaneous_phytoplankton" title="Other Phytoplankton Carbon Production" uid="e5278b06-dd83-11e5-9194-ac72891c3257" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Primary (organic carbon) production by the picophytoplankton (&lt;2 um) component alone" id="pppico" label="pppico" procComment="" procnote="" prov="OMIP.Oyr.bgc.85" provmip="OMIP" sn="tendency_of_mole_concentration_of_particulate_organic_matter_expressed_as_carbon_in_sea_water_due_to_net_primary_production_by_picophytoplankton" title="Tendency of Mole Concentration of Organic Carbon in Sea Water due to Net Primary Production by Picophytoplankton" uid="e527532a-dd83-11e5-9194-ac72891c3257" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="includes both liquid and solid phases" id="pr" label="pr" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="precipitation_flux" title="Precipitation" uid="62f26742cf240c1b5169a5cd511196b6" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="prbigthetao" label="prbigthetao" procComment="" procnote="" prov="CMIP6 endorsement [FAFMIP]" provmip="FAFMIP" sn="sea_water_redistributed_conservative_temperature" title="Sea Water Redistributed Conservative Temperature" uid="11806b1e-f747-11e5-950e-5404a60d96b5" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="Convective precipitation at surface; includes both liquid and solid phases." id="prc" label="prc" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,CMIP5_day,CORDEX_3h,CORDEX_day,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_Amon,SPECS_day" provmip="CMIP5" sn="convective_precipitation_flux" title="Convective Precipitation" uid="aa2bea81f238ad8f2c35a7e16ad97801" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="unset" id="prcprof" label="prcprof" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="convective_rainfall_flux" title="Convective Rainfall Flux" uid="efca52ebca27f2ee5c0c7926f776ac1d" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Convection precipitation from shallow convection" id="prcsh" label="prcsh" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="hallow_convective_precipitation_flux" title="Precipitation Flux from Shallow Convection" uid="590d6e02-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="prhmax" label="prhmax" procComment="" procnote="" prov="CORDEX_day" provmip="CORDEX" sn="precipitation_flux" title="Maximum Hourly Precipitation Rate" uid="7553003ead183dd3276108b6311a337f" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="large-scale precipitation of all forms of water in the solid phase." id="prlsns" label="prlsns" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="large_scale_snowfall_flux" title="Stratiform Snowfall Flux" uid="f7aec4279a79220660f26a558ed5672c" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="unset" id="prlsprof" label="prlsprof" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="large_scale_rainfall_flux" title="Stratiform Rainfall Flux" uid="1e53b0fda8f2186407bb29f802c0aa93" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="prra" label="prra" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="rainfall_flux" title="Rainfall rate" uid="5912cab4-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="prrc" label="prrc" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="convective_rainfall_flux" title="Convective Rainfall rate" uid="5917e2ba-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The fraction of the grid averaged rainfall which falls on the snow pack" id="prrsn" label="prrsn" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="mass_fraction_of_rainfall_onto_snow" title="Fraction of rainfall on snow." uid="590e3260-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1"/>
<item description="at surface; includes precipitation of all forms of water in the solid phase" id="prsn" label="prsn" procComment="" procnote="" prov="CMIP5_Amon" provmip="CMIP5" sn="snowfall_flux" title="Snowfall Flux" uid="051919eddec810e292c883205c944ceb" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="convective precipitation of all forms of water in the solid phase." id="prsnc" label="prsnc" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="convective_snowfall_flux" title="Convective Snowfall Flux" uid="27b742af91660071179e5440d83ddc37" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The fraction of the snowfall which falls on the snow pack" id="prsnsn" label="prsnsn" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="mass_fraction_of_snowfall_onto_snow" title="Fraction of snowfall on snow." uid="5917ed1e-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1"/>
<item description="" id="prthetao" label="prthetao" procComment="" procnote="" prov="CMIP6 endorsement [FAFMIP]" provmip="FAFMIP" sn="sea_water_redistributed_potential_temperature" title="" uid="5914af46-9e49-11e5-803c-0d0b866b59f3" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="The precipitation flux that is intercepted by the vegetation canopy (if present in model) before reaching the ground." id="prveg" label="prveg" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="precipitation_flux_onto_canopy" title="Precipitation onto Canopy" uid="e54a3eda3d5fc42a9cd1354038ad45ed" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="vertically integrated through the atmospheric column" id="prw" label="prw" procComment="" procnote="vi" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="atmosphere_water_vapor_content" title="Water Vapor Path" uid="fc637f1c75e58be8a6e4112411a00f36" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="surface pressure (not mean sea-level pressure), 2-D field to calculate the 3-D pressure field from hybrid coordinates" id="ps" label="ps" procComment="" procnote="" prov="CMIP5_6hrLev" provmip="CMIP5" sn="surface_air_pressure" title="Surface Air Pressure" uid="8c9504d28596e05586c8e193082ac617" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Residual mass streamfunction, computed from vstar and integrated from the top of the atmosphere (on the native model grid). Reference: Andrews et al (1987): Middle Atmospheric Dynamics. Accademic Press." id="psitem" label="psitem" procComment="" procnote="" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="meridional_streamfunction_transformed_eulerian_mean" title="Transformed Eulerian Mean mass stramfunction" uid="59137716-9e49-11e5-803c-0d0b866b59f3" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s^-1"/>
<item description="Sea Level Pressure" id="psl" label="psl" procComment="" procnote="" prov="CMIP5_6hrPlev,CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,CMIP5_day,CORDEX_3h,CORDEX_day,CORDEX_mon,CORDEX_sem,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_6hr,SPECS_Amon,SPECS_day" provmip="CMIP5" sn="air_pressure_at_sea_level" title="Sea Level Pressure" uid="3d23c359f44d6a153c4dcab9e07d7cb6" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="" id="pso" label="pso" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_pressure_at_sea_water_surface" title="Sea Water Pressure at Sea Water Surface" uid="d94709e6b579bccccccc914ba3531feb" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="2D monthly mean thermal tropopause calculated using WMO tropopause definition on 3d temperature" id="ptp" label="ptp" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tropopause_air_pressure" title="Tropopause Air Pressure" uid="1562cba76e80f37d1c133ccd079fa715" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="" id="qgwr" label="qgwr" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="water_flux_from_soil_layer_to_groundwater" title="Groundwater recharge from soil layer" uid="591768a8-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Carbon mass flux per unit area into atmosphere due to autotrophic respiration on land (respiration by producers) [see rh for heterotrophic production]" id="ra" label="ra" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="plant_respiration_carbon_flux" title="Carbon Mass Flux into Atmosphere due to Autotrophic (Plant) Respiration on Land" uid="2d38bda3114d03f7543b8af88aadd03a" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="rac13" label="rac13" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="plant_respiration_c13_flux" title="Mass Flux of 13C into Atmosphere due to Autotrophic (Plant) Respiration on Land" uid="590dd13a-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="rac14" label="rac14" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="plant_respiration_c14_flux" title="Mass Flux of 14C into Atmosphere due to Autotrophic (Plant) Respiration on Land" uid="5914517c-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Rain mixing ratio" id="rainmxrat" label="rainmxrat" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="mass_fraction_of_rain_in_air" title="rain_mixing_ratio" uid="5914b9be-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="added for completeness with Ra_root" id="raLeaf" label="raLeaf" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="autotrophic_respiration_from_leaves" title="Total respiration from leaves" uid="590f2bfc-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="raLut" label="raLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="plant_respiration_carbon_flux" title="plant respiration on land use tile" uid="59140726-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total autotrophic respiration from all belowground plant parts.  This has benchmarking value because the sum of Rh and root respiration can be compared to observations of total soil respiration." id="raRoot" label="raRoot" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="autotrophic_respiration_from_roots" title="Total Respiration from Roots" uid="591491e6-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="added for completeness with Ra_root" id="raStem" label="raStem" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="autotrophic_respiration_from_stem" title="Total Respiration from Stem" uid="590db236-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Droplets are liquid only.  This is the effective radius &quot;as seen from space&quot; over convective liquid cloudy portion of grid cell.  This is the value from uppermost model layer with liquid cloud or, if available, or for some models it is the sum over all liquid cloud tops, no matter where they occur, as long as they are seen from the top of the atmosphere. Reported values are weighted by total liquid cloud top fraction of  (as seen from TOA) each time sample when computing monthly mean.daily data, separated to large-scale clouds, convective clouds. If any of the cloud is from more than one process (i.e. shallow convection), please provide them separately." id="reffcclwtop" label="reffcclwtop" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="effective_radius_of_convective_cloud_liquid_water_particle_at_liquid_water_cloud_top" title="Cloud-Top Effective Droplet Radius In Convective Cloud" uid="590f64fa-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." id="reffclic" label="reffclic" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="effective_radius_of_convective_cloud_ice_particle" title="Hydrometeor Effective Radius of Convective Cloud Ice" uid="d80ff3a0dec0b1256a0943aadab66813" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." id="reffclis" label="reffclis" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="effective_radius_of_stratiform_cloud_ice_particle" title="Hydrometeor Effective Radius of Stratiform Cloud Ice" uid="c2270065bb39bfa4fbf0d13a78dfa8a1" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Droplets are liquid.  The effective radius is defined as the ratio of the third moment over the second moment of the particle size distribution and the time-mean should be calculated, weighting the individual samples by the cloudy fraction of the grid cell." id="reffclwc" label="reffclwc" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="effective_radius_of_convective_cloud_liquid_water_particle" title="Convective Cloud Droplet Effective Radius" uid="7aa8f285b17a5bcfce416f19c29d6d72" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Droplets are liquid.  The effective radius is defined as the ratio of the third moment over the second moment of the particle size distribution and the time-mean should be calculated, weighting the individual samples by the cloudy fraction of the grid cell." id="reffclws" label="reffclws" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="effective_radius_of_stratiform_cloud_liquid_water_particle" title="Stratiform Cloud Droplet Effective Radius" uid="ed2fff61c68d8a09d5034168e82ae862" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Droplets are liquid only.  This is the effective radius as seen from space over liquid cloudy portion of grid cell. This is the value from uppermost model layer with liquid cloud or, if available, or for some models it is the sum over all liquid cloud tops, no matter where they occur, as long as they are seen from the top of the atmosphere.TOA) each time sample when computing monthly mean. Reported values are weighted by total liquid cloud top fraction of  (as seen from" id="reffclwtop" label="reffclwtop" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="effective_radius_of_cloud_liquid_water_particle_at_liquid_water_cloud_top" title="cloud-top effective droplet radius" uid="83d1d066c3325c7402b6265eee068056" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." id="reffgrpls" label="reffgrpls" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="effective_radius_of_stratiform_cloud_graupel_particle" title="Hydrometeor Effective Radius of Stratiform Graupel" uid="cbd8a804ef6ec2ec45913e74f25d973f" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." id="reffrainc" label="reffrainc" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="effective_radius_of_convective_cloud_rain_particle" title="Hydrometeor Effective Radius of Convective Rainfall" uid="60439f9beed734902e807ce8c572291c" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." id="reffrains" label="reffrains" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="effective_radius_of_stratiform_cloud_rain_particle" title="Hydrometeor Effective Radius of Stratiform Rainfall" uid="d7f5ed6071c26983b8097d0d4a29a4d0" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Droplets are liquid only.  This is the effective radius &quot;as seen from space&quot; over liquid stratiform cloudy portion of grid cell.  This is the value from uppermost model layer with liquid cloud or, if available, or for some models it is the sum over all liquid cloud tops, no matter where they occur, as long as they are seen from the top of the atmosphere. Reported values are weighted by total liquid cloud top fraction of  (as seen from TOA) each time sample when computing monthly mean.daily data, separated to large-scale clouds, convective clouds. If any of the cloud is from more than one process (i.e. shallow convection), please provide them separately." id="reffsclwtop" label="reffsclwtop" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="effective_radius_of_stratiform_cloud_liquid_water_particle_at_liquid_water_cloud_top" title="Cloud-Top Effective Droplet Radius In Stratiform Cloud" uid="59131be0-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." id="reffsnowc" label="reffsnowc" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="effective_radius_of_convective_cloud_snow_particle" title="Hydrometeor Effective Radius of Convective Snowfall" uid="40386a39f65c07f0fbb689b89eb3a004" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="This is defined as the in-cloud ratio of the third moment over the second moment of the particle size distribution (obtained by considering only the cloudy portion of the grid cell)." id="reffsnows" label="reffsnows" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="effective_radius_of_stratiform_cloud_snow_particle" title="Hydrometeor Effective Radius of Stratiform Snowfall" uid="3723cf3c0aef7741d065625c75d34d9a" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="" id="remoc" label="remoc" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_mole_concentration_of_organic_matter_expressed_as_carbon_in_sea_water_due_to_remineralization" title="Remineralization of Organic Carbon" uid="6b8715466e3423119e9642776eacb693" unid="fd7243a4-3468-11e6-ba71-5404a60d96b5" units="mol m-3 s-1"/>
<item description="Percentage of entire grid cell  that is land and is covered by  neither vegetation nor bare-soil (e.g., urban, ice, lakes, etc.)" id="residualFrac" label="residualFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage of Grid Cell that is Land but Neither Vegetation-Covered nor Bare Soil" uid="e1ca31ce340d507b1dce7a537bbef951" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="unset" id="rGrowth" label="rGrowth" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_upward_carbon_mass_flux_due_to_plant_respiration_for_biomass_growth" title="Carbon Mass Flux into Atmosphere due to Growth Autotrophic Respiration on Land" uid="f7237f04672f809d49922d1b995f281f" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Carbon mass flux per unit area into atmosphere due to heterotrophic respiration on land (respiration by consumers)" id="rh" label="rh" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="heterotrophic_respiration_carbon_flux" title="Carbon Mass Flux into Atmosphere due to Heterotrophic Respiration on Land" uid="93723bb54a2c43450d75403102e618ac" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="rhc13" label="rhc13" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="heterotrophic_respiration_c13_flux" title="Mass Flux of 13C into Atmosphere due to Heterotrophic Respiration on Land" uid="590f1f68-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="rhc14" label="rhc14" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="heterotrophic_respiration_c14_flux" title="Mass Flux of 14C into Atmosphere due to Heterotrophic Respiration on Land" uid="590f2436-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Needed to calculate litter bulk turnover time. Includes respiration from CWD as well." id="rhLitter" label="rhLitter" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="heterotrophic_respiration_carbon_flux_from_litter" title="Carbon Mass Flux into Atmosphere due to Heterotrophic Respiration from Litter on Land" uid="59136654-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="rhLut" label="rhLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="heterotrophic_respiration_carbon_flux" title="soil heterotrophic respiration on land use tile" uid="5912a174-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Needed to calculate soil bulk turnover time" id="rhSoil" label="rhSoil" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="heterotrophic_respiration_carbon_flux_from_soil" title="Carbon Mass Flux into Atmosphere due to Heterotrophic Respiration from Soil on Land" uid="590f3674-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Outflow of River Water from Cell" id="rivo" label="rivo" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="water_flux_to_downstream" title="River Discharge" uid="590e05c4-9e49-11e5-803c-0d0b866b59f3" unid="fd71fed0-3468-11e6-ba71-5404a60d96b5" units="m3 s-1"/>
<item description="Inflow of River Water into Cell" id="rivi" label="rivi" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="water_flux_from_upstream" title="River Inflow" uid="590e034e-9e49-11e5-803c-0d0b866b59f3" unid="fd71fed0-3468-11e6-ba71-5404a60d96b5" units="m3 s-1"/>
<item description="Downwelling Longwave Radiation (includes the fluxes at the surface and TOA)" id="rld" label="rld" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="downwelling_longwave_flux_in_air" title="Downwelling Longwave Radiation" uid="c432bfbfc0e7f4403f91af39736ff61c" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Downwelling longwave radiation calculated using carbon dioxide concentrations increased fourfold (includes the fluxes at the surface and TOA)" id="rld4co2" label="rld4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="downwelling_longwave_flux_in_air" title="Downwelling Longwave Radiation 4XCO2 Atmosphere" uid="e0279cf7335a5b9292a1a3c8f70a32a2" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Downwelling clear-sky longwave radiation (includes the fluxes at the surface and TOA)" id="rldcs" label="rldcs" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="downwelling_longwave_flux_in_air_assuming_clear_sky" title="Downwelling Clear-Sky Longwave Radiation" uid="e79eb59d74038643b2201bb0556e720a" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Downwelling clear-sky longwave radiation calculated using carbon dioxide concentrations increased fourfold (includes the fluxes at the surface and TOA)" id="rldcs4co2" label="rldcs4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="downwelling_longwave_flux_in_air_assuming_clear_sky" title="Downwelling Clear-Sky Longwave Radiation 4XCO2 Atmosphere" uid="bc0982cd4cc45a7ad96524f549a468c4" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rlds" label="rlds" procComment="" procnote="" prov="CMIP5_3hr" provmip="CMIP5" sn="surface_downwelling_longwave_flux_in_air" title="Surface Downwelling Longwave Radiation" uid="70d7d6fc0e9c2f14624a0270bf2b99b9" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Surface downwelling clear-sky longwave radiation" id="rldscs" label="rldscs" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="surface_downwelling_longwave_flux_in_air_assuming_clear_sky" title="Surface Downwelling Clear-Sky Longwave Radiation" uid="7b2d1e1a3ece1169d8ac61af4b758ed2" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="This is defined as &quot;where ice_free_sea over sea&quot;" id="rlntds" label="rlntds" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="surface_net_downward_longwave_flux" title="Surface Net Downward Longwave Radiation" uid="b16fab4e82317586d4bc72d786a6a1db" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Net longwave surface radiation" id="rls" label="rls" procComment="" procnote="" prov="SPECS_Amon,SPECS_day" provmip="SPECS" sn="surface_net_downward_longwave_flux" title="Net Longwave Surface Radiation" uid="3e7348adedb540627808da06a211c81c" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upwelling longwave radiation (includes the fluxes at the surface and TOA)" id="rlu" label="rlu" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="upwelling_longwave_flux_in_air" title="Upwelling Longwave Radiation" uid="bcfeacf77d49ef51a6ee66a1ab0ebcb4" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upwelling longwave radiation calculated using carbon dioxide concentrations increased fourfold (includes the fluxes at the surface and TOA)" id="rlu4co2" label="rlu4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="upwelling_longwave_flux_in_air" title="Upwelling Longwave Radiation 4XCO2 Atmosphere" uid="01918a16b5ac9dbbe932d83357c06a21" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upwelling clear-sky longwave radiation  (includes the fluxes at the surface and TOA)" id="rlucs" label="rlucs" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="upwelling_longwave_flux_in_air_assuming_clear_sky" title="Upwelling Clear-Sky Longwave Radiation" uid="a8607fe15cb4f2997228523340233d91" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upwelling clear-sky longwave radiation calculated using carbon dioxide concentrations increased fourfold (includes the fluxes at the surface and TOA)" id="rlucs4co2" label="rlucs4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="upwelling_longwave_flux_in_air_assuming_clear_sky" title="Upwelling Clear-Sky Longwave Radiation 4XCO2 Atmosphere" uid="5951b6df2bd5a02e11213ea42620fa89" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rlus" label="rlus" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfSites,CMIP5_day,CORDEX_3h,CORDEX_day,CORDEX_mon,CORDEX_sem,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_day" provmip="CMIP5" sn="surface_upwelling_longwave_flux_in_air" title="Surface Upwelling Longwave Radiation" uid="89027ee0079acb709750ddeac1c08899" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rlusLut" label="rlusLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="surface_upwelling_longwave_flux_in_air" title="Surface Upwelling Longwave on Land Use Tile" uid="5912c3de-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="at the top of the atmosphere (to be compared with satellite measurements)" id="rlut" label="rlut" procComment="" procnote="" prov="CMIP5_day,CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem,PMIP3_day,SPECS_day" provmip="CMIP5" sn="toa_outgoing_longwave_flux" title="TOA Outgoing Longwave Radiatio" uid="63345d9732c72b97ca395f24ce2d6642" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Top-of-atmosphere outgoing longwave radiation calculated using carbon dioxide concentrations increased fourfold" id="rlut4co2" label="rlut4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="toa_outgoing_longwave_flux" title="TOA Outgoing Longwave Radiation 4XCO2 Atmosphere" uid="0888eef64215cf18affe93ca142c95ad" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rlutcs" label="rlutcs" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="toa_outgoing_longwave_flux_assuming_clear_sky" title="TOA Outgoing Clear-sky Longwave Radiation" uid="921b8b8f6620826567d9324314c70410" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Top-of-atmosphere outgoing clear-sky longwave radiation calculated using carbon dioxide concentrations increased fourfold" id="rlutcs4co2" label="rlutcs4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="toa_outgoing_longwave_flux_assuming_clear_sky" title="TOA Outgoing Clear-Sky Longwave Radiation 4XCO2 Atmosphere" uid="71a3667c9d9a8b9af56e22757461b7d0" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="unset" id="rMaint" label="rMaint" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="surface_upward_carbon_mass_flux_due_to_plant_respiration_for_biomass_maintenance" title="Carbon Mass Flux into Atmosphere due to Maintenance Autotrophic Respiration on Land" uid="640213ff812312e3ac8bf134f483ed0d" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="report the maximum soil depth reachable by plant roots (if defined in model), i.e., the maximum soil depth from which they can extract moisture; report as *missing* where the land fraction is 0." id="rootd" label="rootd" procComment="" procnote="" prov="CMIP5_fx,CORDEX_fx,PMIP3_fx,SPECS_fx" provmip="CMIP5" sn="root_depth" title="Maximum Root Depth" uid="d76ba4c5868a0a9a02f433dc3c86d5d2" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Downwelling shortwave radiation (includes the fluxes at the surface and top-of-atmosphere)" id="rsd" label="rsd" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="downwelling_shortwave_flux_in_air" title="Downwelling Shortwave Radiation" uid="eb9ac643cd9c73cae960d6d2db7b901d" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Downwelling shortwave radiation calculated using carbon dioxide concentrations increased fourfold" id="rsd4co2" label="rsd4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="downwelling_shortwave_flux_in_air" title="Downwelling Shortwave Radiation 4XCO2 Atmosphere" uid="6248574ebce5bf9fde3841735c9108bc" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Downwelling clear-sky shortwave radiation (includes the fluxes at the surface and top-of-atmosphere)" id="rsdcs" label="rsdcs" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="downwelling_shortwave_flux_in_air_assuming_clear_sky" title="Downwelling Clear-Sky Shortwave Radiation" uid="38806cec3ba894d7745fada80c9f6fe6" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Downwelling clear-sky shortwave radiation calculated using carbon dioxide concentrations increased fourfold" id="rsdcs4co2" label="rsdcs4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="downwelling_shortwave_flux_in_air_assuming_clear_sky" title="Downwelling Clear-Sky Shortwave Radiation 4XCO2 Atmosphere" uid="b8acc50c52fa48b40a4512d06d2d6435" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rsdo" label="rsdo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="downwelling_shortwave_flux_in_sea_water" title="Downwelling Shortwave Radiation in Sea Water" uid="749bcc09df8dd3d042e7954b42970906" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rsdoabsorb" label="rsdoabsorb" procComment="" procnote="" prov="CMIP6 endorsement [FAFMIP]" provmip="FAFMIP" sn="net_rate_of_absorption_of_shortwave_energy_in_ocean_layer" title="Net Rate of Absorption of Shortwave Energy in Ocean Layer" uid="b2f82090-fbed-11e5-8f03-5404a60d96b5" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="surface solar irradiance for UV calculations" id="rsds" label="rsds" procComment="" procnote="" prov="CMIP5_3hr" provmip="CMIP5" sn="surface_downwelling_shortwave_flux_in_air" title="Surface Downwelling Shortwave Radiation" uid="6e7b9f984d3bba15daccaaa18039a85d" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated in the absence of aerosols and clouds." id="rsdscsaf" label="rsdscsaf" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="surface_downwelling_shortwave_flux_in_air_assuming_clean_clear_sky" title="Surface Downwelling Clear-Sky, Aerosol-Free Shortwave Radiation" uid="590daf66-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="surface solar irradiance clear sky for UV calculations" id="rsdscs" label="rsdscs" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="surface_downwelling_shortwave_flux_in_air_assuming_clear_sky" title="Surface Downwelling Clear-Sky Shortwave Radiation" uid="d0a35d5c99a0aa93ad4069cfe83bf748" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="unset" id="rsdscsdiff" label="rsdscsdiff" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="surface_diffuse_downwelling_shortwave_flux_in_air_assuming_clear_sky" title="Surface Diffuse Downwelling Clear Sky Shortwave Radiation" uid="6ca9dd8a089b15fb96841e9fe56411cf" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="unset" id="rsdsdiff" label="rsdsdiff" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="surface_diffuse_downwelling_shortwave_flux_in_air" title="Surface Diffuse Downwelling Shortwave Radiation" uid="f27656eeae247192e82aa1032c911399" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Shortwave radiation incident at the top of the atmosphere" id="rsdt" label="rsdt" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfSites,CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem,PMIP3_Aclim,PMIP3_Amon,SPECS_Amon,SPECS_day" provmip="CMIP5" sn="toa_incoming_shortwave_flux" title="TOA Incident Shortwave Radiation" uid="a21e250a10f96b1c1ad6d742206a157e" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="This is the flux into the surface of liquid sea water only. This excludes shortwave flux absorbed by sea ice, but includes any light that passes through the ice and is absorbed by the ocean." id="rsntds" label="rsntds" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="net_downward_shortwave_flux_at_sea_water_surface" title="Net Downward Shortwave Radiation at Sea Water Surface" uid="1ace52320dc433dd648bb3dfbfc79935" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Net downward shortwave radiation at the surface" id="rss" label="rss" procComment="" procnote="" prov="SPECS_Amon" provmip="SPECS" sn="surface_net_downward_shortwave_flux" title="Net Shortwave Surface Radiation" uid="cdd8f95be110061697bc323f6bcaba2d" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upwelling shortwave radiation  (includes also the fluxes at the surface and top of atmosphere)" id="rsu" label="rsu" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="upwelling_shortwave_flux_in_air" title="Upwelling Shortwave Radiation" uid="c323f38340e4846931ad4891232d839d" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upwelling Shortwave Radiation calculated using carbon dioxide concentrations increased fourfold" id="rsu4co2" label="rsu4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="upwelling_shortwave_flux_in_air" title="Upwelling Shortwave Radiation 4XCO2 Atmosphere" uid="8e5acd3e73d41006a677b5e77fe383f7" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upwelling clear-sky shortwave radiation  (includes the fluxes at the surface and TOA)" id="rsucs" label="rsucs" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="upwelling_shortwave_flux_in_air_assuming_clear_sky" title="Upwelling Clear-Sky Shortwave Radiation" uid="eb72b66b6365daed79aefeda9d3d30b5" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upwelling clear-sky shortwave radiation calculated using carbon dioxide concentrations increased fourfold" id="rsucs4co2" label="rsucs4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="upwelling_shortwave_flux_in_air_assuming_clear_sky" title="Upwelling Clear-Sky Shortwave Radiation 4XCO2 Atmosphere" uid="bef5e52ab3ef55640ab0133c34c9dec2" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rsus" label="rsus" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfSites,CMIP5_day,CORDEX_3h,CORDEX_day,CORDEX_mon,CORDEX_sem,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_day" provmip="CMIP5" sn="surface_upwelling_shortwave_flux_in_air" title="Surface Upwelling Shortwave Radiation" uid="70bf79db957daa3b82413da949233ac7" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Surface upwelling clean clear-sky shortwave radiation" id="rsuscsaf" label="rsuscsaf" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="surface_upwelling_shortwave_flux_in_air_assuming_clean_clear_sky" title="Surface Upwelling Clean Clear-Sky Shortwave Radiation" uid="90df05fe3dcd9fe0c9b48aaa74b5e9e" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Surface upwelling clear-sky shortwave radiation" id="rsuscs" label="rsuscs" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="surface_upwelling_shortwave_flux_in_air_assuming_clear_sky" title="Surface Upwelling Clear-Sky Shortwave Radiation" uid="90df05fe3dcd9fe0c9b48aaa74b5e9e2" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rsusLut" label="rsusLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="surface_upwelling_shortwave_flux_in_air" title="Surface Upwelling Shortwave  on Land Use Tile" uid="5912e6d4-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="at the top of the atmosphere" id="rsut" label="rsut" procComment="" procnote="" prov="CCMI1_monthly,CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon,SPECS_Amon" provmip="CMIP5" sn="toa_outgoing_shortwave_flux" title="Top-of-Atmosphere Outgoing Shortwave Radiation" uid="b907fef85d4c9571a9457ee1b259bb8f" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="TOA Outgoing Shortwave Radiation calculated using carbon dioxide concentrations increased fourfold" id="rsut4co2" label="rsut4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="toa_outgoing_shortwave_flux" title="TOA Outgoing Shortwave Radiation in 4XCO2 Atmosphere" uid="58bbe37eb1035d22ab051fcfa10c67d9" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated in the absence of clouds." id="rsutcs" label="rsutcs" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="toa_outgoing_shortwave_flux_assuming_clear_sky" title="TOA Outgoing Clear-Sky Shortwave Radiation" uid="12e0369ff0ba1a6f1a84e0d9565d4b07" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="TOA Outgoing Clear-Sky Shortwave Radiation calculated using carbon dioxide concentrations increased fourfold" id="rsutcs4co2" label="rsutcs4co2" procComment="" procnote="4co2" prov="CMIP5_cfMon" provmip="CMIP5" sn="toa_outgoing_shortwave_flux_assuming_clear_sky" title="TOA Outgoing Clear-Sky Shortwave Radiation 4XCO2 Atmosphere" uid="827d0f8093c7858a784e5fda140a6e12" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Net Downward Radiative Flux at Top of Model : I.e., at the top of that portion of the atmosphere where dynamics are explicitly treated by the model. This is reported only if it differs from the net downward radiative flux at the top of the atmosphere." id="rtmt" label="rtmt" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="net_downward_radiative_flux_at_top_of_atmosphere_model" title="Net Downward Radiative Flux at Top of Model" uid="26328c46dfcc65d454b6fd4c52ccb48f" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rv850" label="rv850" procComment="" procnote="" prov="CMIP6 endorsement [DCPP]" provmip="DCPP" sn="atmosphere_relative_vorticity" title="Relative Vorticity at 850 hPa" uid="590ece46-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="" id="rzwc" label="rzwc" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="water_content_of_root_zone" title="Root zone soil moisture" uid="5914567c-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="The snow and ice sublimation flux is the loss of snow and ice mass per unit area from the surface resulting from their direct conversion to water vapor that enters the atmosphere." id="sbl" label="sbl" procComment="" procnote="" prov="CMIP5_Amon" provmip="CMIP5" sn="surface_snow_and_ice_sublimation_flux" title="Surface Snow and Ice Sublimation Flux" uid="3a8e1636a31c82fbdd9a1ae45ab3be7d" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Fraction of time that shallow convection occurs in the grid cell." id="sci" label="sci" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,PMIP3_Aclim,PMIP3_Amon" provmip="CMIP5" sn="shallow_convection_time_fraction" title="Fraction of Time Shallow Convection Occurs" uid="8de0f30b91b15720398fc10fd712a182" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Droplets are liquid only.  Report concentration &quot;as seen from space&quot; over stratiform liquid cloudy portion of grid cell.  This is the value from uppermost model layer with liquid cloud or, if available, it is better to sum over all liquid cloud tops, no matter where they occur, as long as they are seen from the top of the atmosphere. Weight by total liquid cloud top fraction of  (as seen from TOA) each time sample when computing monthly mean." id="scldncl" label="scldncl" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="number_concentration_of_stratiform_cloud_liquid_water_particles_in_air_at_liquid_water_cloud_top" title="Cloud Droplet Number Concentration of Stratiform Cloud Tops" uid="5917af7a-9e49-11e5-803c-0d0b866b59f3" unid="fd71d130-3468-11e6-ba71-5404a60d96b5" units="m-3"/>
<item description="mass concentration of dust dry aerosol in air in model lowest layer" id="sconcdust" label="sconcdust" procComment="" procnote="nsrf" prov="CMIP5_aero" provmip="CMIP5" sn="mass_concentration_of_dust_dry_aerosol_in_air" title="Surface Concentration of Dust" uid="1ca290c839426f31f70a0d2862e1c611" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="mass concentration of sulfate dry aerosol in air in model lowest layer." id="sconcso4" label="sconcso4" procComment="" procnote="nsrf" prov="CMIP5_aero" provmip="CMIP5" sn="mass_concentration_of_sulfate_dry_aerosol_in_air" title="Surface Concentration of SO4" uid="96435c8c0c0a8a7423d6abb6c027da69" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="mass concentration of seasalt dry aerosol in air in model lowest layer" id="sconcss" label="sconcss" procComment="" procnote="nsrf" prov="CMIP5_aero" provmip="CMIP5" sn="mass_concentration_of_seasalt_dry_aerosol_in_air" title="Surface Concentration of Seasalt" uid="31a3caf70db7a8ed71e8d0a226365105" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="Balkanski - LSCE" id="sedustCI" label="sedustCI" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_sedimentation" title="Sedimentation Flux of dust mode coarse insoluble" uid="5917c046-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="sf6" label="sf6" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="mole_concentration_of_sulfur_hexafluoride_in_sea_water" title="Moles Per Unit Mass of SF6 in sea water" uid="82b5e315b8be441e26a9c45e95fe7573" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="near-surface (usually, 10 meters) wind speed." id="sfcWind" label="sfcWind" procComment="" procnote="nsrf" prov="CORDEX_3h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="wind_speed" title="Near-Surface Wind Speed" uid="4b97609a32d53dff5b8e73729e4f258b" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Daily maximum near-surface (usually, 10 meters) wind speed." id="sfcWindmax" label="sfcWindmax" procComment="" procnote="nsrf" prov="CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="wind_speed" title="Daily Maximum Near-Surface Wind Speed" uid="1c15d05ab96de917359e54b16c4fbf14" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="This field is physical, and it arises since sea ice has a nonzero salt content, so it exchanges salt with the liquid ocean upon melting and freezing." id="sfdsi" label="sfdsi" procComment="" procnote="si" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="downward_sea_ice_basal_salt_flux" title="Downward Sea Ice Basal Salt Flux" uid="8d0958ad5a4eabc97fc1896e847b00fe" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="sfno2" label="sfno2" procComment="" procnote="nsrf" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mole_fraction_of_nitrogen_dioxide_in_air" title="NO2 volume mixing ratio in lowest model layer" uid="fe6ca864-a41f-11e5-9025-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="sfo3max" label="sfo3max" procComment="" procnote="nsrf" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mole_fraction_of_ozone_in_air" title="Daily maximum O3 volume mixing ratio in lowest model layer" uid="0656a67a-b896-11e6-a189-5404a60d96b5" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="sfo3" label="sfo3" procComment="" procnote="nsrf" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mole_fraction_of_ozone_in_air" title="O3 volume mixing ratio in lowest model layer" uid="fe6cecca-a41f-11e5-9025-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="sfpm25" label="sfpm25" procComment="" procnote="nsrf" prov="AerChemMIP endorsement (1)" provmip="AerChemMIP" sn="mass_fraction_of_pm2p5_ambient_aerosol_particles_in_air" title="PM2.5 mass mixing ratio in lowest model layer" uid="fe6cc8a8-a41f-11e5-9025-ac72891c3257" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="This field is physical, and it arises when rivers carry a nonzero salt content.  Often this is zero, with rivers assumed to be fresh." id="sfriver" label="sfriver" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="salt_flux_into_sea_water_from_rivers" title="Salt Flux into Sea Water from Rivers" uid="ced45b8b1f2797c54425755202dce533" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Fraction of grid cell covered by floating ice shelf, the component of the ice sheet that is flowing over seawater" id="sftflf" label="sftflf" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="floating_ice_shelf_area_fraction" title="Floating Ice Shelf  Area Fraction" uid="590dbe0c-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Fraction of grid cell covered by land ice (ice sheet, ice shelf, ice cap, glacier)" id="sftgif" label="sftgif" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="land_ice_area_fraction" title="Land Ice Area Fraction" uid="a1d2e309c6f25017442ad6c79c4f9eca" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Fraction of grid cell covered by grounded ice sheet" id="sftgrf" label="sftgrf" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="grounded_ice_sheet_area_fraction" title="Grounded Ice Sheet  Area Fraction" uid="590e5de4-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="This is the area fraction at the ocean surface." id="sftof" label="sftof" procComment="" procnote="" prov="OMIP.fx" provmip="OMIP" sn="sea_area_fraction" title="Sea Area Fraction" uid="20e7d22ad09b324af00f41f6060701a7" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage of entire grid cell  that is covered by shrub." id="shrubFrac" label="shrubFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage Cover by Shrub" uid="bdb1045bec7f58e9e6221cd39bb34c2f" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="si" label="si" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_dissolved_inorganic_silicon_in_sea_water" title="Total Dissolved Inorganic Silicon Concentration" uid="56a5fa6dd6b7c4aa711f362d5d5414f6" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Age of sea ice" id="siage" label="siage" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="age_of_sea_ice" title="Age of sea ice" uid="5917369e-9e49-11e5-803c-0d0b866b59f3" unid="fd7279dc-3468-11e6-ba71-5404a60d96b5" units="s"/>
<item description="Mean surface albedo of entire ice-covered part of grid cell" id="sialb" label="sialb" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_albedo" title="Sea-ice or snow albedo" uid="59174fb2-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="total area of sea ice in the Northern hemisphere" id="siarean" label="siarean" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_area" title="Sea ice area North" uid="59139a70-9e49-11e5-803c-0d0b866b59f3" unid="fd70312c-3468-11e6-ba71-5404a60d96b5" units="1e6 km2"/>
<item description="total area of sea ice in the Southern hemisphere" id="siareas" label="siareas" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_area" title="Sea ice area South" uid="59139548-9e49-11e5-803c-0d0b866b59f3" unid="fd70312c-3468-11e6-ba71-5404a60d96b5" units="1e6 km2"/>
<item description="Computed strength of the ice pack, defined as the energy (J m-2) dissipated per unit area removed from the ice pack under compression, and assumed proportional to the change in potential energy caused by ridging. For Hibler-type models, this is P (= P*hexp(-C(1-A)))" id="sicompstren" label="sicompstren" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="compressive_strength_of_sea_ice" title="Compressive sea ice strength" uid="590e9390-9e49-11e5-803c-0d0b866b59f3" unid="fd708398-3468-11e6-ba71-5404a60d96b5" units="N m-1"/>
<item description="Area fraction of grid cell covered by sea ice" id="siconc" label="siconc" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_area_fraction" title="Sea-ice area fraction" uid="5914ab90-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Total change in sea-ice area fraction through dynamics-related processes (advection, divergence...)" id="sidconcdyn" label="sidconcdyn" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_area_fraction_due_to_dynamics" title="sea-ice area fraction change from dynamics" uid="590ee584-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Total change in sea-ice area fraction through thermodynamic processes" id="sidconcth" label="sidconcth" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_area_fraction_due_to_thermodynamics" title="sea-ice area fraction change from thermodynamics" uid="590dc60e-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Divergence of sea-ice velocity field (first shear strain invariant)" id="sidivvel" label="sidivvel" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="divergence_of_sea_ice_velocity" title="Divergence of the sea-ice velocity field" uid="590d7924-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Total change in sea-ice mass through dynamics-related processes (advection,...) divided by grid-cell area" id="sidmassdyn" label="sidmassdyn" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_amount_due_to_dynamics" title="sea-ice mass change from dynamics" uid="591357b8-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The rate of change of sea-ice mass change through evaporation and sublimation divided by grid-cell area" id="sidmassevapsubl" label="sidmassevapsubl" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="water_evaporation_flux" title="sea-ice mass change through evaporation and sublimation" uid="59146180-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The rate of change of sea ice mass due to vertical growth of existing sea ice at its base divided by grid-cell area." id="sidmassgrowthbot" label="sidmassgrowthbot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_amount_due_to_congelation_ice_accumulation" title="sea-ice mass change through basal growth" uid="590db4ac-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The rate of change of sea ice mass due to sea ice formation in supercooled water (often through frazil formation) divided by grid-cell area. Together, sidmassgrowthwat and sidmassgrowthbot should give total ice growth" id="sidmassgrowthwat" label="sidmassgrowthwat" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_amount_due_to_freezing_in_open_water" title="sea-ice mass change through growth in supercooled open water (aka frazil)" uid="59149c7c-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The rate of change of sea ice mass through lateral melting divided by grid-cell area (report 0 if not explicitly calculated thermodynamically)" id="sidmasslat" label="sidmasslat" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_amount_due_to_lateral_melting" title="Lateral sea ice melt rate" uid="590ea5c4-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The rate of change of sea ice mass through melting at the ice bottom divided by grid-cell area" id="sidmassmeltbot" label="sidmassmeltbot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_amount_due_to_basal_melting" title="sea-ice mass change through bottom melting" uid="5917ea6c-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The rate of change of sea ice mass through melting at the ice surface divided by grid-cell area" id="sidmassmelttop" label="sidmassmelttop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_amount_due_to_surface_melting" title="sea-ice mass change through surface melting" uid="59179aee-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The rate of change of sea ice mass due to transformation of snow to sea ice divided by grid-cell area" id="sidmasssi" label="sidmasssi" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_amount_due_to_snow_conversion" title="sea-ice mass change through snow-to-ice conversion" uid="590d3518-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total change in sea-ice mass from thermodynamic processes divided by grid-cell area" id="sidmassth" label="sidmassth" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_sea_ice_amount_due_to_thermodynamics" title="sea-ice mass change from thermodynamics" uid="590d95d0-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Includes transport of both sea ice and snow by advection" id="sidmasstranx" label="sidmasstranx" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_x_transport" title="X-component of sea-ice mass transport" uid="59172e42-9e49-11e5-803c-0d0b866b59f3" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Includes transport of both sea ice and snow by advection" id="sidmasstrany" label="sidmasstrany" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_y_transport" title="Y-component of sea-ice mass transport" uid="59172bcc-9e49-11e5-803c-0d0b866b59f3" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Oceanic drag coefficient that is used to calculate the oceanic momentum drag on sea ice" id="sidragbot" label="sidragbot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_drag_coefficient_for_momentum_in_water" title="Ocean drag coefficient" uid="590e9070-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Atmospheric drag coefficient that is used to calculate the atmospheric momentum drag on sea ice" id="sidragtop" label="sidragtop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_drag_coefficient_for_momentum_in_air" title="Atmospheric drag coefficient" uid="5914e0ba-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Total area of all Northern-Hemisphere grid cells that are covered by at least 15 % areal fraction of sea ice" id="siextentn" label="siextentn" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_extent" title="Sea ice extent North" uid="5917b45c-9e49-11e5-803c-0d0b866b59f3" unid="fd70312c-3468-11e6-ba71-5404a60d96b5" units="1e6 km2"/>
<item description="Total area of all Southern-Hemisphere grid cells that are covered by at least 15 % areal fraction of sea ice" id="siextents" label="siextents" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_extent" title="Sea ice extent South" uid="590e9ed0-9e49-11e5-803c-0d0b866b59f3" unid="fd70312c-3468-11e6-ba71-5404a60d96b5" units="1e6 km2"/>
<item description="Mean height of sea-ice surface (=snow-ice interface when snow covered) above sea level" id="sifb" label="sifb" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_freeboard" title="Sea-ice freeboard" uid="590dac64-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="the net heat conduction flux at the ice base" id="siflcondbot" label="siflcondbot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="conductive_heat_flux_at_sea_ice_bottom" title="Net conductive heat fluxes in ice at the bottom" uid="5917ba9c-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="the net heat conduction flux at the ice surface" id="siflcondtop" label="siflcondtop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="conductive_heat_flux_at_sea_ice_surface" title="Net conductive heat flux in ice at the surface" uid="590ecbda-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Total flux of fresh water from water into sea ice divided by grid-cell area; This flux is negative during ice growth (liquid water mass decreases, hence upward flux of freshwater), positive during ice melt (liquid water mass increases, hence downward flux of freshwater)" id="siflfwbot" label="siflfwbot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="freshwater_flux_from_ice" title="Freshwater flux from sea ice" uid="590dce42-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total flux of fresh water from sea-ice surface into underlying ocean. This combines both surface melt water that drains directly into the ocean and the drainage of surface melt pond. By definition, this flux is always positive." id="siflfwdrain" label="siflfwdrain" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="freshwater_flux_from_ice_surface" title="Freshwater flux from sea-ice surface" uid="0353bea4-dca0-11e5-81c9-5404a60d96b5" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="the net latent heat flux over sea ice" id="sifllatstop" label="sifllatstop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_upward_latent_heat_flux" title="Net latent heat flux over sea ice" uid="59131140-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="the downwelling longwave flux over sea ice (always positive)" id="sifllwdtop" label="sifllwdtop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_downwelling_longwave_flux_in_air" title="Downwelling longwave flux over sea ice" uid="590e9656-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="the upward longwave flux over sea ice (always negative)" id="sifllwutop" label="sifllwutop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_upwelling_longwave_flux_in_air" title="Upward longwave flux over sea ice" uid="591733d8-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Total flux of salt from water into sea ice divided by grid-cell area; salt flux is upward (negative) during ice growth when salt is embedded into the ice and downward (positive) during melt when salt from sea ice is again released to the ocean" id="siflsaltbot" label="siflsaltbot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="salt_flux_from_ice" title="Salt flux from sea ice" uid="590eb730-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="the net sensible heat flux over sea ice" id="siflsenstop" label="siflsenstop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_upward_sensible_heat_flux" title="Net sensible heat flux over sea ice" uid="590dbb78-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="the net sensible heat flux under sea ice from the ocean" id="siflsensupbot" label="siflsensupbot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="ice_ocean_heat_flux" title="Net sensible heat flux under sea ice" uid="590ef524-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="the downwelling shortwave flux underneath sea ice (always positive)" id="siflswdbot" label="siflswdbot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="bottom_downwelling_shortwave_flux_into_ocean" title="Downwelling shortwave flux under sea ice" uid="590f5672-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="the downwelling shortwave flux over sea ice (always positive by sign convention)" id="siflswdtop" label="siflswdtop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_downwelling_shortwave_flux_in_air" title="Downwelling shortwave flux over sea ice" uid="590f2f8a-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="the upward shortwave flux over sea ice (always negative)" id="siflswutop" label="siflswutop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_upwelling_shortwave_flux_in_air" title="Upward shortwave flux over sea ice" uid="5917e51c-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="X-component of force on sea ice caused by coriolis force" id="siforcecoriolx" label="siforcecoriolx" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="coriolis_force_on_sea_ice_x" title="Coriolis force term in force balance (x-component)" uid="590e3ee0-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="Y-component of force on sea ice caused by coriolis force" id="siforcecorioly" label="siforcecorioly" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="coriolis_force_on_sea_ice_y" title="Coriolis force term in force balance (y-component)" uid="590d4fc6-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="X-component of force on sea ice caused by internal stress (divergence of sigma)" id="siforceintstrx" label="siforceintstrx" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="internal_stress_in_sea_ice_x" title="Internal stress term in force balance (x-component)" uid="590df8a4-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="Y-component of force on sea ice caused by internal stress (divergence of sigma)" id="siforceintstry" label="siforceintstry" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="internal_stress_in_sea_ice_y" title="Internal stress term in force balance (y-component)" uid="590df5e8-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="X-component of force on sea ice caused by sea-surface tilt" id="siforcetiltx" label="siforcetiltx" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_surface_tilt_force_on_sea_ice_x" title="Sea-surface tilt term in force balance (x-component)" uid="590ed33c-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="Y-component of force on sea ice caused by sea-surface tilt" id="siforcetilty" label="siforcetilty" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_surface_tilt_force_on_sea_ice_y" title="Sea-surface tilt term in force balance (y-component)" uid="590d7654-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="Heat content of all ice in grid cell divided by total grid-cell area. Water at 0 Celsius is assumed to have a heat content of 0 J.  Does not include heat content of snow, but does include heat content of brine. Heat content is always negative, since both the sensible and the latent heat content of ice are less than that of water" id="sihc" label="sihc" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="integral_of_sea_ice_temperature_wrt_depth_expressed_as_heat_content" title="Sea-ice heat content per unit area" uid="590f9d30-9e49-11e5-803c-0d0b866b59f3" unid="fd704e14-3468-11e6-ba71-5404a60d96b5" units="J m-2"/>
<item description="Area fraction of grid cell covered by each ice-thickness category (vector with one entry for each thickness category starting from the thinnest category, netcdf file should use thickness bounds of the categories as third coordinate axis)" id="siitdconc" label="siitdconc" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_area_fraction_over_categories" title="Sea-ice area fractions in thickness categories" uid="590d98b4-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Area fraction of grid cell covered by snow in each ice-thickness category (vector with one entry for each thickness category starting from the thinnest category, netcdf file should use thickness bounds of the categories as third coordinate axis)" id="siitdsnconc" label="siitdsnconc" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="snow_area_fraction_over_categories" title="Snow area fractions in thickness categories" uid="590f0442-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Actual thickness of snow in each  category (NOT volume divided by grid area),  (vector with one entry for each thickness category starting from the thinnest category, netcdf file should use thickness bounds of categories as third coordinate axis)" id="siitdsnthick" label="siitdsnthick" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="snow_thickness_over_categories" title="Snow thickness in thickness categories" uid="590dfdc2-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Actual (floe) thickness of sea ice in each  category (NOT volume divided by grid area),  (vector with one entry for each thickness category starting from the thinnest category, netcdf file should use thickness bounds of categories as third coordinate axis)" id="siitdthick" label="siitdthick" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_thickness_over_categories" title="Sea-ice thickness in thickness categories" uid="59133288-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Total mass of sea ice divided by grid-cell area" id="simass" label="simass" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_amount" title="Sea-ice mass per area" uid="5917184e-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Fraction of sea ice, by area, which is covered by melt ponds, giving equal weight to every square metre of sea ice ." id="simpconc" label="simpconc" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="area_fraction" title="Percentage Cover of Sea-Ice by Meltpond" uid="590eb1ea-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Meltpond mass per area of sea ice." id="simpmass" label="simpmass" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_liquid_water_amount" title="Meltpond Mass per Unit Area" uid="aa9073c2-1b36-11e6-a696-35cd2d8034df" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Volume of refrozen ice on melt ponds divided by meltpond covered area" id="simprefrozen" label="simprefrozen" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="melt_pond_refrozen_ice" title="Thickness of Refrozen Ice on Melt Pond" uid="591523cc-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="mass of liquid precipitation falling onto sea ice divided by grid-cell area" id="sipr" label="sipr" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="rainfall_flux" title="Rainfall rate over sea ice" uid="59138238-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Fraction of sea ice, by area, which is covered by sea ice ridges, giving equal weight to every square metre of sea ice ." id="sirdgconc" label="sirdgconc" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="fraction_of_ridged_sea_ice" title="Percentage Cover of Sea-Ice by Ridging" uid="590dfb2e-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="Sea Ice Ridge Height (representing mean height over the ridged area)" id="sirdgthick" label="sirdgthick" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="thickness_of_ridged_sea_ice" title="Ridged ice thickness" uid="5914eb78-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Mean sea-ice salinity of all sea ice in grid cell" id="sisali" label="sisali" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_salinity" title="Sea ice salinity" uid="5913e674-9e49-11e5-803c-0d0b866b59f3" unid="fd6fda9c-3468-11e6-ba71-5404a60d96b5" units="0.001"/>
<item description="Total mass of all salt in sea ice divided by grid-cell area" id="sisaltmass" label="sisaltmass" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_salt_mass" title="Mass of salt in sea ice per area" uid="590c7920-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Maximum shear of sea-ice velocity field (second shear strain invariant)" id="sishevel" label="sishevel" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="maximum_shear_of_sea_ice_velocity" title="Maximum shear of sea-ice velocity field" uid="590d70b4-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Fraction of sea ice, by area, which is covered by snow, giving equal weight to every square metre of sea ice . Exclude snow that lies on land or land ice." id="sisnconc" label="sisnconc" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_snow_area_fraction" title="Snow area fraction" uid="590d38b0-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Heat-content of all snow in grid cell divided by total grid-cell area. Snow-water equivalent at 0 Celsius is assumed to have a heat content of 0 J.  Does not include heat content of sea ice." id="sisnhc" label="sisnhc" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="thermal_energy_content_of_surface_snow" title="Snow-heat content per unit area" uid="5912f890-9e49-11e5-803c-0d0b866b59f3" unid="fd704e14-3468-11e6-ba71-5404a60d96b5" units="J m-2"/>
<item description="Total mass of snow on sea ice divided by grid-cell area" id="sisnmass" label="sisnmass" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="liquid_water_content_of_surface_snow" title="Snow mass per area" uid="5914a6b8-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Actual thickness of snow (snow volume divided by snow-covered area)" id="sisnthick" label="sisnthick" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_snow_thickness" title="Snow thickness" uid="5913c266-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Speed of ice (i.e. mean absolute velocity) to account for back-and-forth movement of the ice" id="sispeed" label="sispeed" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_speed" title="Sea-ice speed" uid="590f4f2e-9e49-11e5-803c-0d0b866b59f3" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Maximum shear stress in sea ice (second stress invariant)" id="sistremax" label="sistremax" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="maximum_shear_stress" title="Maximum shear stress in sea ice" uid="590ea16e-9e49-11e5-803c-0d0b866b59f3" unid="fd708398-3468-11e6-ba71-5404a60d96b5" units="N m-1"/>
<item description="Average normal stress in sea ice (first stress invariant)" id="sistresave" label="sistresave" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="average_normal_stress" title="Average normal stress in sea ice" uid="590e4bd8-9e49-11e5-803c-0d0b866b59f3" unid="fd708398-3468-11e6-ba71-5404a60d96b5" units="N m-1"/>
<item description="X-component of atmospheric stress on sea ice" id="sistrxdtop" label="sistrxdtop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_downward_x_stress" title="X-component of atmospheric stress on sea ice" uid="5913f77c-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="X-component of ocean stress on sea ice" id="sistrxubot" label="sistrxubot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_base_upward_x_stress" title="X-component of ocean stress on sea ice" uid="590d2848-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="Y-component of atmospheric stress on sea ice" id="sistrydtop" label="sistrydtop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_downward_y_stress" title="Y-component of atmospheric stress on sea ice" uid="591774d8-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="Y-component of ocean stress on sea ice" id="sistryubot" label="sistryubot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="downward_y_stress_at_sea_ice_base" title="Y-component of ocean stress on sea ice" uid="59150da6-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="Report temperature at interface, NOT temperature within lowermost model layer" id="sitempbot" label="sitempbot" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_bottom_temperature" title="Temperature at ice-ocean interface" uid="5914d6d8-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Report surface temperature of ice where snow thickness is zero" id="sitempsnic" label="sitempsnic" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_surface_temperature" title="Temperature at snow-ice interface" uid="590e34fe-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Report surface temperature of snow where snow covers the sea ice." id="sitemptop" label="sitemptop" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_surface_temperature" title="Surface temperature of sea ice" uid="5914a456-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Actual (floe) thickness of sea ice (NOT volume divided by grid area as was done in CMIP5)" id="sithick" label="sithick" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_thickness" title="Sea-ice thickness" uid="591321f8-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Fraction of time steps of the averaging period during which sea ice is present (siconc &gt;0 ) in a grid cell" id="sitimefrac" label="sitimefrac" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_time_fraction" title="Fraction of time steps with sea ice" uid="590e8b2a-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="The x-velocity of ice on native model grid" id="siu" label="siu" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_x_velocity" title="X-component of sea ice velocity" uid="590e80c6-9e49-11e5-803c-0d0b866b59f3" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="The y-velocity of ice on native model grid" id="siv" label="siv" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_y_velocity" title="Y-component of sea ice velocity" uid="59141748-9e49-11e5-803c-0d0b866b59f3" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Total volume of sea ice divided by grid-cell area (this used to be called ice thickness in CMIP5)" id="sivol" label="sivol" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_thickness" title="Sea-ice volume per area" uid="591801d2-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="total volume of sea ice in the Northern hemisphere" id="sivoln" label="sivoln" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_volume" title="Sea ice volume North" uid="5913c9aa-9e49-11e5-803c-0d0b866b59f3" unid="fd70293e-3468-11e6-ba71-5404a60d96b5" units="1e3 km3"/>
<item description="total volume of sea ice in the Southern hemisphere" id="sivols" label="sivols" procComment="" procnote="si" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_volume" title="Sea ice volume South" uid="590ee2fa-9e49-11e5-803c-0d0b866b59f3" unid="fd70293e-3468-11e6-ba71-5404a60d96b5" units="1e3 km3"/>
<item description="" id="slbnosn" label="slbnosn" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="sublimation_amount_assuming_no_snow" title="Sublimation of the snow free area" uid="590f541a-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="function of latitude, basin" id="sltbasin" label="sltbasin" procComment="" procnote="" prov="CMIP6 endorsement [DCPP]" provmip="DCPP" sn="northward_ocean_salt_transport" title="Northward Ocean Salt Transport" uid="59171588-9e49-11e5-803c-0d0b866b59f3" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="unset" id="sltnorth" label="sltnorth" procComment="" procnote="" prov="SPECS_Omon" provmip="SPECS" sn="northward_ocean_salt_transport" title="Northward Ocean Salt Transport" uid="a7b96bf5e4810d8453afa1a5c8ab462b" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="unset" id="sltnortha" label="sltnortha" procComment="" procnote="" prov="SPECS_Omon" provmip="SPECS" sn="northward_ocean_salt_transport" title="Atlantic Northward Ocean Salt Transport" uid="16566aed8c1a15e598240020f11b8fd4" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="From all advective mass transport processes, resolved and parameterized." id="sltovgyre" label="sltovgyre" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="northward_ocean_salt_transport_due_to_gyre" title="Northward Ocean Salt Transport due to Gyre" uid="9e64d2aadc59070a13e29979b6c9541b" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="From all advective mass transport processes, resolved and parameterized." id="sltovovrt" label="sltovovrt" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="northward_ocean_salt_transport_due_to_overturning" title="Northward Ocean Salt Transport due to Overturning" uid="d0f7da4833bd90226f521ddbf0dbcb63" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="The net mass flux represents the difference between the updraft and downdraft components.  For models with a distinct shallow convection scheme, this is calculated as convective mass flux divided by the area of the whole grid cell (not just the area of the cloud)." id="smc" label="smc" procComment="" procnote="" prov="CMIP5_cfMon" provmip="CMIP5" sn="atmosphere_net_upward_shallow_convective_mass_flux" title="Shallow Convective Mass Flux" uid="706324a93b4c3976da22db8a6e9d78b0" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Fraction of each grid cell that is occupied by snow that rests on land portion of cell." id="snc" label="snc" procComment="" procnote="" prov="CMIP5_LImon" provmip="CMIP5" sn="surface_snow_area_fraction" title="Snow Area Fraction" uid="e53e97d7e904fe67aa54b721b3c6a290" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="where land over land, this is computed as the mean thickness of snow in the land portion of the grid cell (averaging over the entire land portion, including the snow-free fraction).  Reported as 0.0 where the land fraction is 0." id="snd" label="snd" procComment="" procnote="" prov="CMIP5_LImon" provmip="CMIP5" sn="surface_snow_thickness" title="Snow Depth" uid="19058c0a2aaaf3eaeca5093ea87c7e46" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="the rate of change of snow mass through advection with sea ice divided by grid-cell area" id="sndmassdyn" label="sndmassdyn" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_snow_mass_due_to_sea_ice_dynamics" title="Snow Mass Rate of Change through Avection by Sea-ice Dynamics" uid="59139246-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="the rate of change of snow mass through melt divided by grid-cell area" id="sndmassmelt" label="sndmassmelt" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_snow_melt_flux" title="Snow Mass Rate of Change through Melt" uid="590e1ef6-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="the rate of change of snow mass due to transformation of snow to sea ice divided by grid-cell area" id="sndmasssi" label="sndmasssi" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_surface_snow_amount_due_to_conversion_of_snow_to_sea_ice" title="Snow Mass Rate of Change through Snow-to-Ice Conversion" uid="5914c95e-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="mass of solid precipitation falling onto sea ice divided by grid-cell area" id="sndmasssnf" label="sndmasssnf" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="snowfall_flux" title="snow mass change through snow fall" uid="59142a3a-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="the rate of change of snow mass through sublimation and evaporation divided by grid-cell area" id="sndmasssubl" label="sndmasssubl" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="surface_snow_sublimation_flux" title="Snow Mass Rate of Change through Evaporation or Sublimation" uid="590de2ce-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="the rate of change of snow mass through wind drift of snow (from sea-ice into the sea) divided by grid-cell area" id="sndmasswindrif" label="sndmasswindrif" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="tendency_of_snow_mass_due_to_drifting_snow" title="Snow Mass Rate of Change through Wind Drift of Snow" uid="590d7370-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Mass flux of surface meltwater which refreezes within the snowpack. Computed as the total refreezing on the land ice portion of the grid cell divided by land ice area in the grid cell." id="snicefreez" label="snicefreez" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="surface_snow_and_ice_refreezing_flux" title="Surface snow and ice refreeze flux" uid="59150216-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Loss of snow and ice mass resulting from surface melting. Computed as the total surface melt on the land ice portion of the grid cell divided by land ice area in the grid cell." id="snicem" label="snicem" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="surface_snow_and_ice_melt_flux" title="Surface snow and ice melt flux" uid="5912a516-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The total surface snow melt rate on the land portion of the grid cell divided by the land area in the grid cell; report as zero for snow-free land regions and missing where there is no land." id="snm" label="snm" procComment="" procnote="" prov="CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="surface_snow_melt_flux" title="Surface Snow Melt" uid="5652800cc64fd945cc990547aee633a1" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="snmsl" label="snmsl" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_snow_melt_flux_into_soil_layer" title="Water flowing out of snowpack" uid="5914be8c-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Snow mixing ratio" id="snowmxrat" label="snowmxrat" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="mass_fraction_of_snow_in_air" title="snow_mixing_ratio" uid="5917d1d0-9e49-11e5-803c-0d0b866b59f3" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="snrefr" label="snrefr" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_snow_and_ice_refreezing_flux" title="Re-freezing of water in the snow" uid="59171af6-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The mass of surface snow on the land portion of the grid cell divided by the land area in the grid cell; reported as missing where the land fraction is 0; excludes snow on vegetation canopy or on sea ice." id="snw" label="snw" procComment="" procnote="" prov="CMIP5_day" provmip="CMIP5" sn="surface_snow_amount" title="Surface Snow Amount" uid="0e1704f8fbacbe223946d84392b8064e" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Total water mass of the snowpack (liquid or frozen), averaged over a grid cell and interecepted by the canopy." id="snwc" label="snwc" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="canopy_snow_amount" title="SWE intercepted by the vegetation" uid="590e536c-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="so" label="so" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_salinity" title="Sea Water Salinity" uid="31eb8d2a1ed4d82ef8bebe4227ec90b9" unid="fd6fda9c-3468-11e6-ba71-5404a60d96b5" units="0.001"/>
<item description="" id="so2" label="so2" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="mole_fraction_of_sulfur_dioxide_in_air" title="SO2 volume mixing ratio" uid="8b3a5d37fefe0337625c64455cea4e80" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Model prognostic salinity at bottom-most model grid cell" id="sob" label="sob" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="sea_water_salinity_at_sea_floor" title="sea water salinity at sea floor" uid="0086e9daf8d4fb6cb305e03119d2ac2d" unid="fd6fda9c-3468-11e6-ba71-5404a60d96b5" units="0.001"/>
<item description="" id="soga" label="soga" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_salinity" title="Global Mean Sea Water Salinity" uid="e6c345fa8ddd98d9834116333c2ee901" unid="fd6fda9c-3468-11e6-ba71-5404a60d96b5" units="0.001"/>
<item description="Full column sum of density*cell thickness*prognostic salinity. If the model is Boussinesq, then use Boussinesq reference density for the density factor." id="somint" label="somint" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="integral_wrt_depth_of_product_of_sea_water_density_and_prognostic_salinity" title="integral wrt depth of product of sea water density and prognostic salinity" uid="180d4bd9a18a9d5ecf3d45690b8e9c75" unid="fd7020d8-3468-11e6-ba71-5404a60d96b5" units="1e-3 kg m-2"/>
<item description="the entire land portion of the grid cell is considered, with snow soot content set to 0.0 in regions free of snow." id="sootsn" label="sootsn" procComment="" procnote="" prov="CMIP5_LImon,PMIP3_LIclim,PMIP3_LImon" provmip="CMIP5" sn="soot_content_of_surface_snow" title="Snow Soot Content" uid="d421b6923b396998106a8c1c66ea07f1" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="sos" label="sos" procComment="" procnote="" prov="OMIP.day" provmip="OMIP" sn="sea_surface_salinity" title="Sea Surface Salinity" uid="74a9891bcab2667dbcb66574c6370c86" unid="fd6fda9c-3468-11e6-ba71-5404a60d96b5" units="0.001"/>
<item description="" id="spco2" label="spco2" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="surface_partial_pressure_of_carbon_dioxide_in_sea_water" title="Surface Aqueous Partial Pressure of CO2" uid="88d79ec028b6e797cd2db6f00f9b6910" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Magnitude of basal drag at land ice base" id="strbasemag" label="strbasemag" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="magnitude_of_basal_drag_at_land_ice_base" title="Land Ice Basal Drag" uid="4146743c-4f40-11e6-a814-ac72891c3257" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Total liquid water storage, other than soil, snow or interception storage (i.e. lakes, river channel or depression storage)." id="sw" label="sw" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_water_amount_assuming_no_snow" title="Surface Water Storage" uid="590eaf60-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="sweLut" label="sweLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="" title="snow water equivalent on land use tile" uid="590e379c-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="shortwave heating rate due to volcanic aerosols to be diagnosed through double radiation call, zonal average values required" id="swsffluxaero" label="swsffluxaero" procComment="" procnote="zm drad" prov="CMIP6 endorsement [VolMIP]" provmip="VolMIP" sn="shortwave__flux_due_to_volcanic_aerosols_at__the_surface" title="Shortwave heating rate due to volcanic aerosols" uid="5914f852-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Balkanski - LSCE" id="swsrfasdust" label="swsrfasdust" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="tendency_of_all_sky_surface_shortwave_flux_due_to_dust_ambient_aerosol_particles" title="All-sky Surface Shortwave radiative flux due to Dust" uid="590f465a-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Balkanski - LSCE" id="swsrfcsdust" label="swsrfcsdust" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="tendency_of_clear_sky_surface_shortwave_flux_due_to_dust_ambient_aerosol_particles" title="Clear-sky Surface Shortwave radiative flux due to Dust" uid="5917cf46-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="proposed name: toa_instantaneous_shortwave_forcing_due_to_dust_ambient_aerosol" id="swtoaasdust" label="swtoaasdust" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="toa_instantaneous_shortwave_forcing" title="all sky sw-rf dust at toa" uid="4cabf9607859a83bcb3bc00fa8d0698c" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="proposed name: toa_instantaneous_shortwave_forcing_due_to_dust_ambient_aerosol_assuming_clear_sky" id="swtoacsdust" label="swtoacsdust" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="toa_instantaneous_shortwave_forcing" title="clear sky sw-rf dust at toa" uid="332db812bf06c7af2de1b9d1e0cf58c9" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="downwelling shortwave flux due to volcanic aerosols at TOA under clear sky to be diagnosed through double radiation call" id="swtoafluxaerocs" label="swtoafluxaerocs" procComment="" procnote="zm drad" prov="CMIP6 endorsement [VolMIP]" provmip="VolMIP" sn="shortwave_flux_due_to_volcanic_aerosols_at_TOA_under_clear_sky" title="Shortwave flux due to volcanic aerosols at TOA under clear sky" uid="5914e34e-9e49-11e5-803c-0d0b866b59f3" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Air temperature squared" id="t2" label="t2" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="square_of_air_temperature" title="square_of_air_temperature" uid="590d82de-9e49-11e5-803c-0d0b866b59f3" unid="fd707b78-3468-11e6-ba71-5404a60d96b5" units="K2"/>
<item description="unset" id="t20d" label="t20d" procComment="" procnote="" prov="SPECS_Omon,SPECS_day" provmip="SPECS" sn="depth_of_isosurface_of_sea_water_potential_temperature" title="20C isotherm depth" uid="46bc4ce008d1306ea0780510304cfa88" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Air Temperature" id="ta" label="ta" procComment="" procnote="" prov="CMIP5_6hrLev,CMIP5_6hrPlev,CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfDay,CMIP5_cfMon,CMIP5_cfSites,CMIP5_day,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_Amon,SPECS_day" provmip="CMIP5" sn="air_temperature" title="Air Temperature" uid="b9c3eb96337c69c1c4a5aab1317f5563" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Temperature on the 500 hPa surface" id="ta500" label="ta500" procComment="" procnote="" prov="CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="air_temperature" title="Air Temperature" uid="f6928c80a369489688a5da8e78a7a3b7" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Air temperature at 700hPa" id="ta700" label="ta700" procComment="" procnote="" prov="CMIP5_cfDay" provmip="CMIP5" sn="air_temperature" title="Air Temperature" uid="60149d7950df0e17e492caf344b9a5f2" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Air temperature at 850hPa" id="ta850" label="ta850" procComment="" procnote="" prov="CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="air_temperature" title="Air Temperature" uid="1e73cc52b4b323161e26ffd19ad68af4" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="total alkalinity equivalent concentration (including carbonate, nitrogen, silicate, and borate components)" id="talk" label="talk" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="sea_water_alkalinity_expressed_as_mole_equivalent" title="Total Alkalinity" uid="d90bac355dae4e53a6d0e5df81a090ad" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="total alkalinity equivalent concentration (including carbonate, borate, phosphorus, silicon, and nitrogen components) at preindustrial atmospheric xCO2" id="talknat" label="talknat" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="seawater_alkalinity_expressed_as_mole_equivalent_natural_component" title="Natural Total Alkalinity" uid="ba20ea537eb672813c5a364655855b38" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="near-surface (usually, 2 meter) air temperature" id="tas" label="tas" procComment="" procnote="nsrf" prov="CMIP5_Amon" provmip="CMIP5" sn="air_temperature" title="Near-Surface Air Temperature" uid="5c4978e802ba55d5a298cf1b3bdc2b3a" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="" id="tasLut" label="tasLut" procComment="" procnote="nsrf" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="air_temperature" title="near-surface air temperature (2m above displacement height, i.e. t_ref) on land use tile" uid="590f1a90-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="maximum near-surface (usually, 2 meter) air temperature (add cell_method attribute &quot;time: max&quot;)" id="tasmax" label="tasmax" procComment="" procnote="nsrf max" prov="CCMI1_daily" provmip="CCMI" sn="air_temperature" title="Daily Maximum Near-Surface Air Temperature" uid="2dd48e8c50b4b88a83ff07d308e4e642" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="minimum near-surface (usually, 2 meter) air temperature (add cell_method attribute &quot;time: min&quot;)" id="tasmin" label="tasmin" procComment="" procnote="nsrf min" prov="CCMI1_daily" provmip="CCMI" sn="air_temperature" title="Daily Minimum Near-Surface Air Temperature" uid="cce3dd39c138bf3c4d713263cc2e6cff" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="2D monthly mean thermal tropopause calculated using WMO tropopause definition on 3d temperature" id="tatp" label="tatp" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tropopause_air_temperature" title="Tropopause Air Temperature" uid="cff597224d260da1a1c769aab1bbea9d" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="module of the momentum lost by the atmosphere to the surface." id="tau" label="tau" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_downward_stress" title="Momentum flux" uid="590e6e4c-9e49-11e5-803c-0d0b866b59f3" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="Downward eastward wind stress at the surface" id="tauu" label="tauu" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,CORDEX_6h,CORDEX_day,PMIP3_Aclim,PMIP3_Amon,SPECS_Amon,SPECS_day" provmip="CMIP5" sn="surface_downward_eastward_stress" title="Surface Downward Eastward Wind Stress" uid="3abb7c5b4c4650e9d17a8439004aebea" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." id="tauucorr" label="tauucorr" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="surface_downward_x_stress_correction" title="Surface Downward X Stress Correction" uid="06942529e05aac1e9a39ca1f5737af2f" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." id="tauuo" label="tauuo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="surface_downward_x_stress" title="Surface Downward X Stress" uid="d1cfe9e20a66d3e922554248677efaba" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="The  downward eastward stress associated with the models parameterization of the plantary boundary layer. (This request is related to a WGNE effort to understand how models parameterize the surface stresses.)" id="tauupbl" label="tauupbl" procComment="" procnote="" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="surface_downward_eastward_stress_due_to_planetary_boundary_layer" title="eastward surface stress from planetary boundary layer scheme" uid="590ea93e-9e49-11e5-803c-0d0b866b59f3" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Downward northward wind stress at the surface" id="tauv" label="tauv" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,CORDEX_6h,CORDEX_day,PMIP3_Aclim,PMIP3_Amon,SPECS_Amon,SPECS_day" provmip="CMIP5" sn="surface_downward_northward_stress" title="Surface Downward Northward Wind Stress" uid="bd10cebbde1593b65e5220911f9a997c" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." id="tauvcorr" label="tauvcorr" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="surface_downward_y_stress_correction" title="Surface Downward Y Stress Correction" uid="ab495084beb82a29c24bf6c226fd0e57" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="This is the stress on the liquid ocean from overlying atmosphere, sea ice, ice shelf, etc." id="tauvo" label="tauvo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="surface_downward_y_stress" title="Surface Downward Y Stress" uid="593ed46e925a8bce9de9eb47f5e72632" unid="fd708bf4-3468-11e6-ba71-5404a60d96b5" units="N m-2"/>
<item description="The  downward northward stress associated with the models parameterization of the plantary boundary layer. (This request is related to a WGNE effort to understand how models parameterize the surface stresses.)" id="tauvpbl" label="tauvpbl" procComment="" procnote="" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="surface_downward_northward_stress_due_to_planetary_boundary_layer" title="northward surface stress from planetary boundary layer scheme" uid="590f5b72-9e49-11e5-803c-0d0b866b59f3" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Vegetation temperature, averaged over all vegetation types" id="tcs" label="tcs" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="canopy_temperature" title="Vegetation Canopy Temperature" uid="5914b4d2-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="unset" id="tdps" label="tdps" procComment="" procnote="" prov="SPECS_6hr" provmip="SPECS" sn="dew_point_temperature" title="2m dewpoint temperature" uid="4f3e5df56723b77c87e15cce7594ab94" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="The total surface mass balance flux over land ice is a spatial integration of the surface mass balance flux" id="tendacabf" label="tendacabf" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="tendency_of_land_ice_mass_due_to_surface_mass_balance" title="Total surface mass balance flux" uid="4146943a-4f40-11e6-a814-ac72891c3257" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="The total basal mass balance flux over land ice is a spatial integration of the basal mass balance flux" id="tendlibmassbf" label="tendlibmassbf" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="tendency_of_land_ice_mass_due_to_basal_mass_balance" title="Total basal mass balance flux" uid="414699d0-4f40-11e6-a814-ac72891c3257" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="The total calving flux over land ice is a spatial integration of the calving flux" id="tendlicalvf" label="tendlicalvf" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="tendency_of_land_ice_mass_due_to_calving" title="Total calving flux" uid="41469f3e-4f40-11e6-a814-ac72891c3257" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Surface bare soil temperature" id="tgs" label="tgs" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_temperature" title="Temperature of bare soil" uid="5913f290-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Diagnostic should be contributed even for models using conservative temperature as prognostic field." id="thetao" label="thetao" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_potential_temperature" title="Sea Water Potential Temperature" uid="cf53bdf4168a9107354d059ff39b5753" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="Diagnostic should be contributed even for models using conservative temperature as prognostic field" id="thetaoga" label="thetaoga" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_potential_temperature" title="Global Average Sea Water Potential Temperature" uid="f0280734103f054b10012331ab1c0459" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="Vertical average of the sea water potential temperature through the whole ocean depth" id="thetaot" label="thetaot" procComment="" procnote="vi" prov="SPECS_Omon" provmip="SPECS" sn="sea_water_potential_temperature" title="Vertically Averaged Sea Water Potential Temperature" uid="b5bc9b1fa92a35cec5989eeac3d77d1a" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="Upper 2000m, 2D field" id="thetaot2000" label="thetaot2000" procComment="" procnote="" prov="CMIP6 endorsement [DCPP]" provmip="DCPP" sn="sea_water_potential_temperature" title="Depth average potential temperature of upper 2000m" uid="59130bf0-9e49-11e5-803c-0d0b866b59f3" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="Upper 300m, 2D field" id="thetaot300" label="thetaot300" procComment="" procnote="" prov="CMIP6 endorsement [DCPP]" provmip="DCPP" sn="sea_water_potential_temperature" title="Depth average potential temperature of upper 300m" uid="590d2b9a-9e49-11e5-803c-0d0b866b59f3" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="Upper 700m, 2D field" id="thetaot700" label="thetaot700" procComment="" procnote="" prov="CMIP6 endorsement [DCPP]" provmip="DCPP" sn="sea_water_potential_temperature" title="Depth average potential temperature of upper 700m" uid="590eda94-9e49-11e5-803c-0d0b866b59f3" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="" id="thkcello" label="thkcello" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="cell_thickness" title="Ocean Model Cell Thickness" uid="5aea9677ebbb40076a0e0b3b11fdb46f" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Tendency of Specific Humidity" id="tnhus" label="tnhus" procComment="" procnote="" prov="CMIP5_cfMon,CMIP5_cfSites" provmip="CMIP5" sn="tendency_of_specific_humidity" title="Tendency of Specific Humidity" uid="2a6093caf9e5cd42fb2fba6bdb73d6db" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Tendency of Specific Humidity due to Advection" id="tnhusa" label="tnhusa" procComment="" procnote="" prov="CMIP5_cfMon,CMIP5_cfSites" provmip="CMIP5" sn="tendency_of_specific_humidity_due_to_advection" title="Tendency of Specific Humidity due to Advection" uid="150d0829eec06aeaf75d22d08d328ffa" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Tendencies from cumulus convection scheme." id="tnhusc" label="tnhusc" procComment="" procnote="" prov="CFMIP" provmip="CFMIP" sn="tendency_of_specific_humidity_due_to_convection" title="Tendency of Specific Humidity due to Convection" uid="a1d576b3fc447c37d782926441428ffd" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Tendency of specific humidity due to numerical diffusion.This includes any horizontal or vertical numerical moisture diffusion not associated with the parametrized moist physics or the resolved dynamics.  For example, any vertical diffusion which is part of the boundary layer mixing scheme should be excluded, as should any diffusion which is included in the terms from the resolved dynamics.   This term is required to check the closure of the moisture budget." id="tnhusd" label="tnhusd" procComment="" procnote="" prov="CFMIP" provmip="CFMIP" sn="tendency_of_specific_humidity_due_to_diffusion" title="Tendency of Specific Humidity due to Numerical Diffusion" uid="2c8cb564bae033f641135194947da163" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Tendency of specific humidity due to model physics. This includes sources and sinks from parametrized moist physics (e.g. convection, boundary layer, stratiform condensation/evaporation, etc.) and excludes sources and sinks from resolved dynamics or from horizontal or vertical numerical diffusion not associated with model physicsl.  For example any diffusive mixing by the boundary layer scheme would be included." id="tnhusmp" label="tnhusmp" procComment="" procnote="" prov="CFMIP" provmip="CFMIP" sn="tendency_of_specific_humidity_due_to_model_physics" title="Tendency of Specific Humidity due to Model Physics" uid="6e30ba1e2c19dcbd85faa176d4eae596" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Includes all boundary layer terms including diffusive terms." id="tnhuspbl" label="tnhuspbl" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="tendency_of_specific_humidity_due_to_boundary_layer_mixing" title="Tendency of Specific Humidity Due to Boundary Layer Mixing" uid="590ec6bc-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="" id="tnhusscp" label="tnhusscp" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="tendency_of_specific_humidity_due_to_stratiform_clouds_and_precipitation" title="Tendency of Specific Humidity Due to Stratiform Clouds and Precipitation" uid="59135d8a-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Tendency of Specific Humidity Due to Stratiform Cloud and Precipitation and Boundary Layer Mixing  (to be specified only in  models which do not separate budget terms for stratiform cloud, precipitation and boundary layer schemes.  Includes all bounday layer terms including and diffusive terms.)" id="tnhusscpbl" label="tnhusscpbl" procComment="" procnote="" prov="CFMIP" provmip="CFMIP" sn="tendency_of_specific_humidity_due_to_stratiform_cloud_and_precipitation_and_boundary_layer_mixing" title="Tendency of Specific Humidity Due to Stratiform Cloud and Precipitation and Boundary Layer Mixing" uid="9e9e7476986ece18ce380652eaabe342" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Depth integrated impacts on kinetic energy arising from parameterized eddy-induced advection. For CMIP5, this diagnostic was 3d, whereas the CMIP6 depth integrated diagnostic is sufficient for many purposes and reduces archive requirements." id="tnkebto" label="tnkebto" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_ocean_eddy_kinetic_energy_content_due_to_bolus_transport" title="Tendency of Ocean Eddy Kinetic Energy Content due to Bolus Transport" uid="bb27046ce21470dfbbecdd4f7eca546a" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Rate that work is done against vertical stratification, as measured by the vertical heat and salt diffusivity. Report here as depth integrated two-dimensional field." id="tnpeo" label="tnpeo" procComment="" procnote="" prov="OMIP_Oyr" provmip="OMIP" sn="tendency_of_ocean_potential_energy_content" title="tendency of ocean potential energy content" uid="dfd869cd3463de6a57b2a9e10605efe7" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="unset" id="tnpeot" label="tnpeot" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="tendency_of_ocean_potential_energy_content_due_to_tides" title="Tendency of Ocean Potential Energy Content due to Tides" uid="1763f47c438dc252b1317c9861792f50" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="unset" id="tnpeotb" label="tnpeotb" procComment="" procnote="" prov="CMIP5_Oclim" provmip="CMIP5" sn="tendency_of_ocean_potential_energy_content_due_to_background" title="Tendency of Ocean Potential Energy Content due to Background" uid="d00cab8104f1a9e853ebfa511d725462" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Tendency of Air Temperature" id="tnt" label="tnt" procComment="" procnote="" prov="CMIP5_cfMon,CMIP5_cfSites" provmip="CMIP5" sn="tendency_of_air_temperature" title="Tendency of Air Temperature" uid="c8b1814845661bcad37910e70a59b285" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Tendency of Air Temperature due to Advection" id="tnta" label="tnta" procComment="" procnote="" prov="CMIP5_cfMon,CMIP5_cfSites" provmip="CMIP5" sn="tendency_of_air_temperature_due_to_advection" title="Tendency of Air Temperature due to Advection" uid="ea55d8afe6bacbfa1029c0048717eaaa" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Tendencies from cumulus convection scheme." id="tntc" label="tntc" procComment="" procnote="" prov="CFMIP" provmip="CFMIP" sn="tendency_of_air_temperature_due_to_convection" title="Tendency of Air Temperature due to Convection" uid="52f043533a691ca5721460e316c3a328" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="This includes any horizontal or vertical numerical temperature diffusion not associated with the parametrized moist physics or the resolved dynamics.  For example, any vertical diffusion which is part of the boundary layer mixing scheme should be excluded, as should any diffusion which is included in the terms from the resolved dynamics.   This term is required to check the closure of the temperature budget." id="tntd" label="tntd" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="tendency_of_air_temperature_due_to_numerical_diffusion" title="Tendency of Air Temperature due to Numerical Diffusion" uid="590dcb0e-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Tendency of air temperature due to model physics. This includes sources and sinks from parametrized physics (e.g. radiation, convection, boundary layer, stratiform condensation/evaporation, etc.). It excludes sources and sinks from resolved dynamics and numerical diffusion not associated with parametrized physics.  For example, any vertical diffusion which is part of the boundary layer mixing scheme should be included, while numerical diffusion applied in addition to physics or resolved dynamics should be excluded.  This term is required to check the closure of the heat budget." id="tntmp" label="tntmp" procComment="" procnote="" prov="CFMIP" provmip="CFMIP" sn="tendency_of_air_temperature_due_to_model_physics" title="Tendency of Air Temperature due to Model Physics" uid="621681bc7c376de66228fdde13b97516" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Temperature tendency due to dissipation of parameterized nonorographic gravity waves." id="tntnogw" label="tntnogw" procComment="" procnote="gw" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="temperature_tendency_due_to_dissipation_nonorographic_gravity_wave_drag" title="temperature tendency nonorographic gravity wave dissipation" uid="5913e8ea-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Temperature tendency due to dissipation of parameterized orographic gravity waves." id="tntogw" label="tntogw" procComment="" procnote="gw" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="temperature_tendency_due_to_dissipation_orographic_gravity_wave_drag" title="temperature tendency orographic gravity wave dissipation" uid="5912b4e8-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Includes all boundary layer terms including diffusive terms." id="tntpbl" label="tntpbl" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="tendency_of_air_temperature_due_to_boundary_layer_mixing" title="Tendency of Air Temperature Due to Boundary Layer Mixing" uid="59143570-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Tendency of Air Temperature due to Radiative Heating" id="tntr" label="tntr" procComment="" procnote="" prov="CMIP5_cfMon,CMIP5_cfSites" provmip="CMIP5" sn="tendency_of_air_temperature_due_to_radiative_heating" title="Tendency of Air Temperature due to Radiative Heating" uid="93a0ba1f23bfc41b720ea68951d28144" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Tendency of air temperature due to longwave radiative heating" id="tntrl" label="tntrl" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="tendency_of_air_temperature_due_to_longwave_heating" title="tendency_of_air_temperature_due_to_longwave_heating" uid="5917483c-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Tendency of Air Temperature due to Clear Sky Longwave Radiative Heating" id="tntrlcs" label="tntrlcs" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="tendency_of_air_temperature_due_to_longwave_heating_assuming_clear_sky" title="Tendency of Air Temperature due to Clear Sky Longwave Radiative Heating" uid="59170a02-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Tendency of air temperature due to shortwave radiative heating" id="tntrs" label="tntrs" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="tendency_of_air_temperature_due_to_shortwave_heating" title="tendency_of_air_temperature_due_to_shortwave_heating" uid="59173c0c-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Tendency of Air Temperature due to Clear Sky Shortwave Radiative Heating" id="tntrscs" label="tntrscs" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="tendency_of_air_temperature_due_to_shortwave_heating_assuming_clear_sky" title="Tendency of Air Temperature due to Clear Sky Shortwave Radiative Heating" uid="5913d86e-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="" id="tntscp" label="tntscp" procComment="" procnote="" prov="CMIP6 endorsement [CFMIP]" provmip="CFMIP" sn="tendency_of_air_temperature_due_to_stratiform_clouds_and_precipitation" title="Tendency of Air Temperature Due to Stratiform Clouds and Precipitation" uid="5913d602-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Tendency of Air Temperature Due to Stratiform Cloud and Precipitation and Boundary Layer Mixing (to be specified only in  models which do not separate cloud, precipitation and boundary layer terms.  Includes all boundary layer terms including diffusive ones.)" id="tntscpbl" label="tntscpbl" procComment="" procnote="" prov="CFMIP" provmip="CFMIP" sn="tendency_of_air_temperature_due_to_stratiform_cloud_and_precipitation_and_boundary_layer_mixing" title="Tendency of Air Temperature Due to Stratiform Cloud and Precipitation and Boundary Layer Mixing" uid="475dc209e9f9cd51eedee4d26caf9f67" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Potential temperature at the ocean bottom-most grid cell." id="tob" label="tob" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="sea_water_potential_temperature_at_sea_floor" title="Sea Water Potential Temperature at Sea Floor" uid="3a9ebed36fac6d76f1c7d70b6cf06991" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="Full column sum of density*cell thickness*prognostic temperature. If the model is Boussinesq, then use Boussinesq reference density for the density factor." id="tomint" label="tomint" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="integral_wrt_depth_of_product_of_sea_water_density_and_prognostic_temperature" title="integral wrt depth of product of sea water density and prognostic temperature" uid="93aa8484bd5399920b19acc9f208f664" unid="fd7020d8-3468-11e6-ba71-5404a60d96b5" units="1e-3 kg m-2"/>
<item description="The bedrock topography beneath the land ice" id="topg" label="topg" procComment="" procnote="" prov="CMIP6 endorsement [ISMIP6]" provmip="ISMIP6" sn="bedrock_altitude" title="Bedrock Altitude" uid="59148cf0-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="temperature of liquid ocean.  Note that the correct standard_name for this variable is &quot;sea_surface_temperature&quot;, not &quot;surface_temperature&quot;, but this was discovered too late to correct.  To maintain consistency across CMIP5 models, the wrong standard_name will continue to be used." id="tos" label="tos" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_surface_temperature" title="Sea Surface Temperature" uid="0e5d376315a376cd2b1e37f440fe43d3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="This may differ from &quot;surface temperature&quot; in regions of sea ice.This may differ from &quot;surface temperature&quot; in regions of sea ice.For models using conservative temperature as prognostic field, they should report the SST as surface potent" id="tosga" label="tosga" procComment="" procnote="" prov="OMIP_Omon" provmip="OMIP" sn="sea_surface_temperature" title="Global Average Sea Surface Temperature" uid="dbba7f5717d68960a82b228e03dea7b7" unid="fd70db36-3468-11e6-ba71-5404a60d96b5" units="degC"/>
<item description="square of temperature of liquid ocean, averaged over the day." id="tossq" label="tossq" procComment="" procnote="" prov="OMIP.day" provmip="OMIP" sn="square_of_sea_surface_temperature" title="Square of Sea Surface Temperature" uid="d1b497a4f7f4cb666757ec97d152079e" unid="b621c8f4-6455-11e6-8881-5404a60d96b5" units="degC2"/>
<item description="total ozone column in DU" id="toz" label="toz" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="equivalent_thickness_at_stp_of_atmosphere_ozone_content" title="Total Ozone Column" uid="79fec430c1dca1ac4b48b0fc36c48449" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="The mean thickness of the permafrost layer in the land portion of the grid cell.  Reported as zero in permafrost-free regions." id="tpf" label="tpf" procComment="" procnote="" prov="CMIP5_LImon,PMIP3_LIclim,PMIP3_LImon" provmip="CMIP5" sn="permafrost_layer_thickness" title="Permafrost Layer Thickness" uid="3e437daab5bc69123a859ad361babc59" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Effective radiative surface temperature, averaged over the grid cell" id="tr" label="tr" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_temperature" title="Surface Radiative Temperature" uid="590d4724-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Transpiration (may include dew formation as a negative flux)." id="tran" label="tran" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="transpiration_flux" title="Transpiration" uid="19e117c2298a016c96c496ee22f39976" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Percentage of entire grid cell  that is covered by trees." id="treeFrac" label="treeFrac" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage Tree Cover" uid="d3eb8c36759afa5ef2c8363e0c16db88" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="treeFracBdlDcd" label="treeFracBdlDcd" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="area_fraction" title="Broadleaf deciduous tree fraction" uid="5914ccba-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="treeFracBdlEvg" label="treeFracBdlEvg" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="area_fraction" title="Broadleaf evergreen tree fraction" uid="5914dbb0-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="treeFracNdlDcd" label="treeFracNdlDcd" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="area_fraction" title="Needleleaf deciduous tree fraction" uid="59131672-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="treeFracNdlEvg" label="treeFracNdlEvg" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="area_fraction" title="Needleleaf evergreen tree fraction" uid="59144f06-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage of the entire grid cell  that is covered by total primary deciduous trees." id="treeFracPrimDec" label="treeFracPrimDec" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage Cover by Primary Deciduous Tree" uid="374e24b1cf7c24eb75126ea6e39ac478" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage of entire grid cell  that is covered by primary evergreen trees." id="treeFracPrimEver" label="treeFracPrimEver" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage Cover Primary Evergreen Tree" uid="1e93ae651487e683206b923c11fd6db1" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage of entire grid cell  that is covered by secondary deciduous trees." id="treeFracSecDec" label="treeFracSecDec" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage Cover of Secondary Deciduous Tree" uid="e9289080901a39eba6ade178d596795a" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Percentage of entire grid cell  that is covered by secondary evergreen trees." id="treeFracSecEver" label="treeFracSecEver" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="area_fraction" title="Percentage Cover Secondary Evergreen Tree" uid="b28e47214f0b71847c966828df0837ff" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="tropospheric ozone column in DU, should be consistent with ptp definition of tropopause" id="tropoz" label="tropoz" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="equivalent_thickness_at_stp_of_atmosphere_ozone_content" title="tropospheric ozone column" uid="4b1f3e86dde718e8c9697df0c3992c06" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Temperature of the lower boundary of the atmosphere" id="ts" label="ts" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,CORDEX_6h,CORDEX_day,PMIP3_Aclim,PMIP3_Amon,SPECS_Amon" provmip="CMIP5" sn="surface_temperature" title="Surface Temperature" uid="90c49fce92dc1f21647dad07d1342843" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Temperature of each soil layer. Reported as missing for grid cells with no land." id="tsl" label="tsl" procComment="" procnote="" prov="CMIP5_Lmon,PMIP3_Lclim,PMIP3_Lmon,SPECS_Lmon" provmip="CMIP5" sn="soil_temperature" title="Temperature of Soil" uid="3fd3cb4e2d6dd15b7dd73def96fea129" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="&quot;skin&quot; temperature of all surfaces except open ocean." id="tslsi" label="tslsi" procComment="" procnote="" prov="CMIP5_day,PMIP3_day" provmip="CMIP5" sn="surface_temperature" title="Surface Temperature where Land or Sea Ice" uid="2a92e434b37059d90e72b193bdbcce0f" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="temperature at which long-wave radiation emitted" id="tslsiLut" label="tslsiLut" procComment="" procnote="" prov="CMIP6 endorsement [LUMIP]" provmip="LUMIP" sn="surface_temperature" title="surface 'skin' temperature on land use tile" uid="590e417e-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="This temperature is averaged over all the snow in the grid cell that rests on land or land ice.  When computing the time-mean here, the time samples, weighted by the mass of snow on the land portion of the grid cell, are accumulated and then divided by the sum of the weights.   Reported as missing in regions free of snow on land." id="tsn" label="tsn" procComment="" procnote="" prov="CMIP5_LImon,PMIP3_LIclim,PMIP3_LImon" provmip="CMIP5" sn="temperature_in_surface_snow" title="Snow Internal Temperature" uid="15fd6126b9fb057118c71df94403e30c" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Temperature in the snow pack present in the grid-cell. 3D variable for multi-layer snow schemes." id="tsnl" label="tsnl" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="snow_temperature" title="Temperature profile in the snow" uid="5914277e-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Temperature of the snow surface as it interacts with the atmosphere, averaged over a grid cell." id="tsns" label="tsns" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="surface_temperature" title="Snow Surface Temperature" uid="5914474a-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="temperature of surface of open ocean, sampled synoptically." id="tso" label="tso" procComment="" procnote="" prov="CMIP5_3hr" provmip="CMIP5" sn="sea_surface_temperature" title="Sea Surface Temperature" uid="a7adfe95f91ab2379bd368936ae82edf" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="" id="ttop" label="ttop" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="air_temperature_at_cloud_top" title="air temperature at cloud top" uid="c26eed24b27782de78cfab86e3d3b2d2" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Product of air temperature and pressure tendency" id="twap" label="twap" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="product_of_omega_and_air_temperature" title="air_temperature_times_omega" uid="590f753a-9e49-11e5-803c-0d0b866b59f3" unid="fd705cd8-3468-11e6-ba71-5404a60d96b5" units="K Pa s-1"/>
<item description="" id="tws" label="tws" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="canopy_and_surface_and_subsurface_water_amount" title="Terrestrial Water Storage" uid="590e219e-9e49-11e5-803c-0d0b866b59f3" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="u*u" id="u2" label="u2" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="square_of_eastward_wind" title="square_of_eastward_wind" uid="59175dc2-9e49-11e5-803c-0d0b866b59f3" unid="fd71eed6-3468-11e6-ba71-5404a60d96b5" units="m2 s-2"/>
<item description="" id="ua" label="ua" procComment="" procnote="" prov="CMIP5_6hrLev,CMIP5_6hrPlev,CMIP5_Amon,CMIP5_cfDay,CMIP5_cfSites,CMIP5_day,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_Amon" provmip="CMIP5" sn="eastward_wind" title="Eastward Wind" uid="21db90c0a12448299f855fdab60930d4" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Zonal wind on the 10 hPa surface" id="ua10" label="ua10" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="eastward_wind" title="Eastward Wind at 10hPa" uid="0cde14f7745a201d47b856579bf6e759" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Zonal wind at 100m height" id="ua100m" label="ua100m" procComment="" procnote="" prov="VIACSAB" provmip="VIACSAB" sn="eastward_wind" title="Eastward Wind at 100m" uid="0117314a-b8b2-11e6-a189-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Zonal wind (positive eastwards) at 200hPa" id="ua200" label="ua200" procComment="" procnote="" prov="CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="eastward_wind" title="Eastward Wind at 200hPa" uid="df11ad28e457894085d760bdfb1cfc96" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Zonal wind on the 850 hPa surface" id="ua850" label="ua850" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="eastward_wind" title="Eastward Wind at 850 hPa" uid="74664cc3f23008726cc939f53e57325a" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Eastward component of the near-surface (usually, 10 meters)  wind" id="uas" label="uas" procComment="" procnote="nsrf" prov="CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="eastward_wind" title="Eastward Near-Surface Wind" uid="e72b243a2a1c8691ab0168d8b62534c2" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="X-ward mass transport from resolved and parameterized advective transport." id="umo" label="umo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_mass_x_transport" title="Ocean Mass X Transport" uid="2f074f3417a26ad322b96dd0b6c21e09" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Prognostic x-ward velocity component resolved by the model." id="uo" label="uo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_x_velocity" title="Sea Water X Velocity" uid="1ed3e3be3675e589a5327ce82016ab72" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Column integrated eastward wind times specific humidity" id="uqint" label="uqint" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="integral_of_product_of_eastward_wind_and_specific_humidity_wrt_height" title="integrated_eastward_wind_times_humidity" uid="59177dc0-9e49-11e5-803c-0d0b866b59f3" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="Product of air temperature and eastward wind" id="ut" label="ut" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="product_of_eastward_wind_and_air_temperature" title="air_temperature_times_eastward_wind" uid="5917841e-9e49-11e5-803c-0d0b866b59f3" unid="fd706458-3468-11e6-ba71-5404a60d96b5" units="K m s-1"/>
<item description="Tendency of the zonal mean zonal wind due to the divergence of the Eliassen-Palm flux." id="utendepfd" label="utendepfd" procComment="" procnote="zm" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="tendency_of_eastward_wind_due_to_eliassen_palm_flux_divergence" title="Tendency of eastward wind due to Eliassen-Palm Flux divergence" uid="590fa2bc-9e49-11e5-803c-0d0b866b59f3" unid="fd71b06a-3468-11e6-ba71-5404a60d96b5" units="m s-2"/>
<item description="Tendency of the eastward wind by parameterized nonorographic gravity waves." id="utendnogw" label="utendnogw" procComment="" procnote="gw" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="tendency_of_eastward_wind_due_to_nonorographic_gravity_wave_drag" title="u-tendency nonorographic gravity wave drag" uid="590e85a8-9e49-11e5-803c-0d0b866b59f3" unid="fd71b06a-3468-11e6-ba71-5404a60d96b5" units="m s-2"/>
<item description="Tendency of the eastward wind by parameterized orographic gravity waves." id="utendogw" label="utendogw" procComment="" procnote="gw" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="tendency_of_eastward_wind_due_to_orographic_gravity_wave_drag" title="u-tendency orographic gravity wave drag" uid="590ed5a8-9e49-11e5-803c-0d0b866b59f3" unid="fd71b06a-3468-11e6-ba71-5404a60d96b5" units="m s-2"/>
<item description="Tendency of zonally averaged eastward wind, by the residual upward wind advection (on the native model grid). Reference: Andrews et al (1987): Middle Atmospheric Dynamics. Accademic Press." id="utendvtem" label="utendvtem" procComment="" procnote="zm" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="u-tendency_by_wstar_advection" title="Rendency of eastward wind due to TEM northward advection and Coriolis term" uid="590e48f4-9e49-11e5-803c-0d0b866b59f3" unid="fd726a00-3468-11e6-ba71-5404a60d96b5" units="m s-1 d-1"/>
<item description="Tendency of zonally averaged eastward wind, by the residual northward wind advection (on the native model grid). Reference: Andrews et al (1987): Middle Atmospheric Dynamics. Accademic Press." id="utendwtem" label="utendwtem" procComment="" procnote="zm" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="u-tendency_by_vstar_advection" title="Rendency of eastward wind due to TEM upward advection" uid="590e883c-9e49-11e5-803c-0d0b866b59f3" unid="fd726a00-3468-11e6-ba71-5404a60d96b5" units="m s-1 d-1"/>
<item description="u*v" id="uv" label="uv" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="product_of_eastward_wind_and_northward_wind" title="eastward_wind_times_northward_wind" uid="59137496-9e49-11e5-803c-0d0b866b59f3" unid="fd71eed6-3468-11e6-ba71-5404a60d96b5" units="m2 s-2"/>
<item description="u*omega" id="uwap" label="uwap" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="product_of_eastward_wind_and_omega" title="eastward_wind_times_omega" uid="591792ce-9e49-11e5-803c-0d0b866b59f3" unid="fd709af4-3468-11e6-ba71-5404a60d96b5" units="Pa m s-2"/>
<item description="v*v" id="v2" label="v2" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="square_of_northward_wind" title="square_of_northwardwind" uid="591485b6-9e49-11e5-803c-0d0b866b59f3" unid="fd71eed6-3468-11e6-ba71-5404a60d96b5" units="m2 s-2"/>
<item description="" id="va" label="va" procComment="" procnote="" prov="CMIP5_6hrLev,CMIP5_6hrPlev,CMIP5_Amon,CMIP5_cfDay,CMIP5_cfSites,CMIP5_day,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_Amon,SPECS_day" provmip="CMIP5" sn="northward_wind" title="Northward Wind" uid="2dedcb347c18e132a2f4d625abf94585" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Meridional wind at 100m above the surface." id="va100m" label="va100m" procComment="" procnote="" prov="VIACSAB" provmip="VIACSAB" sn="northward_wind" title="Northward Wind at 100m" uid="020dcc8a-b8b2-11e6-a189-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Northward component of the wind" id="va200" label="va200" procComment="" procnote="" prov="CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="northward_wind" title="Northward Wind" uid="31da97523029203798a150a71bc20301" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Northward component of the wind at 850hPa" id="va850" label="va850" procComment="" procnote="" prov="CORDEX_6h,CORDEX_day,CORDEX_mon,CORDEX_sem" provmip="CORDEX" sn="northward_wind" title="Northward Wind" uid="4845c81a8e19c6dd7059fa1a115c17ab" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Northward component of the near surface wind" id="vas" label="vas" procComment="" procnote="nsrf" prov="CMIP5_Amon,CMIP5_cf3hr,CMIP5_cfSites,CMIP5_day,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_6hr,SPECS_Amon" provmip="CMIP5" sn="northward_wind" title="Northward Near-Surface Wind" uid="86b1cd51f370e346ecb20f1e80cb6ea4" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="as specified by C4MIP" id="vegFrac" label="vegFrac" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="area_fraction" title="Total vegetated fraction" uid="590e75c2-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="as specified by C4MIP" id="vegHeight" label="vegHeight" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="canopy_height" title="Vegetation height averaged over all vegetation types and over the vegetated fraction of a grid cell." uid="59170cbe-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="as specified by C4MIP" id="vegHeightCrop" label="vegHeightCrop" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="canopy_height" title="Vegetation height averaged over the crop fraction of a grid cell." uid="5917d9fa-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="as specified by C4MIP" id="vegHeightGrass" label="vegHeightGrass" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="canopy_height" title="Vegetation height averaged over the grass fraction of a grid cell." uid="591384a4-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="as specified by C4MIP" id="vegHeightShrub" label="vegHeightShrub" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="canopy_height" title="Vegetation height averaged over the shrub fraction of a grid cell." uid="59174aa8-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="as specified by C4MIP" id="vegHeightTree" label="vegHeightTree" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="canopy_height" title="Vegetation height averaged over the tree fraction of a grid cell." uid="59136000-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Y-ward mass transport from resolved and parameterized advective transport." id="vmo" label="vmo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="ocean_mass_y_transport" title="Ocean Mass Y Transport" uid="f7fdcc15d14c0066a9590e4bce820056" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="Mole Fraction of Ox" id="vmrox" label="vmrox" procComment="" procnote="" prov="CMIP6 endorsement [DAMIP]" provmip="DAMIP" sn="mole_fraction_of_ozone_and_atomic_oxygen_and_1D_oxygen_atom" title="mole fraction of o and o3 and o1d" uid="e51c1fc2-00a7-11e6-a8a4-5404a60d96b5" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Prognostic x-ward velocity component resolved by the model." id="vo" label="vo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_y_velocity" title="Sea Water Y Velocity" uid="3e3ddc77800e7d421834b9cb808602d7" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="grid-cell volume ca. 2000." id="volcello" label="volcello" procComment="" procnote="" prov="CMIP5_fx,PMIP3_fx,SPECS_fx" provmip="CMIP5" sn="ocean_volume" title="Ocean Grid-Cell Volume" uid="4c69515bfc84c5cb5624e94228f58351" unid="fd71f6b0-3468-11e6-ba71-5404a60d96b5" units="m3"/>
<item description="Total volume of liquid seawater." id="volo" label="volo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_water_volume" title="Sea Water Volume" uid="a86d0b2abcfe5055d91478b5c771bf34" unid="fd71f6b0-3468-11e6-ba71-5404a60d96b5" units="m3"/>
<item description="Mean vorticity over 850,700,600 hPa" id="vortmean" label="vortmean" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="atmosphere_relative_vorticity" title="atmosphere_relative_vorticity" uid="59152e1c-9e49-11e5-803c-0d0b866b59f3" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="Column integrated northward wind times specific humidity" id="vqint" label="vqint" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="integral_of_product_of_northward_wind_and_specific_humidity_wrt_height" title="integrated_northward_wind_times_humidity" uid="591306a0-9e49-11e5-803c-0d0b866b59f3" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="It is set to zero in models which receive a real water flux." id="vsf" label="vsf" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="virtual_salt_flux_into_sea_water" title="Virtual Salt Flux into Sea Water" uid="f45dc6b68a774051705e099da83e79cf" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="It is set to zero in models which receive a real water flux." id="vsfcorr" label="vsfcorr" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="virtual_salt_flux_correction" title="Virtual Salt Flux Correction" uid="87fbc4126ce4daecf084edf9ad1f4aaf" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="zero for models using real water fluxes." id="vsfevap" label="vsfevap" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="virtual_salt_flux_into_sea_water_due_to_evaporation" title="Virtual Salt Flux into Sea Water due to Evaporation" uid="b76d616f8f03bb60a0dffa023dfd0525" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="zero for models using real water fluxes." id="vsfpr" label="vsfpr" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="virtual_salt_flux_into_sea_water_due_to_rainfall" title="Virtual Salt Flux into Sea Water due to Rainfall" uid="7002f5a3bc5218f16a39f3dfabf42244" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="zero for models using real water fluxes." id="vsfriver" label="vsfriver" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="virtual_salt_flux_into_sea_water_from_rivers" title="Virtual Salt Flux into Sea Water From Rivers" uid="86e9eba62a2d7875705086a75ba7f78c" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="This variable measures the virtual salt flux into sea water due to the melting of sea ice. It is set to zero in models which receive a real water flux." id="vsfsit" label="vsfsit" procComment="" procnote="si" prov="OMIP.Omon" provmip="OMIP" sn="virtual_salt_flux_into_sea_water_due_to_sea_ice_thermodynamics" title="Virtual Salt Flux into Sea Water due to Sea Ice Thermodynamics" uid="d0c290e7deb148591b62f8f050a885c2" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Product of air temperature and northward wind" id="vt" label="vt" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="product_of_northward_wind_and_air_temperature" title="air_temperature_times_northward_wind" uid="5914668a-9e49-11e5-803c-0d0b866b59f3" unid="fd706458-3468-11e6-ba71-5404a60d96b5" units="K m s-1"/>
<item description="Zonally averaged meridional heat flux at 100 hPa as monthly means derived from daily (or higher frequency) fields." id="vt100" label="vt100" procComment="" procnote="zm" prov="CCMI1_monthly" provmip="CCMI" sn="northward_heat_flux_in_air_due_to_eddy_advection" title="Northward Heat Flux due to Eddies" uid="76248ae1d72c976495be67161d5a8d7d" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Transformed Eulerian Mean Diagnostics v*, meridional component of the residual meridional circulation (v*, w*) derived from 6 hr or higher frequency data fields (use instantaneous daily fields or 12 hr fields if the 6 hr data are not available)." id="vtem" label="vtem" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="northward_transformed_eulerian_mean_air_velocity" title="Transformed Eulerian Mean northward wind" uid="ba7be4134a9cf4838434bf204d80b903" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Tendency of the northward wind by parameterized nonorographic gravity waves.  (Note that CF name tables only have a general northward tendency for all gravity waves, and we need it separated by type.)" id="vtendnogw" label="vtendnogw" procComment="" procnote="gw" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="tendency_of_northward_wind_due_to_nonorographic_gravity_wave_drag" title="v-tendency nonorographic gravity wave drag" uid="59170700-9e49-11e5-803c-0d0b866b59f3" unid="fd71b06a-3468-11e6-ba71-5404a60d96b5" units="m s-2"/>
<item description="Tendency of the northward wind by parameterized orographic gravity waves.  (Note that CF name tables only have a general northward tendency for all gravity waves, and we need it separated by type.)" id="vtendogw" label="vtendogw" procComment="" procnote="gw" prov="CMIP6 endorsement [DynVar]" provmip="DynVar" sn="tendency_of_northward_wind_due_to_orographic_gravity_wave_drag" title="v-tendency orographic gravity wave drag" uid="59140c12-9e49-11e5-803c-0d0b866b59f3" unid="fd71b06a-3468-11e6-ba71-5404a60d96b5" units="m s-2"/>
<item description="v*omega" id="vwap" label="vwap" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="product_of_northward_wind_and_omega" title="northward_wind_times_omega" uid="590ec446-9e49-11e5-803c-0d0b866b59f3" unid="fd709af4-3468-11e6-ba71-5404a60d96b5" units="Pa m s-2"/>
<item description="" id="wa" label="wa" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="upward_air_velocity" title="Upward Air Velocity" uid="9982868916859ae8b64cc83cbed896af" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Omega (vertical velocity in pressure coordinates, positive downwards)" id="wap" label="wap" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cfDay,CMIP5_cfSites,CMIP5_day,PMIP3_Aclim,PMIP3_Amon,PMIP3_day" provmip="CMIP5" sn="lagrangian_tendency_of_air_pressure" title="omega (=dp/dt)" uid="51fb29dd55442361fa9c5dbe23aca9c6" unid="fd70a242-3468-11e6-ba71-5404a60d96b5" units="Pa s-1"/>
<item description="omega*omega" id="wap2" label="wap2" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="square_of_lagrangian_tendency_of_air_pressure" title="square_of_omega" uid="591371b2-9e49-11e5-803c-0d0b866b59f3" unid="fd70a990-3468-11e6-ba71-5404a60d96b5" units="Pa2 s-2"/>
<item description="Omega (vertical velocity in pressure coordinates, positive downwards) at 500 hPa level;" id="wap500" label="wap500" procComment="" procnote="" prov="CMIP5_cfDay" provmip="CMIP5" sn="lagrangian_tendency_of_air_pressure" title="omega (=dp/dt)" uid="e0a1b4528bdd009ada638396c9537baf" unid="fd70a242-3468-11e6-ba71-5404a60d96b5" units="Pa s-1"/>
<item description="" id="waterDpth" label="waterDpth" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="water_table_depth" title="Water table depth from surface." uid="5913b780-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Wet bulb potential temperature" id="wbptemp" label="wbptemp" procComment="" procnote="" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="wet_bulb_potential_temperature" title="wet_bulb_potential_temperature" uid="5917b704-9e49-11e5-803c-0d0b866b59f3" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="" id="wetbc" label="wetbc" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_elemental_carbon_dry_aerosol_particles_due_to_wet_deposition" title="wet deposition rate of black carbon aerosol mass" uid="0b3fc46bf32dfbd9d36cdb72e827eb29" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="wetdust" label="wetdust" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_dust_dry_aerosol_particles_due_to_wet_deposition" title="wet deposition rate of dust" uid="0f914086f4c1cd76f867eef7cd71154d" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="wetlandCH4" label="wetlandCH4" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="wetland_methane_emissions" title="Grid averaged methane emissions from wetlands" uid="5917a070-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="wetlandCH4cons" label="wetlandCH4cons" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="wetland_methane_consumption" title="Grid averaged methane consuption (methanotrophy) from wetlands" uid="590ec93c-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="wetlandCH4prod" label="wetlandCH4prod" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="wetland_methane_production" title="Grid averaged methane production (methanogenesis) from wetlands" uid="590f8fca-9e49-11e5-803c-0d0b866b59f3" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="as specified by C4MIP" id="wetlandFrac" label="wetlandFrac" procComment="" procnote="" prov="CMIP6 endorsement [PMIP]" provmip="PMIP" sn="wetland_fraction" title="Fraction of a grid cell covered by wetland." uid="59147ddc-9e49-11e5-803c-0d0b866b59f3" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="wetnh3" label="wetnh3" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_ammonia_due_to_wet_deposition" title="wet deposition rate of nh3" uid="aa4309c2c15be0c9d7db2f9d38f348ca" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="wetnh4" label="wetnh4" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_ammonium_dry_aerosol_particles_due_to_wet_deposition" title="wet deposition rate of nh4" uid="86b2899d1c267c92e3fbaccd21b55472" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="NOy is the sum of all simulated oxidized nitrogen species, out of NO, NO2, HNO3, HNO4, NO3aerosol, NO3(radical), N2O5, PAN, other organic nitrates." id="wetnoy" label="wetnoy" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_atmosphere_mass_content_of_noy_expressed_as_nitrogen_due_to_wet_deposition" title="wet deposition of noy incl aerosol nitrate" uid="ecfae3e2adc49321ec4c9d664fd425ec" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="tendency of atmosphere mass content of organic matter dry aerosols due to wet deposition: This is the sum of wet deposition of POA and wet deposition of SOA (see next two entries). Mass here refers to the mass of organic matter, not mass of organic carbon alone. We recommend a scale factor of POM=1.4*OC, unless your model has more detailed info available. Was called wet_pom in old ACCMIP Excel spreadsheet." id="wetoa" label="wetoa" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_particulate_organic_matter_dry_aerosol_particles_due_to_wet_deposition" title="wet deposition rate of dry aerosol total organic matter" uid="646edc2e8f1c393b5569dba5d598f8c8" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="wetso2" label="wetso2" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_sulfur_dioxide_due_to_wet_deposition" title="wet deposition rate of so2" uid="c670517b02de6212f3091aaa455f60ed" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="proposed name: tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_due_to_wet_deposition" id="wetso4" label="wetso4" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_sulfate_dry_aerosol_particles_due_to_wet_deposition" title="wet deposition rate of so4" uid="a3383a3abeddbcb0d27368a8cf9b9503" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="wetss" label="wetss" procComment="" procnote="" prov="CMIP5_aero" provmip="CMIP5" sn="tendency_of_atmosphere_mass_content_of_seasalt_dry_aerosol_particles_due_to_wet_deposition" title="wet deposition rate of seasalt" uid="c97520628498eea6e19cc1be19c73677" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Positive flux implies correction adds water to ocean." id="wfcorr" label="wfcorr" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="water_flux_correction" title="Water Flux Correction" uid="604242476d85346b48bd6d791ed05583" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="computed as the water  flux into the ocean divided by the area of the ocean portion of the grid cell.  This is the sum of the next two variables in this table." id="wfo" label="wfo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="water_flux_into_sea_water" title="Water Flux into Sea Water" uid="c3805ef555348a5f525cf09ccb254af4" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="computed as the water  flux (without flux correction) into the ocean divided by the area of the ocean portion of the grid cell." id="wfonocorr" label="wfonocorr" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="water_flux_into_sea_water_without_flux_correction" title="Water Flux into Sea Water Without Flux Correction" uid="4d42d6e262fdc2c20cf8e2e82826e0c8" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Upward mass transport from resolved and parameterized advective transport." id="wmo" label="wmo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="upward_ocean_mass_transport" title="Upward Ocean Mass Transport" uid="05b30c1e249f6854ffc0b3f7676eed73" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="" id="wo" label="wo" procComment="" procnote="" prov="SPECS_Omon" provmip="SPECS" sn="upward_sea_water_velocity" title="Sea Water Vertical Velocity" uid="d476e6113f5c466d27fd3aa9e9c35411" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Wind speed gust maximum at 100m above surface" id="wsgmax100m" label="wsgmax100m" procComment="" procnote="" prov="VIACSAB" provmip="VIACSAB" sn="wind_speed_of_gust" title="Maximum Wind Speed of Gust at 100m" uid="e4b039da-b621-11e6-bbe2-ac72891c3257" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="" id="wtd" label="wtd" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="depth_of_soil_moisture_saturation" title="Water table depth" uid="5913c4dc-9e49-11e5-803c-0d0b866b59f3" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Transformed Eulerian Mean Diagnostics w*, meridional component of the residual meridional circulation (v*, w*) derived from 6 hr or higher frequency data fields (use instantaneous daily fields or 12 hr fields if the 6 hr data are not available). Scale height: 6950 m" id="wtem" label="wtem" procComment="" procnote="" prov="CCMI1_daily,CCMI1_monthly" provmip="CCMI" sn="unset" title="Transformed Eulerian Mean upward wind" uid="c64364df884a3cebaa7aebb664260776" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Parameterised x-component of gravity wave drag" id="xgwdparam" label="xgwdparam" procComment="" procnote="gw" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="atmosphere_eastward_stress_due_to_gravity_wave_drag" title="x_gravity_wave_drag_param" uid="591472f6-9e49-11e5-803c-0d0b866b59f3" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Parameterised y- component of gravity wave drag" id="ygwdparam" label="ygwdparam" procComment="" procnote="gw" prov="CMIP6 endorsement [HighResMIP]" provmip="HighResMIP" sn="atmosphere_northward_stress_due_to_gravity_wave_drag" title="y_gravity_wave_drag_param" uid="59132e1e-9e49-11e5-803c-0d0b866b59f3" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="" id="zhalf" label="zhalf" procComment="" procnote="" prov="CMIP5" provmip="CMIP5" sn="height_above_reference_ellipsoid" title="Altitude of Model Half-Levels" uid="211dfdaa-b89b-11e6-a189-5404a60d96b5" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="" id="zfull" label="zfull" procComment="" procnote="" prov="CMIP5" provmip="CMIP5" sn="height_above_reference_ellipsoid" title="Altitude of Model Full-Levels" uid="216ab26c-b89b-11e6-a189-5404a60d96b5" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Depth below geoid" id="zfullo" label="zfullo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="depth_below_geoid" title="Depth Below Geoid of Ocean Layer" uid="44471dd9799293cef70ac63fcdd2476e" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="" id="zg" label="zg" procComment="" procnote="" prov="CMIP5_Amon,CMIP5_cfDay,CMIP5_cfSites,CMIP5_day,PMIP3_Aclim,PMIP3_Amon,PMIP3_day,SPECS_Amon,SPECS_day" provmip="CMIP5" sn="geopotential_height" title="Geopotential Height" uid="28e774ec0ecd561a6a3d437e6c443a6b" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Geopotential height on the 10 hPa surface" id="zg10" label="zg10" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="geopotential_height" title="Geopotential Height at 10 hPa" uid="fc0bedbaf6d676fb85fe189310c871a8" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Geopotential height on the 100 hPa surface" id="zg100" label="zg100" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="geopotential_height" title="Geopotential Height at 100 hPa" uid="b1644981b0abd369ad35fac3fc930873" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Geopotential height on the 1000 hPa surface" id="zg1000" label="zg1000" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="geopotential_height" title="Geopotential Height at 1000 hPa" uid="a36df015f59d91b021f2534321986440" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="geopotential height on the 500 hPa surface" id="zg500" label="zg500" procComment="" procnote="" prov="CCMI1_daily" provmip="CCMI" sn="geopotential_height" title="Geopotential Height at 500 hPa" uid="c0007a5e2b555d399d9bfe49f7502f1b" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Depth below geoid" id="zhalfo" label="zhalfo" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="depth_below_geoid" title="Depth Below Geoid of Interfaces Between Ocean Layers" uid="e4f788872546d474c64f89798a4cb8cb" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="carbon  concentration from mesozooplankton (20-200 um) component alone" id="zmeso" label="zmeso" procComment="" procnote="zm" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_mesozooplankton_expressed_as_carbon_in_sea_water" title="Mole Concentration of Mesozooplankton expressed as Carbon in Sea Water" uid="30a7a10d4c71066f19eae9a89ddfafba" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon  concentration from the microzooplankton (&lt;20 um) component alone" id="zmicro" label="zmicro" procComment="" procnote="zm" prov="OMIP" provmip="OMIP" sn="mole_concentration_of_microzooplankton_expressed_as_carbon_in_sea_water" title="Mole Concentration of Microzooplankton expressed as Carbon in Sea Water" uid="e9dc036ef43db84bc4651ce95b0fed94" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="zmla" label="zmla" procComment="" procnote="zm" prov="CORDEX_6h,CORDEX_day" provmip="CORDEX" sn="atmosphere_boundary_layer_thickness" title="Height of Boundary Layer" uid="93e06dd7c756aade75235d7841c05269" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="longwave heating rate due to volcanic aerosols to be diagnosed through double radiation call, zonal average values required" id="zmlwaero" label="zmlwaero" procComment="" procnote="zm" prov="CMIP6 endorsement [VolMIP]" provmip="VolMIP" sn="longwave_heating_rate_due_to_volcanic_aerosols" title="Zonal mean longwave heating rate due to volcanic aerosols" uid="5913d0c6-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="shortwave heating rate due to volcanic aerosols to be diagnosed through double radiation call, zonal average values required" id="zmswaero" label="zmswaero" procComment="" procnote="zm" prov="CMIP6 endorsement [VolMIP]" provmip="VolMIP" sn="shortwave_heating_rate_due_to_volcanic_aerosols" title="Zonal mean shortwave heating rate due to volcanic aerosols" uid="590d64f2-9e49-11e5-803c-0d0b866b59f3" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="The diabatic heating rates due to all the processes that may change potential temperature" id="zmtnt" label="zmtnt" procComment="" procnote="zm" prov="CCMI1_monthly" provmip="CCMI" sn="tendency_of_air_temperature_due_to_diabatic_processes" title="Zonal Mean Diabatic Heating Rates" uid="00efa75221917486576896481325ce2f" unid="fd707420-3468-11e6-ba71-5404a60d96b5" units="K s-1"/>
<item description="Depth of vertical minimum concentration of dissolved oxygen gas (if two, then the shallower)" id="zo2min" label="zo2min" procComment="" procnote="" prov="CMIP5_Omon,PMIP3_Oclim,PMIP3_Omon" provmip="CMIP5" sn="depth_at_shallowest_local_minimum_in_vertical_profile_of_mole_concentration_of_dissolved_molecular_oxygen_in_sea_water" title="Depth of Oxygen Minimum Concentration" uid="d254e68c03491d17660ec44e7565f9e2" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="sum of zooplankton carbon component concentrations" id="zooc" label="zooc" procComment="" procnote="" prov="CMIP5,C4MIP,HighResMIP,LS3MIP,PMIP" provmip="CMIP5" sn="mole_concentration_of_zooplankton_expressed_as_carbon_in_sea_water" title="Zooplankton Carbon Concentration" uid="be62c57dff12142bf51fc73c70cfb050" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon  concentration from mesozooplankton (20-200 um) component alone" id="zoomeso" label="zoomeso" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="mole_concentration_of_mesozooplankton_expressed_as_carbon_in_sea_water" title="Mole Concentration of Mesozooplankton expressed as Carbon in Sea Water" uid="f5ec9258-dca5-11e5-a52e-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon  concentration from the microzooplankton (&lt;20 um) component alone" id="zoomicro" label="zoomicro" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="mole_concentration_of_microzooplankton_expressed_as_carbon_in_sea_water" title="Mole Concentration of Microzooplankton expressed as Carbon in Sea Water" uid="9a6d9f4e-dca5-11e5-a52e-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="This is the dynamic sea level, so should have zero global area mean. It should not include inverse barometer depressions from sea ice." id="zos" label="zos" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="sea_surface_height_above_geoid" title="Sea Surface Height Above Geoid" uid="7539774a693b6a99db7e174343a488bd" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Surface ocean geoid defines z=0." id="zossq" label="zossq" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="square_of_sea_surface_height_above_geoid" title="Square of Sea Surface Height Above Geoid" uid="f7658de98a4b03f947f0ffb19eeca1fd" unid="fd71de78-3468-11e6-ba71-5404a60d96b5" units="m2"/>
<item description="There is no CMIP6 request for zosga nor zossga." id="zostoga" label="zostoga" procComment="" procnote="" prov="OMIP.Omon" provmip="OMIP" sn="global_average_thermosteric_sea_level_change" title="Global Average Thermosteric Sea Level Change" uid="69c17331aebbebfc295d5b7af7f0ef8b" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Depth of aragonite saturation horizon (0 if undersaturated at all depths, &quot;missing&quot; if supersaturated at all depths; if multiple horizons exist, the shallowest should be taken)." id="zsatarag" label="zsatarag" procComment="" procnote="" prov="CMIP5,C4MIP,LS3MIP" provmip="CMIP5" sn="minimum_depth_of_aragonite_undersaturation_in_sea_water" title="Aragonite Saturation Depth" uid="f4b0302d898785a6003754fe9b097690" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Depth of calcite saturation horizon (0 if undersaturated at all depths, and missing saturated through whole depth; if two or more horizons exist, then the shallowest is reported)" id="zsatcalc" label="zsatcalc" procComment="" procnote="" prov="OMIP" provmip="OMIP" sn="minimum_depth_of_calcite_undersaturation_in_sea_water" title="Calcite Saturation Depth" uid="7324bbd4b756759ef380f305fe5856b2" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="2D monthly mean thermal tropopause calculated using WMO tropopause definition on 3d temperature" id="ztp" label="ztp" procComment="" procnote="" prov="CCMI1_monthly" provmip="CCMI" sn="tropopause_altitude" title="Tropopause Altitude" uid="228d3ad84f6db126c53ac4ae0a18a014" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="net (sum of transport in all directions) sea ice area transport through the following four passages, positive into the Arctic Ocean 1. Fram Strait = (11.5W,81.3N to (10.5E,79.6N) 2. Canadian Archipelego = (128.2W,70.6N) to (59.3W,82.1N) 3. Barents opening = (16.8E,76.5N) to (19.2E,70.2N) 4. Bering Strait = (171W,66.2N) to (166W,65N)" id="siareaacrossline" label="siareaacrossline" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_area_transport_across_line" title="Sea ice area flux through straits" uid="73097b4c-7a68-11e6-8db2-ac72891c3257" unid="fd71e6de-3468-11e6-ba71-5404a60d96b5" units="m2 s-1"/>
<item description="net (sum of transport in all directions) snow mass transport through the following four passages, positive into the Arctic Ocean 1. Fram Strait = (11.5W,81.3N to (10.5E,79.6N) 2. Canadian Archipelego = (128.2W,70.6N) to (59.3W,82.1N) 3. Barents opening = (16.8E,76.5N) to (19.2E,70.2N) 4. Bering Strait = (171W,66.2N) to (166W,65N)" id="snmassacrossline" label="snmassacrossline" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="snow_mass_transport_across_line" title="Snow mass flux through straits" uid="7309b2ce-7a68-11e6-8db2-ac72891c3257" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="net (sum of transport in all directions) sea ice area transport through the following four passages, positive into the Arctic Ocean 1. Fram Strait = (11.5W,81.3N to (10.5E,79.6N) 2. Canadian Archipelego = (128.2W,70.6N) to (59.3W,82.1N) 3. Barents opening = (16.8E,76.5N) to (19.2E,70.2N) 4. Bering Strait = (171W,66.2N) to (166W,65N)" id="simassacrossline" label="simassacrossline" procComment="" procnote="" prov="CMIP6 endorsement [SIMIP]" provmip="SIMIP" sn="sea_ice_transport_across_line" title="Sea mass area flux through straits" uid="7309e7f8-7a68-11e6-8db2-ac72891c3257" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="" id="nudgincsm" label="nudgincsm" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="nudging_increment_in_water_content_of_soil_layer" title="Nudging Increment of Water in Soil Mositure" uid="01c8c41a-a0d8-11e6-bc63-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="nudgincswe" label="nudgincswe" procComment="" procnote="" prov="CMIP6 endorsement [LS3MIP]" provmip="LS3MIP" sn="nudging_increment_in_surface_snow_and_ice_amount" title="Nudging Increment of Water in Snow" uid="0abbdddc-a0d8-11e6-bc63-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="solbnd" label="solbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="band_solar_insolation" title="Top-of-Atmosphere Solar Insolation for each band" uid="af7306dc-a0da-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="aeroptbnd" label="aeroptbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="atmosphere_absorption_optical_thickness_due_to_ambient_aerosol_particles" title="Aerosol level extinction optical depth for each band" uid="afd8ba4a-a0da-11e6-bc63-ac72891c3257" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1"/>
<item description="" id="aerssabnd" label="aerssabnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="single_scattering_albedo_in_air_due_to_ambient_aerosol_particles" title="Aerosol level single-scattering albedo for each band" uid="b02eb8b4-a0da-11e6-bc63-ac72891c3257" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1"/>
<item description="" id="aerasymbnd" label="aerasymbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="band_aerosol_asymmetry_parameter" title="Aerosol level asymmetry parameter for each band" uid="b089240c-a0da-11e6-bc63-ac72891c3257" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1"/>
<item description="Calculated in the absence of aerosols and clouds, following Ghan (2013, ACP). This requires a double-call in the radiation code with precisely the same meteorology." id="rsutcsafbnd" label="rsutcsafbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="band_toa_outgoing_shortwave_flux_assuming_clean_clear_sky" title="TOA Outgoing Clear-Sky, Aerosol-Free Shortwave Radiation in Bands" uid="3819950e-a0dc-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated in the absence of aerosols and clouds, following Ghan (2013, ACP). This requires a double-call in the radiation code with precisely the same meteorology." id="rsdscsafbnd" label="rsdscsafbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="surface_downwelling_shortwave_flux_in_air_assuming_clean_clear_sky" title="Surface Downwelling Clear-Sky, Aerosol-Free Shortwave Radiation in Bands" uid="386fb33a-a0dc-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated in the absence of aerosols and clouds, following Ghan (ACP, 2013). This requires a double-call in the radiation code with precisely the same meteorology." id="rsuscsafbnd" label="rsuscsafbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="surface_upwelling_shortwave_flux_in_air_assuming_clean_clear_sky" title="Surface Upwelling Clear-Sky, Aerosol-Free Shortwave Radiation in Bands" uid="38bd2912-a0dc-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated with aerosols but without clouds. This is a standard clear-sky calculation" id="rsutcsbnd" label="rsutcsbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="toa_outgoing_shortwave_flux_assuming_clear_sky" title="TOA Outgoing Clear-Sky Shortwave Radiation for each band" uid="3912bdc8-a0dc-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated with aerosols but without clouds. This is a standard clear-sky calculation" id="rsdscsbnd" label="rsdscsbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="surface_downwelling_shortwave_flux_in_air_assuming_clear_sky" title="Surface Downwelling Clear-Sky Shortwave Radiation for each band" uid="398683d4-a0dc-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated with aerosols but without clouds. This is a standard clear-sky calculation" id="rsuscsbnd" label="rsuscsbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="surface_upwelling_shortwave_flux_in_air_assuming_clear_sky" title="Surface Upwelling Clear-Sky Shortwave Radiation for each band" uid="39d8c78e-a0dc-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="The angle between the line of sight to the sun and the local vertical" id="sza" label="sza" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="solar_zenith_angle" title="Solar Zenith Angle" uid="9c35e2ac-a0de-11e6-bc63-ac72891c3257" unid="8bce5e38-a59a-11e6-acf8-5404a60d96b5" units="degree"/>
<item description="Calculated in the absence of aerosols and clouds. This requires a double-call in the radiation code with precisely the same meteorology." id="rsucsaf" label="rsucsaf" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="upwelling_shortwave_flux_assuming_clean_clear_sky" title="Upwelling Clean-Clear-Sky Shortwave Radiation at each level" uid="ea313ee8-a0de-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated in the absence of aerosols and clouds. This requires a double-call in the radiation code with precisely the same meteorology." id="rsdcsaf" label="rsdcsaf" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="downwelling_shortwave_flux_assuming_clean_clear_sky" title="Downwelling Clean-Clear-Sky Shortwave Radiation at each level" uid="ea83846e-a0de-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated in the absence of aerosols and clouds. This requires a double-call in the radiation code with precisely the same meteorology." id="rsucsafbnd" label="rsucsafbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="band_upwelling_shortwave_flux_assuming_clean_clear_sky" title="Upwelling Clear-Sky, Aerosol-Free Shortwave Radiation in Bands" uid="ead5a730-a0de-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated in the absence of aerosols and clouds. This requires a double-call in the radiation code with precisely the same meteorology." id="rsdcsafbnd" label="rsdcsafbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="band_downwelling_shortwave_flux_assuming_clean_clear_sky" title="Downwelling Clear-Sky, Aerosol-Free, Shortwave Radiation in Bands" uid="eb28c564-a0de-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated with aerosols but without clouds. This is a standard clear-sky calculation" id="rsucsbnd" label="rsucsbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="band_upwelling_shortwave_flux_assuming_clear_sky" title="Upwelling Clear-Sky Shortwave Radiation at each level for each band" uid="eb85339e-a0de-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Calculated with aerosols but without clouds. This is a standard clear-sky calculation" id="rsdcsbnd" label="rsdcsbnd" procComment="" procnote="" prov="CMIP6 endorsement [RFMIP]" provmip="RFMIP" sn="band_downwelling_shortwave_flux_assuming_clear_sky" title="Downwelling Clear-Sky Shortwave Radiation at each level for each band" uid="ebd63780-a0de-11e6-bc63-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="cVegShrub" label="cVegShrub" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="vegetation_carbon_content" title="Carbon mass in vegetation on shrub tiles" uid="84f0c19a-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Total RH of grass in the gridcell" id="rhGrass" label="rhGrass" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="heterotrophic_respiration_carbon_flux" title="heterotrophic respiration on grass tiles" uid="84f0beac-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total RH of trees in the gridcell" id="rhTree" label="rhTree" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="heterotrophic_respiration_carbon_flux" title="heterotrophic respiration on tree tiles" uid="84f1117c-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total NPP of shrubs in the gridcell" id="nppShrub" label="nppShrub" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="net_primary_productivity_of_biomass_expressed_as_carbon" title="net primary production on Shrub tiles" uid="84f0f052-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Percentage of entire grid cell covered by C4 pasture" id="pastureFracC4" label="pastureFracC4" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="area_fraction" title="C4 Pasture Area Percentage" uid="84eff3c8-acb7-11e6-b5ee-ac72891c3257" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Total RH of shrubs in the gridcell" id="rhShrub" label="rhShrub" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="heterotrophic_respiration_carbon_flux" title="heterotrophic respiration on Shrub tiles" uid="84f0f354-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="relative to total land area of a grid cell, not relative to agricultural area" id="fNfert" label="fNfert" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="fertiliser_of_nitrogen_onto_land" title="total N added for cropland fertilisation (artificial and manure)" uid="84f09af8-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="cVegGrass" label="cVegGrass" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="vegetation_carbon_content" title="Carbon mass in vegetation on grass tiles" uid="84f0ac28-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="added for completeness with npp_root" id="nppStem" label="nppStem" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="net_primary_production_allocated_to_stem" title="net primary production allcoated to stem" uid="84f09f30-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total RA of shrubs in the gridcell" id="raShrub" label="raShrub" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="plant_respiration_carbon_flux" title="autotrophic respiration on Shrub tiles" uid="84f108a8-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total RA of grass in the gridcell" id="raGrass" label="raGrass" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="plant_respiration_carbon_flux" title="autotrophic respiration on grass tiles" uid="84f105a6-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="cLitterGrass" label="cLitterGrass" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="litter_carbon_content" title="Carbon mass in litter on grass tiles" uid="84f0f62e-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="carbon from additional zooplankton component concentrations alone (e.g. Micro, meso).  Since the models all have different numbers of components, this variable has been included to provide a check for intercomparison between models since some phytoplankton groups are supersets." id="zoomisc" label="zoomisc" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="mole_concentration_of_miscellaneous_zooplankton_expressed_as_carbon_in_sea_water" title="Other Zooplankton Carbon Concentration" uid="84f0d766-acb7-11e6-b5ee-ac72891c3257" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Total NPP of trees in the gridcell" id="nppTree" label="nppTree" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="net_primary_productivity_of_biomass_expressed_as_carbon" title="net primary production on tree tiles" uid="84f10e7a-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total NPP of grass in the gridcell" id="nppGrass" label="nppGrass" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="net_primary_productivity_of_biomass_expressed_as_carbon" title="net primary production on grass tiles" uid="84f0b8d0-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="will require some careful definition to make sure we capture everything - any human activity that releases nitrogen from land  instead of into product pool goes here. E.g. Deforestation fire, harvest assumed to decompose straight away, grazing..." id="fNAnthDisturb" label="fNAnthDisturb" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="nitrogen_flux_into_atmos_due_to_direct_human_disturbance" title="nitrogen mass flux out of land due to any human activity" uid="84f0ea44-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="cSoilGrass" label="cSoilGrass" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="soil_carbon_content" title="Carbon mass in soil on grass tiles" uid="84f0d158-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Total GPP of shrubs in the gridcell" id="gppShrub" label="gppShrub" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="gross_primary_productivity_of_biomass_expressed_as_carbon" title="gross primary production on Shrub tiles" uid="84f0c47e-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="vegHeightPasture" label="vegHeightPasture" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="canopy_height" title="Vegetation height averaged over the pasture fraction of a grid cell." uid="84f0430a-acb7-11e6-b5ee-ac72891c3257" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Percentage of entire grid cell covered by C3 pasture" id="pastureFracC3" label="pastureFracC3" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="area_fraction" title="C3 Pasture Area Percentage" uid="84f091c0-acb7-11e6-b5ee-ac72891c3257" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="added for completeness with npp_root" id="nppOther" label="nppOther" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="net_primary_production_allocated_to_other" title="net primary production allcoated to other pools (not leaves stem or roots)" uid="84f0bbbe-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="cSoilTree" label="cSoilTree" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="soil_carbon_content" title="Carbon mass in soil on tree tiles" uid="84f0e418-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="needed to separate changing vegetation C turnover times resulting from changing allocation versus changing mortality" id="fVegSoilSenescence" label="fVegSoilSenescence" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="senescence_vegtosoil_carbon_flux" title="Total Carbon Mass Flux from Vegetation to Soil as a result of leaf, branch, and root senescence" uid="84f0ddec-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="for models with vertically discretised soil carbon, report total soil carbon for each level" id="cSoilLevels" label="cSoilLevels" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="soil_carbon_content_on_model_levels" title="Carbon mass in each model soil level (summed over all soil carbon pools in that level)" uid="84f0a8f4-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="cLitterTree" label="cLitterTree" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="litter_carbon_content" title="Carbon mass in litter on tree tiles" uid="84f0a5d4-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="cSoilShrub" label="cSoilShrub" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="soil_carbon_content" title="Carbon mass in soil on shrub tiles" uid="84f10b8c-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="needed to separate changing vegetation C turnover times resulting from changing allocation versus changing mortality" id="fVegSoilMortality" label="fVegSoilMortality" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="mortality_vegtosoil_carbon_flux" title="Total Carbon Mass Flux from Vegetation to Soil as a result of mortality" uid="84ef402c-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Report missing data over ocean grid cells. For fractional land report value averaged over the land fraction." id="cSoilAbove1m" label="cSoilAbove1m" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="soil_carbon_content_above_1m_depth" title="Carbon mass in soil pool above 1m depth" uid="84f0f91c-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="defined as 1/(turnover time) for each soil pool. Use the same pools reported under cSoilPools" id="tSoilPools" label="tSoilPools" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="soil_carbon_turnover_rate_by_pool" title="turnover rate of each model soil carbon pool" uid="84f1146a-acb7-11e6-b5ee-ac72891c3257" unid="fd7288c8-3468-11e6-ba71-5404a60d96b5" units="s-1"/>
<item description="added for completeness with Ra_root" id="raOther" label="raOther" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="autotrophic_respiration" title="Total respiration from other pools (not leaves stem or roots)" uid="84f0b2cc-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="cLitterShrub" label="cLitterShrub" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="litter_carbon_content" title="Carbon mass in litter on shrub tiles" uid="84efa3fa-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="for models with multiple soil carbon pools, report each pool here. If models also have vertical discretaisation these should be aggregated" id="cSoilPools" label="cSoilPools" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="soil_carbon_content_by_pool" title="Carbon mass in each model soil pool (summed over vertical levels)" uid="84f0fc3c-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="cVegTree" label="cVegTree" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="vegetation_carbon_content" title="Carbon mass in vegetation on tree tiles" uid="84f0ff48-acb7-11e6-b5ee-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="Total GPP of grass in the gridcell" id="gppGrass" label="gppGrass" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="gross_primary_productivity_of_biomass_expressed_as_carbon" title="gross primary production on grass tiles" uid="84f0afac-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total GPP of trees in the gridcell" id="gppTree" label="gppTree" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="gross_primary_productivity_of_biomass_expressed_as_carbon" title="gross primary production on tree tiles" uid="84f10236-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total RA of trees in the gridcell" id="raTree" label="raTree" procComment="" procnote="" prov="CMIP6 endorsement [C4MIP]" provmip="C4MIP" sn="plant_respiration_carbon_flux" title="autotrophic respiration on tree tiles" uid="84f0b5e2-acb7-11e6-b5ee-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Total family (the sum of all appropriate species in the model); list the species in the netCDF header, e.g. NOy = N + NO + NO2 + NO3 + HNO3 + 2N2O5 + HNO4 + ClONO2 + BrONO2 Definition: Total reactive nitrogen; usually includes atomic nitrogen (N), nitric oxide (NO), NO2, nitrogen trioxide (NO3), dinitrogen radical (N2O5), nitric acid (HNO3), peroxynitric acid (HNO4), BrONO2, ClONO2 add comment attribute with detailed description about how the model calculates these fields" id="noy" label="noy" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="mole_fraction_of_noy_expressed_as_nitrogen_in_air" title="Total reactive nitrogen volume mixing ratio" uid="e29fbc42-b095-11e6-aab6-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="sossq" label="sossq" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="square_of_sea_surface_salinity" title="Square of Sea Surface Salinity" uid="d4eb6956-b00f-11e6-a1f0-ac72891c3257" unid="fd70094a-3468-11e6-ba71-5404a60d96b5" units="1e-06"/>
<item description="Total family (the sum of all appropriate species in the model) ; list the species in the netCDF header, e.g. Bry = Br + BrO + HOBr + HBr + BrONO2 + BrCl Definition: Total inorganic bromine (e.g., HBr and inorganic bromine oxides and radicals (e.g., BrO, atomic bromine (Br), bromine nitrate (BrONO2)) resulting from degradation of bromine-containing organicsource gases (halons, methyl bromide, VSLS), and natural inorganic bromine sources (e.g., volcanoes, sea salt, and other aerosols) add comment attribute with detailed description about how the model calculates these fields" id="bry" label="bry" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="mole_fraction_of_inorganic_bromine_in_air" title="Total inorganic bromine volume mixing ratio" uid="96a44ea6-b096-11e6-aab6-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="" id="ho2" label="ho2" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="mole_fraction_of_hydroperoxyl_radical_in_air" title="HO2 volume mixing ratio" uid="96f51020-b096-11e6-aab6-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Sigma T is potential density referenced to ocean surface." id="mlotstmax" label="mlotstmax" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="ocean_mixed_layer_thickness_defined_by_sigma_t" title="Maximum Ocean Mixed Layer Thickness Defined by Sigma T" uid="d4ee907c-b00f-11e6-a1f0-ac72891c3257" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="" id="sosga" label="sosga" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="sea_surface_salinity" title="Global Average Sea Surface Salinity" uid="d4ee4806-b00f-11e6-a1f0-ac72891c3257" unid="fd6fda9c-3468-11e6-ba71-5404a60d96b5" units="0.001"/>
<item description="Sigma T is potential density referenced to ocean surface." id="mlotstmin" label="mlotstmin" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="ocean_mixed_layer_thickness_defined_by_sigma_t" title="Minimum Ocean Mixed Layer Thickness Defined by Sigma T" uid="d4ee9e5a-b00f-11e6-a1f0-ac72891c3257" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="" id="obvfsq" label="obvfsq" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="square_of_brunt_vaisala_frequency_in_sea_water" title="Square of Brunt Vaisala Frequency in Sea Water" uid="d4eeac2e-b00f-11e6-a1f0-ac72891c3257" unid="88f99ba0-b0a3-11e6-aab6-ac72891c3257" units="s-2"/>
<item description="Total family (the sum of all appropriate species in the model) ; list the species in the netCDF header, e.g. Cly = HCl + ClONO2 + HOCl + ClO + Cl + 2*Cl2O2 +2Cl2 + OClO + BrCl Definition: Total inorganic stratospheric chlorine (e.g., HCl, ClO) resulting from degradation of chlorine-containing source gases (CFCs, HCFCs, VSLS), and natural inorganic chlorine sources (e.g., sea salt and other aerosols) add comment attribute with detailed description about how the model calculates these fields" id="cly" label="cly" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="mole_fraction_of_inorganic_chlorine_in_air" title="Total inorganic chlorine volume mixing ratio" uid="afef6490-b096-11e6-aab6-ac72891c3257" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Please express &quot;X_area_fraction&quot; as the percentage of horizontal area occupied by X." id="sftlf" label="sftlf" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="land_area_fraction" title="Percentage of the grid  cell occupied by land" uid="b0444e42-b096-11e6-aab6-ac72891c3257" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="maximum near-surface (usually, 2 meter) air temperature (add cell_method attribute &quot;time: max&quot;)" id="tasmaxCrop" label="tasmaxCrop" procComment="" procnote="nsrf max" prov="VIACSAB" provmip="VIACSAB" sn="air_temperature" title="Daily Maximum Near-Surface Air Temperature over Crop Tile" uid="170ff384-b622-11e6-bbe2-ac72891c3257" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="minimum near-surface (usually, 2 meter) air temperature (add cell_method attribute &quot;time: min&quot;)" id="tasminCrop" label="tasminCrop" procComment="" procnote="nsrf min" prov="VIACSAB" provmip="VIACSAB" sn="air_temperature" title="Daily Minimum Near-Surface Air Temperature over Crop Tile" uid="1758307c-b622-11e6-bbe2-ac72891c3257" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="minimum near-surface (usually, 2 meter) relative humidity (add cell_method attribute &quot;time: min&quot;)" id="hursminCrop" label="hursminCrop" procComment="" procnote="nsrf min" prov="VIACSAB" provmip="VIACSAB" sn="relative_humidity" title="Daily Minimum Near-Surface Relative Humidity over Crop Tile" uid="bf56baca-c14c-11e6-bb6a-ac72891c3257" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="includes both liquid and solid phases" id="prCrop" label="prCrop" procComment="" procnote="" prov="VIACSAB" provmip="VIACSAB" sn="precipitation_flux" title="Precipitation over Crop Tile" uid="81f029ba-b63d-11e6-98cb-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). &quot;basal&quot; means the lower boundary of the atmosphere" id="zvelbase" label="zvelbase" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_basal_upward_velocity" title="Upward-component of land ice basal velocity" uid="14278550-b574-11e6-9ed4-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;Upward&quot; indicates a vector component which is positive when directed upward (negative downward). The surface called &quot;surface&quot; means the lower boundary of the atmosphere" id="zvelsurf" label="zvelsurf" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_surface_upward_velocity" title="Upward component of land ice surface velocity" uid="142782e4-b574-11e6-9ed4-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="Full column sum of density*cell thickness*conservative temperature. If the model is Boussinesq, then use Boussinesq reference density for the density factor." id="ocontempmint" label="ocontempmint" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="integral_wrt_depth_of_product_of_sea_water_density_and_conservative_temperature" title="integral wrt depth of product of sea water density and conservative temperature" uid="117c89cc-b574-11e6-9ed4-5404a60d96b5" unid="fd70e27a-3468-11e6-ba71-5404a60d96b5" units="degC kg m-2"/>
<item description="Upper boundary temperature that is used to force ice sheet models. It is the temperature at the base of the snowpack models, and does not vary with seasons. Report surface temperature of ice sheet where snow thickness is zero" id="litemptop" label="litemptop" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="temperature_at_top_of_ice_sheet_model" title="Temperature at top of ice sheet model" uid="14277100-b574-11e6-9ed4-5404a60d96b5" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. The surface called &quot;surface&quot; means the lower boundary of the atmosphere.'" id="yvelsurf" label="yvelsurf" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_surface_y_velocity" title="Y-component of land ice surface velocity" uid="1427806e-b574-11e6-9ed4-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. The surface called &quot;surface&quot; means the lower boundary of the atmosphere." id="xvelsurf" label="xvelsurf" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_surface_x_velocity" title="X-component of land ice surface velocity" uid="1427742a-b574-11e6-9ed4-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="The vertical mean land ice velocity is the average from the bedrock to the surface of the ice" id="yvelmean" label="yvelmean" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_vertical_mean_y_velocity" title="Y-component of land ice vertical mean velocity" uid="14277916-b574-11e6-9ed4-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="The vertical mean land ice velocity is the average from the bedrock to the surface of the ice" id="xvelmean" label="xvelmean" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_vertical_mean_x_velocity" title="X-component of land ice vertical mean velocity" uid="14277e02-b574-11e6-9ed4-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;y&quot; indicates a vector component along the grid y-axis, positive with increasing y. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. &quot;basal&quot; means the lower boundary of the land ice." id="yvelbase" label="yvelbase" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_basal_y_velocity" title="Y-component of land ice basal velocity" uid="142776aa-b574-11e6-9ed4-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="A velocity is a vector quantity. &quot;x&quot; indicates a vector component along the grid x-axis, positive with increasing x. &quot;Land ice&quot; means glaciers, ice-caps and ice-sheets resting on bedrock and also includes ice-shelves. &quot;basal&quot; means the lower boundary of the land ice." id="xvelbase" label="xvelbase" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_basal_x_velocity" title="X-component of land ice basal velocity" uid="14277b8c-b574-11e6-9ed4-5404a60d96b5" unid="fd71a7c8-3468-11e6-ba71-5404a60d96b5" units="m s-1"/>
<item description="" id="lon" label="lon" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="longitude" title="longitude" uid="21ef5e4c-b894-11e6-a189-5404a60d96b5" unid="fd70e900-3468-11e6-ba71-5404a60d96b5" units="degrees_east"/>
<item description="" id="lat" label="lat" procComment="" procnote="" prov="CMIP5_cf3hr" provmip="CMIP5" sn="latitude" title="latitude" uid="2260e24c-b894-11e6-a189-5404a60d96b5" unid="fd70ef7c-3468-11e6-ba71-5404a60d96b5" units="degrees_north"/>
<item description="" id="nh50" label="nh50" procComment="" procnote="" prov="CMIP6 [AerChemMIP]" provmip="AerChemMIP" sn="mole_fraction_of_artificial_tracer_with_fixed_lifetime_in_air" title="Fixed surface layer mixing ratio over 30o-50oN (100ppbv), uniform fixed 50-day exponential decay." uid="97bf948c-b896-11e6-a189-5404a60d96b5" unid="fd724b4c-3468-11e6-ba71-5404a60d96b5" units="mol mol-1"/>
<item description="Fixed surface layer mixing ratio over 30o-50oN (0 ppbv), uniform fixed source (at all levels) everywhere else (source is unspecified but must be constant in space and time and documented). Note that the source could be 1yr/yr, so the tracer concentration provides mean age in years. For method using linearly increasing tracer include a method attribute: &quot;linearly increasing tracer&quot;For method using uniform source (1yr/yr) include a method attribute: &quot;uniform source&quot;" id="aoanh" label="aoanh" procComment="" procnote="" prov="CMIP6 [AerChemMIP]" provmip="AerChemMIP" sn="tracer_lifetime" title="Northern Hemisphere Tracer Lifetime" uid="98114e26-b896-11e6-a189-5404a60d96b5" unid="fd729ae8-3468-11e6-ba71-5404a60d96b5" units="yr"/>
<item description="anthropogenic pools associated with land use tiles into which harvests and cleared carbon are deposited before release into atmosphere PLUS any remaining anthropogenic pools that may be associated with lands which were converted into land use tiles during reported period . Does NOT include residue which is deposited into soil or litter; end of year values (not annual mean)" id="cProductLut" label="cProductLut" procComment="" procnote="" prov="CMIP6 [LUMIP]" provmip="LUMIP" sn="carbon_content_in_wood_and_agricultural_products" title="wood and agricultural product pool carbon associated with land use tiles; examples of products include paper, cardboard, timber for construction, and crop harvest for food or fuel." uid="3f306e18-b89b-11e6-be04-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="If  a model has explicit anthropogenic product pools by land use tile" id="fProductDecompLut" label="fProductDecompLut" procComment="" procnote="" prov="CMIP6 [LUMIP]" provmip="LUMIP" sn="tendency_of_atmospheric_mass_content_of_carbon_dioxide_expressed_as_carbon_due_to_emission_from_wood_and_agricultural_product_pool" title="flux from wood and agricultural product pools on land use tile into atmosphere" uid="3f3074ee-b89b-11e6-be04-ac72891c3257" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="This annual mean flux refers to the transfer of carbon primarily through harvesting land use into anthropogenic product pools, e.g.,deforestation or wood harvestingfrom primary or secondary lands, food harvesting on croplands, harvesting (grazing) by animals on pastures." id="fLulccProductLut" label="fLulccProductLut" procComment="" procnote="" prov="CMIP6 [LUMIP]" provmip="LUMIP" sn="carbon_mass_flux_into_wood_and_agricultural_product_pools_due_to_anthropogenic_land_use_or_land_cover_change" title="carbon harvested due to land-use or land-cover change process that enters anthropogenic product pools on tile" uid="3f30714c-b89b-11e6-be04-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="This annual mean flux refers to the transfer of carbon into soil or litter pools due to any land use or land-cover change activities" id="fLulccResidueLut" label="fLulccResidueLut" procComment="" procnote="" prov="CMIP6 [LUMIP]" provmip="LUMIP" sn="carbon_mass_flux_into_soil_and_litter_due_to_anthropogenic_land_use_or_land_cover_change" title="carbon transferred to soil or litter pools due to land-use or land-cover change processes on tile" uid="3f3067e2-b89b-11e6-be04-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="" id="fahLut" label="fahLut" procComment="" procnote="" prov="CMIP6 [LUMIP]" provmip="LUMIP" sn="surface_upward_heat_flux_due_to_anthropogenic_energy_consumption" title="Anthropogenic heat flux generated from non-renewable human primary energy consumption, including energy use by vehicles, commercial and residential buildings, industry, and power plants.  Primary energy refers to energy in natural resources, fossil and nonfossil, before conversion into other forms, such as electricity." uid="3f30557c-b89b-11e6-be04-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="irrLut" label="irrLut" procComment="" procnote="" prov="CMIP6 [LUMIP]" provmip="LUMIP" sn="surface_downward_water_flux_due_to_irrigation" title="Irrigation flux including any irrigation for crops, trees, pasture, or urban lawns" uid="3f305b94-b89b-11e6-be04-ac72891c3257" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="This annual mean flux refers to the transfer of carbon directly to the atmosphere due to any land-use or land-cover change activities.  Include carbon transferred due to deforestation or agricultural directly into atsmophere, and  emissions form anthropogenic pools into atmosphere" id="fLulccAtmLut" label="fLulccAtmLut" procComment="" procnote="" prov="CMIP6 [LUMIP]" provmip="LUMIP" sn="surface_upward_mass_flux_of_carbon_dioxide_expressed_as_carbon_direct_to_atmosphere_due_to_anthropogenic_land_use_land_cover_change" title="carbon transferred directly to atmosphere due to any land-use or land-cover change activities including deforestation or agricultural fire" uid="3f3051c6-b89b-11e6-be04-ac72891c3257" unid="fd716830-3468-11e6-ba71-5404a60d96b5" units="kg s-1"/>
<item description="" id="nLitterSurf" label="nLitterSurf" procComment="" procnote="" prov="CMIP6 [C4MIP]" provmip="C4MIP" sn="surface_litter_nitrogen_content" title="Nitrogen Mass in above ground litter (non CWD)" uid="71c982aa-b8ab-11e6-97ab-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="" id="nLitterSubSurf" label="nLitterSubSurf" procComment="" procnote="" prov="CMIP6 [C4MIP]" provmip="C4MIP" sn="subsurface_litter_nitrogen_content" title="Nitrogen Mass in below ground litter (non CWD)" uid="71c9768e-b8ab-11e6-97ab-ac72891c3257" unid="fd711ac4-3468-11e6-ba71-5404a60d96b5" units="kg m-2"/>
<item description="near-surface (usually, 2 meter) air temperature" id="tasIs" label="tasIs" procComment="" procnote="nsrf" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="air_temperature" title="Ice Sheet Near-Surface Air Temperature" uid="53823c4a-bf01-11e6-a554-ac72891c3257" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Temperature of the lower boundary of the atmosphere" id="tsIs" label="tsIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_temperature" title="Ice Sheet Surface Temperature" uid="5382419a-bf01-11e6-a554-ac72891c3257" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="This temperature is averaged over all the snow in the grid cell that rests on land or land ice.  When computing the time-mean here, the time samples, weighted by the mass of snow on the land portion of the grid cell, are accumulated and then divided by the sum of the weights.   Reported as missing in regions free of snow on land." id="tsnIs.1" label="tsnIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="temperature_in_surface_snow" title="Ice Sheet Snow Internal Temperature" uid="5382451e-bf01-11e6-a554-ac72891c3257" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Upper boundary temperature that is used to force ice sheet models. It is the temperature at the base of the snowpack models, and does not vary with seasons. Report surface temperature of ice sheet where snow thickness is zero" id="litemptopIs" label="litemptopIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="temperature_at_top_of_ice_sheet_model" title="Ice Sheet Temperature at top of ice sheet model" uid="538248ca-bf01-11e6-a554-ac72891c3257" unid="fd70554e-3468-11e6-ba71-5404a60d96b5" units="K"/>
<item description="Specific mass balance means the net rate at which ice is added per unit area at the land ice surface. Computed as the total surface mass balance on the land ice portion of the grid cell divided by land ice area in the grid cell. A negative value means loss of ice" id="acabfIs" label="acabfIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_surface_specific_mass_balance_flux" title="Ice Sheet Surface Mass Balance flux" uid="53824c12-bf01-11e6-a554-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="at surface; includes precipitation of all forms of water in the solid phase" id="prsnIs" label="prsnIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="snowfall_flux" title="Ice Sheet Snowfall Flux" uid="53825248-bf01-11e6-a554-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Rainfall rate over the ice sheet" id="prraIs" label="prraIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="rainfall_flux" title="Ice Sheet Rainfall rate" uid="5382550e-bf01-11e6-a554-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The snow and ice sublimation flux is the loss of snow and ice mass per unit area from the surface resulting from their direct conversion to water vapor that enters the atmosphere." id="sblIs.1" label="sblIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_snow_and_ice_sublimation_flux" title="Ice Sheet Surface Snow and Ice Sublimation Flux" uid="53825806-bf01-11e6-a554-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Loss of snow and ice mass resulting from surface melting. Computed as the total surface melt on the land ice portion of the grid cell divided by land ice area in the grid cell." id="snicemIs" label="snicemIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_snow_and_ice_melt_flux" title="Ice Sheet Surface Snow and Ice Melt Flux" uid="53825b08-bf01-11e6-a554-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The total surface snow melt rate on the land portion of the grid cell divided by the land area in the grid cell; report as zero for snow-free land regions and missing where there is no land." id="snmIs.1" label="snmIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_snow_melt_flux" title="Ice Sheet Surface Snow Melt" uid="53825e00-bf01-11e6-a554-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Loss of ice mass resulting from surface melting. Computed as the total surface melt water on the land ice portion of the grid cell divided by land ice area in the grid cell." id="icemIs" label="icemIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="land_ice_surface_melt_flux" title="Ice Sheet Surface Ice Melt Flux" uid="53826102-bf01-11e6-a554-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Mass flux of surface meltwater which refreezes within the snowpack. Computed as the total refreezing on the land ice portion of the grid cell divided by land ice area in the grid cell." id="snicefreezIs" label="snicefreezIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_snow_and_ice_refreezing_flux" title="Ice Sheet Surface Snow and Ice Refreeze Flux" uid="53826404-bf01-11e6-a554-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="The total run-off (including drainage through the base of the soil model) per unit area leaving the land portion of the grid cell." id="mrroIs" label="mrroIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="runoff_flux" title="Ice Sheet Total Run-off" uid="538266e8-bf01-11e6-a554-ac72891c3257" unid="fd71526e-3468-11e6-ba71-5404a60d96b5" units="kg m-2 s-1"/>
<item description="Percentage of each grid cell that is occupied by snow that rests on land portion of cell." id="sncIs.1" label="sncIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_snow_area_fraction" title="Ice Sheet Snow Cover Percentage" uid="53826ae4-bf01-11e6-a554-ac72891c3257" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="The surface called &quot;surface&quot; means the lower boundary of the atmosphere. Altitude is the (geometric) height above the geoid, which is the reference geopotential surface. The geoid is similar to mean sea level." id="orogIs" label="orogIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_altitude" title="Ice Sheet Surface Altitude" uid="5382769c-bf01-11e6-a554-ac72891c3257" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="Upward latent heat flux from the ice sheet surface" id="hflsIs" label="hflsIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_upward_latent_heat_flux" title="Ice Sheet Surface Upward Latent Heat Flux" uid="538279b2-bf01-11e6-a554-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Upward sensible heat flux from the ice sheet surface" id="hfssIs" label="hfssIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_upward_sensible_heat_flux" title="Ice Sheet Surface Upward Sensible Heat Flux" uid="53827c8c-bf01-11e6-a554-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Surface solar irradiance for UV calculations" id="rsdsIs" label="rsdsIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_downwelling_shortwave_flux_in_air" title="Ice Sheet Surface Downwelling Shortwave Radiation" uid="53827f52-bf01-11e6-a554-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rsusIs" label="rsusIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_upwelling_shortwave_flux_in_air" title="Ice Sheet Surface Upwelling Shortwave Radiation" uid="53828236-bf01-11e6-a554-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rldsIs" label="rldsIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_downwelling_longwave_flux_in_air" title="Ice Sheet Surface Downwelling Longwave Radiation" uid="538284f2-bf01-11e6-a554-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="rlusIs" label="rlusIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_upwelling_longwave_flux_in_air" title="Ice Sheet Surface Upwelling Longwave Radiation" uid="538287c2-bf01-11e6-a554-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Mean surface albedo of entire land ice covered part of the grid cell" id="lialbIs" label="lialbIs" procComment="" procnote="" prov="CMIP6 [ISMIP6]" provmip="ISMIP6" sn="surface_albedo" title="Ice Sheet Ice or Snow Albedo" uid="53828a92-bf01-11e6-a554-ac72891c3257" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="sum of particulate aragonite components (e.g. Phytoplankton, Detrital, etc.)" id="aragos" label="aragos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_aragonite_epressed_as_carbon_in_sea_water" title="Surface Aragonite Concentration" uid="c96cd366-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of bacterial carbon component concentrations" id="baccos" label="baccos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_bacteria_expressed_as_carbon_in_sea_water" title="Surface Bacterial Carbon Concentration" uid="c96caa26-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of particulate organic iron component concentrations" id="bfeos" label="bfeos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_particulate_organic_matter_expressed_as_iron_in_sea_water" title="Surface Mole Concentration of Particulate Organic Matter expressed as Iron in sea water" uid="c96e6d66-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Aerosol  Backscatter @550nm @ 180 degrees, computed from extinction and lidar ratio" id="bs550aer" label="bs550aer" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="volume_lidar_backwards_scattering_coefficient_in_air_due_to_ambient_aerosol_particles" title="Aerosol backscatter coefficient" uid="c9a77f2a-c5f0-11e6-ac20-5404a60d96b5" unid="472d53fe-c62b-11e6-9482-ac72891c3257" units="m-1 sr-1"/>
<item description="sum of particulate silica component concentrations" id="bsios" label="bsios" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_particulate_matter_expressed_as_silicon_in_sea_water" title="Surface Mole Concentration of Particulate Organic Matter expressed as Silicon in sea water" uid="c96e7b08-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of particulate calcite component concentrations (e.g. Phytoplankton, Detrital, etc.)" id="calcos" label="calcos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_calcite_epressed_as_carbon_in_sea_water" title="Surface Calcite Concentration" uid="c96cc5b0-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="chlorophyll concentration from the calcite-producing phytoplankton component alone" id="chlcalcos" label="chlcalcos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="mass_concentration_of_calcareous_phytoplankton_expressed_as_chlorophyll_in_sea_water" title="Surface Mass Concentration of Calcareous Phytoplankton expressed as Chlorophyll in sea water" uid="c96e2752-c5f0-11e6-ac20-5404a60d96b5" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="chlorophyll from diatom phytoplankton component concentration alone" id="chldiatos" label="chldiatos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="mass_concentration_of_diatoms_expressed_as_chlorophyll_in_sea_water" title="Surface Mass Concentration of Diatoms expressed as Chlorophyll in sea water" uid="c96e0c22-c5f0-11e6-ac20-5404a60d96b5" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="chlorophyll concentration from the diazotrophic phytoplankton component alone" id="chldiazos" label="chldiazos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="mass_concentration_of_diazotrophs_expressed_as_chlorophyll_in_sea_water" title="Surface Mass Concentration of Diazotrophs expressed as Chlorophyll in sea water" uid="c96e19b0-c5f0-11e6-ac20-5404a60d96b5" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="chlorophyll from additional phytoplankton component concentrations alone" id="chlmiscos" label="chlmiscos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="mass_concentration_of_miscellaneous_phytoplankton_expressed_as_chlorophyll_in_sea_water" title="Surface Mass Concentration of Other Phytoplankton expressed as Chlorophyll in sea water" uid="c96e439a-c5f0-11e6-ac20-5404a60d96b5" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="chlorophyll concentration from the picophytoplankton (&lt;2 um) component alone" id="chlpicoos" label="chlpicoos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="mass_concentration_of_picophytoplankton_expressed_as_chlorophyll_in_sea_water" title="Surface Mass Concentration of Picophytoplankton expressed as Chlorophyll in sea water" uid="c96e35a8-c5f0-11e6-ac20-5404a60d96b5" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="" id="co3abio" label="co3abio" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water_due_to_abiotic_component" title="Abiotic Carbonate ion Concentration" uid="c9794182-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="co3abioos" label="co3abioos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water_due_to_abiotic_component" title="Surface Abiotic Carbonate ion Concentration" uid="c96eec14-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="co3nat" label="co3nat" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water_due_to_natural_component" title="Natural Carbonate ion Concentration" uid="c9793390-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="co3natos" label="co3natos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water_due_to_natural_component" title="Surface Natural Carbonate ion Concentration" uid="c96eddd2-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="co3os" label="co3os" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_carbonate_expressed_as_carbon_in_sea_water" title="Surface Carbonate ion Concentration" uid="c96ecf22-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="co3sataragos" label="co3sataragos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_carbonate_expressed_as_carbon_for_sea_water_in_equilibrium_with_pure_aragonite" title="Surface Mole Concentration of Dimethyl Sulphide in sea water" uid="c96f0758-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="co3satcalcos" label="co3satcalcos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_carbonate_expressed_as_carbon_for_sea_water_in_equilibrium_with_pure_calcite" title="Surface Mole Concentration of Dimethyl Sulphide in sea water" uid="c96ef9ac-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of detrital organic carbon component concentrations" id="detocos" label="detocos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_organic_detritus_expressed_as_carbon_in_sea_water" title="Surface Detrital Organic Carbon Concentration" uid="c96cb7e6-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="dissolved iron in sea water is meant to include both Fe2+ and Fe3+ ions (but not, e.g., particulate detrital iron)" id="dfeos" label="dfeos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_iron_in_sea_water" title="Surface Dissolved Iron Concentration" uid="c96de29c-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" id="dissi13cos" label="dissi13cos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_inorganic_carbon13_in_sea_water" title="Surface Dissolved Inorganic 13Carbon Concentration" uid="c96c720e-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Abiotic Dissolved inorganic 14carbon (CO3+HCO3+H2CO3) concentration" id="dissi14cabioos" label="dissi14cabioos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_inorganic_carbon14_in_sea_water" title="Surface Abiotic Dissolved Inorganic 14Carbon Concentration" uid="c96c6390-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Abiotic Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" id="dissicabioos" label="dissicabioos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_due_to_abiotic_component" title="Surface Abiotic Dissolved Inorganic Carbon Concentration" uid="c96c5576-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration at preindustrial atmospheric xCO2" id="dissicnatos" label="dissicnatos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_inorganic_carbon_in_sea_water_due_to_natural_component" title="Surface Natural Dissolved Inorganic Carbon Concentration" uid="c96c470c-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Dissolved inorganic carbon (CO3+HCO3+H2CO3) concentration" id="dissicos" label="dissicos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_inorganic_carbon_in_sea_water" title="Surface Dissolved Inorganic Carbon Concentration" uid="c96c3794-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Sum of dissolved carbon component concentrations explicitly represented (i.e. not ~40 uM refractory unless explicit)" id="dissocos" label="dissocos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_organic_carbon_in_sea_water" title="Surface Dissolved Organic Carbon Concentration" uid="c96c8078-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="dmsos" label="dmsos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dimethyl_sulfide_in_sea_water" title="Surface Mole Concentration of Dimethyl Sulphide in sea water" uid="c96ec19e-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="dpco2abio" label="dpco2abio" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_carbon_dioxide_partial_pressure_difference_between_sea_water_and_air_due_to_abiotic_component" title="Abiotic Delta PCO2" uid="c97324c8-c5f0-11e6-ac20-5404a60d96b5" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="" id="dpco2nat" label="dpco2nat" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_carbon_dioxide_partial_pressure_difference_between_sea_water_and_air_due_to_natural_component" title="Natural Delta PCO2" uid="c97316d6-c5f0-11e6-ac20-5404a60d96b5" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="Vertically integrated primary (organic carbon) production by phytoplankton based on nitrate uptake alone" id="intppnitrate" label="intppnitrate" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="net_primary_mole_productivity_of_biomass_expressed_as_carbon_due_to_nitrate_utilization" title="Primary Organic Carbon Production by Phytoplankton Based on Nitrate Uptake Alone" uid="c971e98c-c5f0-11e6-ac20-5404a60d96b5" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="" id="nh4os" label="nh4os" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_ammonium_in_sea_water" title="Surface Dissolved Ammonium Concentration" uid="c96dc79e-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="no3os" label="no3os" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_nitrate_in_sea_water" title="Surface Dissolved Nitrate Concentration" uid="c96db98e-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="o2os" label="o2os" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_molecular_oxygen_in_sea_water" title="Surface Dissolved Oxygen Concentration" uid="c96d9daa-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="o2satos" label="o2satos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_molecular_oxygen_in_sea_water_at_saturation" title="Surface Dissolved Oxygen Concentration at Saturation" uid="c96daba6-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="AOD from the ambient aerosols in clear skies if od550aer is for all-sky (i.e., includes aerosol water).  Does not include AOD from stratospheric aerosols if these are prescribed but includes other possible background aerosol types. Needs a comment attribute &quot;wavelength: 550 nm&quot;" id="od550csaer" label="od550csaer" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="atmosphere_optical_thickness_due_to_ambient_aerosol_particles" title="ambient aerosol optical thickness at 550 nm" uid="c9a72dd6-c5f0-11e6-ac20-5404a60d96b5" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1 (abiotic component).." id="phabio" label="phabio" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="sea_water_ph_reported_on_total_scale_due_to_abiotic_component" title="Abiotic pH" uid="c977c2da-c5f0-11e6-ac20-5404a60d96b5" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1." id="phabioos" label="phabioos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="sea_water_ph_reported_on_total_scale_due_to_abiotic_component" title="Surface Abiotic pH" uid="c96d8ffe-c5f0-11e6-ac20-5404a60d96b5" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1." id="phnat" label="phnat" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="sea_water_ph_reported_on_total_scale_due_to_natural_component" title="Natural pH" uid="c97004d2-c5f0-11e6-ac20-5404a60d96b5" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1." id="phnatos" label="phnatos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="sea_water_ph_reported_on_total_scale_due_to_natural_component" title="Surface Natural pH" uid="c96d8090-c5f0-11e6-ac20-5404a60d96b5" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="negative log10 of hydrogen ion concentration with the concentration expressed as mol H kg-1." id="phos" label="phos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="sea_water_ph_reported_on_total_scale" title="Surface pH" uid="c96d71ae-c5f0-11e6-ac20-5404a60d96b5" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="carbon concentration from calcareous (calcite-producing) phytoplankton component alone" id="phycalcos" label="phycalcos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_calcareous_phytoplankton_expressed_as_carbon_in_sea_water" title="Surface Mole Concentration of Calcareous Phytoplankton expressed as Carbon in Sea Water" uid="c96cfd6e-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon from the diatom phytoplankton component concentration alone" id="phydiatos" label="phydiatos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_diatoms_expressed_as_carbon_in_sea_water" title="Surface Mole Concentration of Diatoms expressed as Carbon in Sea Water" uid="c96ce1ee-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon concentration from the diazotrophic phytoplankton component alone" id="phydiazos" label="phydiazos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_diazotrophs_expressed_as_carbon_in_sea_water" title="Surface Mole Concentration of Diazotrophs Expressed as Carbon in Sea Water" uid="c96cefb8-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of phytoplankton iron component concentrations" id="phyfeos" label="phyfeos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_phytoplankton_expressed_as_iron_in_sea_water" title="Surface Mass Concentration of Diazotrophs expressed as Chlorophyll in sea water" uid="c96ea5e2-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon concentration from additional phytoplankton component alone" id="phymiscos" label="phymiscos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_miscellaneous_phytoplankton_expressed_as_carbon_in_sea_water" title="Surface Mole Concentration of Miscellaneous Phytoplankton expressed as Carbon in Sea Water" uid="c96d1a6a-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of phytoplankton nitrogen component concentrations" id="phynos" label="phynos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_phytoplankton_expressed_as_nitrogen_in_sea_water" title="Surface Mole Concentration of Phytoplankton Nitrogen in sea water" uid="c96e895e-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon concentration from the picophytoplankton (&lt;2 um) component alone" id="phypicoos" label="phypicoos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_picophytoplankton_expressed_as_carbon_in_sea_water" title="Surface Mole Concentration of Picophytoplankton expressed as Carbon in Sea Water" uid="c96d0cb4-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of phytoplankton phosphorus components" id="phypos" label="phypos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_phytoplankton_expressed_as_phosphorus_in_sea_water" title="Surface Mole Concentration of Total Phytoplankton expressed as Phosphorus in sea water" uid="c96e9778-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of phytoplankton silica component concentrations" id="physios" label="physios" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_phytoplankton_expressed_as_silicon_in_sea_water" title="Surface Mole Concentration of Total Phytoplankton expressed as Silicon in sea water" uid="c96eb3e8-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="po4os" label="po4os" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_inorganic_phosphorus_in_sea_water" title="Surface Total Dissolved Inorganic Phosphorus Concentration" uid="c96dd518-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Accumulated stomatal ozone flux over the threshold of 0 mol m-2 s-1; Computation: Time Integral of (hourly above canopy ozone concentration * stomatal conductance * Rc/(Rb+Rc) )" id="pod0" label="pod0" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="pending_CF_name" title="Phytotoxic ozone dose" uid="c9a5b6b8-c5f0-11e6-ac20-5404a60d96b5" unid="fd72349a-3468-11e6-ba71-5404a60d96b5" units="mol m-2 s-1"/>
<item description="sum of particulate organic nitrogen component concentrations" id="ponos" label="ponos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_particulate_organic_matter_expressed_as_nitrogen_in_sea_water" title="Surface Mole Concentration of Particulate Organic Matter expressed as Nitrogen in sea water" uid="c96e5132-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of particulate organic phosphorus component concentrations" id="popos" label="popos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_particulate_organic_matter_expressed_as_phosphorus_in_sea_water" title="Surface Mole Concentration of Particulate Organic Matter expressed as Phosphorus in sea water" uid="c96e5fc4-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="Flux corresponding to rlut resulting fom aerosol-free call to radiation, follwing Ghan (ACP, 2013)" id="rlutaf" label="rlutaf" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="toa_outgoing_longwave_flux" title="TOA Outgoing Aerosol-Free Longwave Radiation" uid="c9a640b0-c5f0-11e6-ac20-5404a60d96b5" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Flux corresponding to rlutcs resulting fom aerosol-free call to radiation, follwing Ghan (ACP, 2013)" id="rlutcsaf" label="rlutcsaf" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="toa_outgoing_longwave_flux_assuming_clear_sky" title="TOA Outgoing Clear-Sky, Aerosol-Free Longwave Radiation" uid="c9a673b4-c5f0-11e6-ac20-5404a60d96b5" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Flux corresponding to rsut resulting fom aerosol-free call to radiation, following Ghan (ACP, 2013)" id="rsutaf" label="rsutaf" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="toa_outgoing_shortwave_flux" title="TOA Outgoing Aerosol-Free Shortwave Radiation" uid="c9a56fd2-c5f0-11e6-ac20-5404a60d96b5" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="Flux corresponding to rsutcs resulting fom aerosol-free call to radiation, following Ghan (ACP, 2013)" id="rsutcsaf.1" label="rsutcsaf" procComment="" procnote="" prov="CMIP6 Endorsement [AerChemMIP]" provmip="AerChemMIP" sn="toa_outgoing_shortwave_flux_assuming_clear_sky" title="TOA Outgoing Clear-Sky, Aerosol-Free Shortwave Radiation" uid="c9a70b4e-c5f0-11e6-ac20-5404a60d96b5" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="sios" label="sios" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_dissolved_inorganic_silicon_in_sea_water" title="Surface Total Dissolved Inorganic Silicon Concentration" uid="c96df0fc-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="" id="spco2abio" label="spco2abio" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_partial_pressure_of_carbon_dioxide_in_sea_water_due_to_abiotic_component" title="Abiotic Surface Aqueous Partial Pressure of CO2" uid="c972ffd4-c5f0-11e6-ac20-5404a60d96b5" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="" id="spco2nat" label="spco2nat" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_partial_pressure_of_carbon_dioxide_in_sea_water_due_to_natural_component" title="Natural Surface Aqueous Partial Pressure of CO2" uid="c972f264-c5f0-11e6-ac20-5404a60d96b5" unid="fd709388-3468-11e6-ba71-5404a60d96b5" units="Pa"/>
<item description="total alkalinity equivalent concentration (including carbonate, borate, phosphorus, silicon, and nitrogen components) at preindustrial atmospheric xCO2" id="talknatos" label="talknatos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="sea_water_alkalinity_expressed_as_mole_equivalent_due_to_natural_component" title="Surface Natural Total Alkalinity" uid="c96d62fe-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="total alkalinity equivalent concentration (including carbonate, borate, phosphorus, silicon, and nitrogen components)" id="talkos" label="talkos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="sea_water_alkalinity_expressed_as_mole_equivalent" title="Surface Total Alkalinity" uid="c96d5426-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon  concentration from mesozooplankton (20-200 um) component alone" id="zmesoos" label="zmesoos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_mesozooplankton_expressed_as_carbon_in_sea_water" title="Surface Mole Concentration of Mesozooplankton expressed as Carbon in Sea Water" uid="c96d36ee-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon  concentration from the microzooplankton (&lt;20 um) component alone" id="zmicroos" label="zmicroos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_microzooplankton_expressed_as_carbon_in_sea_water" title="Surface Mole Concentration of Microzooplankton expressed as Carbon in Sea Water" uid="c96d280c-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon from additional zooplankton component concentrations alone (e.g. Micro, meso).  Since the models all have different numbers of components, this variable has been included to provide a check for intercomparison between models since some phytoplankton groups are supersets." id="zmisc" label="zmisc" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="mole_concentration_of_miscellaneous_zooplankton_expressed_as_carbon_in_sea_water" title="Mole Concetration of Other Zooplankton expressed as Carbon in sea water" uid="c9776970-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="carbon from additional zooplankton component concentrations alone (e.g. Micro, meso).  Since the models all have different numbers of components, this variable has been included to provide a check for intercomparison between models since some phytoplankton groups are supersets." id="zmiscos" label="zmiscos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_miscellaneous_zooplankton_expressed_as_carbon_in_sea_water" title="Surface Mole Concentraiton of Other Zooplankton expressed as Carbon in sea water" uid="c96d459e-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="sum of zooplankton carbon component concentrations" id="zoocos" label="zoocos" procComment="" procnote="" prov="CMIP6 Endorsement [OMIP]" provmip="OMIP" sn="surface_mole_concentration_of_zooplankton_expressed_as_carbon_in_sea_water" title="Surface Zooplankton Carbon Concentration" uid="c96c9c52-c5f0-11e6-ac20-5404a60d96b5" unid="fd723bf2-3468-11e6-ba71-5404a60d96b5" units="mol m-3"/>
<item description="report 3D field of model simulated atmospheric CO2 mass mixing ration on model levels" id="co23D" label="co23D" procComment="" procnote="" prov="CMIP6 [C4MIP]" provmip="C4MIP" sn="CO2_3D_tracer" title="3D field of transported CO2" uid="712473d6-c7b6-11e6-bb2a-ac72891c3257" unid="fd713162-3468-11e6-ba71-5404a60d96b5" units="kg kg-1"/>
<item description="globally integrated mass of carbon as CO2 in atmsophere. Report as a single number for all emissions-driven runs" id="co2totalmass" label="co2totalmass" procComment="" procnote="" prov="CMIP6 [C4MIP]" provmip="C4MIP" sn="CO2_total_mass_in_atmos" title="Globally integrated Carbon Mass in Atmosphere" uid="712478c2-c7b6-11e6-bb2a-ac72891c3257" unid="fd7113ee-3468-11e6-ba71-5404a60d96b5" units="kg"/>
<item description="" id="fldcapacity" label="fldcapacity" procComment="" procnote="" prov="CMIP6 [LS3MIP]" provmip="LS3MIP" sn="" title="Field Capacity" uid="7124a0cc-c7b6-11e6-bb2a-ac72891c3257" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="Heat flux from snow into the ice or land under the snow." id="hfdsnb" label="hfdsnb" procComment="" procnote="" prov="CMIP6 [LS3MIP]" provmip="LS3MIP" sn="" title="Downward heat flux at snow base" uid="712494ba-c7b6-11e6-bb2a-ac72891c3257" unid="fd70b822-3468-11e6-ba71-5404a60d96b5" units="W m-2"/>
<item description="" id="ksat" label="ksat" procComment="" procnote="" prov="CMIP6 [LS3MIP]" provmip="LS3MIP" sn="" title="Saturated Hydraulic Conductivity" uid="7124996a-c7b6-11e6-bb2a-ac72891c3257" unid="8d46eaa2-c7b7-11e6-8f49-ac72891c3257" units="1e-6 m s-1"/>
<item description="" id="rootdsl" label="rootdsl" procComment="" procnote="" prov="CMIP6 [LS3MIP]" provmip="LS3MIP" sn="" title="Root Distribution" uid="71249bb8-c7b6-11e6-bb2a-ac72891c3257" unid="fd715930-3468-11e6-ba71-5404a60d96b5" units="kg m-3"/>
<item description="" id="sandfrac" label="sandfrac" procComment="" procnote="" prov="CMIP6 [LS3MIP]" provmip="LS3MIP" sn="" title="Sand Fraction" uid="7124a324-c7b6-11e6-bb2a-ac72891c3257" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="siltfrac" label="siltfrac" procComment="" procnote="" prov="CMIP6 [LS3MIP]" provmip="LS3MIP" sn="" title="Silt Fraction" uid="71248dd0-c7b6-11e6-bb2a-ac72891c3257" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="slthick" label="slthick" procComment="" procnote="" prov="CMIP6 [LS3MIP]" provmip="LS3MIP" sn="" title="Thickness of Soil Layers" uid="7124901e-c7b6-11e6-bb2a-ac72891c3257" unid="fd719698-3468-11e6-ba71-5404a60d96b5" units="m"/>
<item description="" id="wilt" label="wilt" procComment="" procnote="" prov="CMIP6 [LS3MIP]" provmip="LS3MIP" sn="" title="Wilting Point" uid="7124926c-c7b6-11e6-bb2a-ac72891c3257" unid="fd6ee984-3468-11e6-ba71-5404a60d96b5" units="%"/>
<item description="" id="clayfrac" label="clayfrac" procComment="" procnote="" prov="CMIP6 [LS3MIP]" provmip="LS3MIP" sn="" title="Clay Fraction" uid="f8dde114-11ed-11e7-bf88-ac72891c3257" unid="fd6fef50-3468-11e6-ba71-5404a60d96b5" units="1.0"/>
<item description="" id="ugrido" label="ugrido" procComment="" procnote="" prov="CMIP6 Extra" provmip="CMIP6" sn="" title="UGRID Grid Specification" uid="962e51dc-267b-11e7-96a5-ac72891c3257" unid="fd6e731e-3468-11e6-ba71-5404a60d96b5" units=""/>
</var>
<mip id="mip" label="mip" title="1.1 Model Intercomparison Project" uid="SECTION:mip" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item label="CMIP6" title="Coupled Model Intercomparison Project, Phase 6" uid="CMIP6" url="http://www.wcrp-climate.org/wgcm-cmip/wgcm-cmip6"/>
<item label="AerChemMIP" title="Aerosols and Chemistry Model Intercomparison Project" uid="AerChemMIP" url="https://wiki.met.no/aerocom/aerchemmip/start"/>
<item label="C4MIP" title="Coupled Climate Carbon Cycle Model Intercomparison Project" uid="C4MIP" url="http://www.c4mip.net"/>
<item label="CFMIP" title="Cloud Feedback Model Intercomparison Project" uid="CFMIP" url="http://www.cfmip.net/"/>
<item label="DAMIP" title="Detection and Attribution Model Intercomparison Project" uid="DAMIP" url="http://www.wcrp-climate.org/modelling-wgcm-mip-catalogue/modelling-wgcm-mips/475-modelling-wgcm-damip"/>
<item label="DCPP" title="Decadal Climate Prediction Project" uid="DCPP" url="https://www.wcrp-climate.org/dcp-overview"/>
<item label="FAFMIP" title="Flux-Anomaly-Forced Model Intercomparison Project" uid="FAFMIP" url="http://www.fafmip.org"/>
<item label="GeoMIP" title="Geoengineering Model Intercomparison Project" uid="GeoMIP" url="http://climate.envsci.rutgers.edu/GeoMIP/index.html"/>
<item label="GMMIP" title="Global Monsoons Model Intercomparison Project" uid="GMMIP" url="http://www.met.reading.ac.uk/~sws05agt/MonsoonMIP/"/>
<item label="HighResMIP" title="High Resolution Model Intercomparison Project" uid="HighResMIP" url="https://dev.knmi.nl/projects/highresmip/wiki"/>
<item label="ISMIP6" title="Ice Sheet Model Intercomparison Project for CMIP6" uid="ISMIP6" url="http://www.climate-cryosphere.org/activities/targeted/ismip6"/>
<item label="LS3MIP" title="Land Surface, Snow and Soil Moisture MIP" uid="LS3MIP" url="http://www.climate-cryosphere.org/activities/targeted/ls3mip"/>
<item label="LUMIP" title="Land-Use Model Intercomparison Project" uid="LUMIP" url="https://cmip.ucar.edu/lumip"/>
<item label="OMIP" title="Ocean Model Intercomparison Project" uid="OMIP" url=""/>
<item label="PDRMIP" title="Precipitation Driver and Response Model Intercomparison Project" uid="PDRMIP" url=""/>
<item label="PMIP" title="Palaeoclimate Modelling Intercomparison Project" uid="PMIP" url="https://pmip.lsce.ipsl.fr/"/>
<item label="RFMIP" title="Radiative Forcing Model Intercomparison Project" uid="RFMIP" url="https://rfmip.leeds.ac.uk/about-rfmip/"/>
<item label="ScenarioMIP" title="Scenario Model Intercomparison Project" uid="ScenarioMIP" url="https://cmip.ucar.edu/scenario-mip"/>
<item label="SolarMIP" title="Solar Model Intercomparison Project" uid="SolarMIP" url=""/>
<item label="VolMIP" title="Volcanic Forcings Model Intercomparison Project" uid="VolMIP" url="http://volmip.org/cmip6.html"/>
<item label="CORDEX" title="Coordinated Regional Downscaling Experiment (CORDEX)" uid="CORDEX" url=""/>
<item label="DynVar" title="Modelling the Dynamics and Variability of the Stratosphere-Troposphere System" uid="DynVar" url="http://www.sparcdynvar.org/models-data/"/>
<item label="SIMIP" title="Sea Ice Model Intercomparison Project" uid="SIMIP" url="http://gaim.unh.edu/Structure/Future/MIPs/SIMIP.html"/>
<item label="VIACSAB" title="Vulnerability, Impacts, Adaptation, and Climate Services Advisory Board (VIACS AB)" uid="VIACSAB" url=""/>
<item label="SPECS" title="Sesonal-to-decadal climate Prediction for the improvement of European Climate Services" uid="SPECS" url="http://www.specs-fp7.eu/"/>
<item label="CCMI" title="Chemistry-Climate Model Initiative" uid="CCMI" url="http://www.met.reading.ac.uk/ccmi/"/>
<item label="CMIP5" title="Coupled Model Intercomparison Project, Phase 5" uid="CMIP5" url=""/>
<item label="CMIP" title="Coupled Model Intercomparison Project" uid="CMIP" url=""/>
<item label="DECK" title="DECK - set of standard CMIP runs" uid="DECK" url=""/>
</mip>
<varChoice id="vc" label="varChoice" title="3.10 Indicates variables for which a there is a range of potential CMOR Variables" uid="SECTION:varChoice" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item choiceClass="RedundancySet" description="The 3hrPlev and 6hrPlev_extr fields overlap" label="overlap-hus" optionList="2; 2; " title="hus [6hrPlev_extr]" uid="choices_HighResMIP.overlap.hus" varList="3hrPlev:hus; 6hrPlev_extr:hus; "/>
<item choiceClass="RedundancySet" description="Pressure level fields overlap ... priority 1: 10 levels, 2: 17 levels, 3: 23 levels" label="overlap-hus" optionList="" title="Redundancy Set for DynVar pressure level hus" uid="choices_DynVar.overlap.hus" varList=""/>
<item choiceClass="ConfigurationOptionSet" description="For models which do not have a Cartesian ocean grid (with grid lines of constant latitude) the meridional overturning fluxes should be provided both relative to the grid and as an approximated zonal mean using a zig-zag path" label="msftmzsmpa" optionList="" title="Option set for CartesianOceanGrid" uid="meridionalOverturning-ficeberg" varList="msftmzsmpa"/>
<item choiceClass="RedundancySet" description="Pressure level fields overlap ... priority 1: 10 levels, 2: 17 levels, 3: 23 levels" label="overlap-va" optionList="" title="Redundancy Set for DynVar pressure level va" uid="choices_DynVar.overlap.va" varList=""/>
<item choiceClass="ConfigurationOptionSet" description="The ocean grid cell mass (masscello) can be supplied as a fixed field for Boussinesq models if the grid cell thickness is constant in time. Otherwise, this variable is required at monthly frequency." label="masscello" optionList="" title="Option set for BoussinesqOceanConstantTh" uid="boussinesq-masscello" varList="masscello"/>
<item choiceClass="ConfigurationOptionSet" description="The freshwater flux from melting icebergs should be provided as a depth dependent field if possible, otherwise as a depth integrated flux." label="ficeberg" optionList="" title="Option set for DepthResolvedIcebergMelt" uid="iceberg-ficeberg" varList="ficeberg"/>
<item choiceClass="RedundancySet" description="Pressure level fields overlap ... priority 1: 10 levels, 2: 17 levels, 3: 23 levels" label="overlap-ta" optionList="" title="Redundancy Set for DynVar pressure level ta" uid="choices_DynVar.overlap.ta" varList=""/>
<item choiceClass="RedundancySet" description="The 3hrPlev and 6hrPlev_extr fields overlap" label="overlap-ua" optionList="2; 2; 1; " title="ua [6hrPlev]" uid="choices_HighResMIP.overlap.ua" varList="3hrPlev:ua; 6hrPlev_extr:ua; 6hrPlev:ua; "/>
<item choiceClass="RedundancySet" description="Pressure level fields overlap ... priority 1: 10 levels, 2: 17 levels, 3: 23 levels" label="overlap-wap" optionList="" title="Redundancy Set for DynVar pressure level wap" uid="choices_DynVar.overlap.wap" varList=""/>
<item choiceClass="ConfigurationOptionSet" description="Variables which may be fixed in some models and tme varying in others have two CMOR table entries: one fixed and one with appropriate temporal variation" label="msftmzsmpa" optionList="" title="Option set for SometimesFixed-msftmzsmpa" uid="whenFixed-msftmzsmpa" varList="msftmzsmpa"/>
<item choiceClass="RedundancySet" description="The 3hrPlev and 6hrPlev_extr fields overlap" label="overlap-ta" optionList="2; 2; 1; " title="ta [6hrPlev]" uid="choices_HighResMIP.overlap.ta" varList="3hrPlev:ta; 6hrPlev_extr:ta; 6hrPlev:ta; "/>
<item choiceClass="ConfigurationOptionSet" description="Variable(s) only required for models with Boussinesq oceans." label="BoussinesqOceanOptionSet" optionList="" title="Option set for BoussinesqOcean" uid="BoussinesqOceanOptionSet" varList="rhozero"/>
<item choiceClass="RedundancySet" description="The 3hrPlev and 6hrPlev_extr fields overlap" label="overlap-va" optionList="2; 2; 1; " title="va [6hrPlev]" uid="choices_HighResMIP.overlap.va" varList="3hrPlev:va; 6hrPlev_extr:va; 6hrPlev:va; "/>
<item choiceClass="RedundancySet" description="Pressure level fields overlap ... priority 1: 10 levels, 2: 17 levels, 3: 23 levels" label="overlap-zg" optionList="" title="Redundancy Set for DynVar pressure level zg" uid="choices_DynVar.overlap.zg" varList=""/>
<item choiceClass="RedundancySet" description="Pressure level fields overlap ... priority 1: 10 levels, 2: 17 levels, 3: 23 levels" label="overlap-ua" optionList="" title="Redundancy Set for DynVar pressure level ua" uid="choices_DynVar.overlap.ua" varList=""/>
</varChoice>
<temporalShape id="ts" label="temporalShape" title="2.2 Temporal dimension" uid="SECTION:temporalShape" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item dimensions="" dimid="dim:" label="None" title="No temporal dimensions ... fixed field" uid="7a96eb30-8042-11e6-97ee-ac72891c3257"/>
<item dimensions="time" dimid="dim:time" label="time-mean" title="Temporal mean" uid="cf34c974-80be-11e6-97ee-ac72891c3257"/>
<item dimensions="time1" dimid="dim:time1" label="time-point" title="Instantaneous value (i.e. synoptic or time-step value)" uid="7a976ce0-8042-11e6-97ee-ac72891c3257"/>
<item dimensions="time2" dimid="dim:time2" label="climatology" title="Climatological mean" uid="7a97ae58-8042-11e6-97ee-ac72891c3257"/>
<item dimensions="time3" dimid="dim:time3" label="diurnal-cycle" title="Mean Diurnal Cycle" uid="7a972f78-8042-11e6-97ee-ac72891c3257"/>
</temporalShape>
<structure id="str" label="structure" title="2.3 Dimensions and related information" uid="SECTION:structure" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="dim:effectRadIc tau" flag_meanings="" flag_values="" label="str-d87" odims="effectRadIc tau" procNote="" prov="ivg.add2" spid="a6562f4a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (7 pressure levels) [XY-P7] {effectRadIc tau:} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="af2589d6-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where sea_ice (comment: mask=siconc) time: point" cids="" cmid="CellMethods::amnsi-tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-348" odims="" procNote="" prov="SIMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] [amnsi-tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7ec3940-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="" cmid="CellMethods::amnla-tmn" coords="" description="" dids="dim:landUse" flag_meanings="" flag_values="" label="str-h054" odims="landUse" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {landUse:} [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa252444-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="" cell_methods="area: time: mean where ice_sheet" cids="dim:height2m" cmid="CellMethods::amni-twmn" coords="height2m" description="" dids="" flag_meanings="" flag_values="" label="str-d68" odims="" procNote="" prov="ivg.add2" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global mean/constant [na-na] {:height2m} [amni-twmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="af240246-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacellg" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b195" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="f9cbf75e-596b-11e6-a4be-ac72891c3257" title="Temporal mean, Greenland Polar Stereographic Grid [XYG-na] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="943c1906-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="" cell_methods="time: mean grid_longitude: mean" cids="" cmid="CellMethods::bgzmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h009" odims="" procNote="" prov="ivg.add2" spid="a655ffac-8883-11e5-b571-ac72891c3257" title="Temporal mean, Ocean Basin Meridional Section [YB-O] [bgzmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529d9136-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean (with samples weighted by snow mass)" cids="" cmid="CellMethods::amnla-tmnsn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a014" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amnla-tmnsn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f9478548-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where ice_sheet" cids="" cmid="CellMethods::amni-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b107" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amni-twmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f94a76ea-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:height100m" cmid="CellMethods::tmean" coords="height100m" description="" dids="" flag_meanings="" flag_values="" label="str-h053" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:height100m} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa251fda-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typec3pft" cmid="CellMethods::amnlax-tmn" coords="typec3pft" description="" dids="" flag_meanings="" flag_values="" label="str-h031" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typec3pft} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa228d60-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacello volume: volcello" cell_methods="area: mean where sea time: mean" cids="" cmid="CellMethods::amse-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a098" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amse-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="e9f9f6ca-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean" cids="dim:p850" cmid="CellMethods::amn-fx" coords="p850" description="" dids="" flag_meanings="" flag_values="" label="str-d51" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {:p850}" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="62eedca2-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-085" odims="" procNote="" prov="CMIP5/OMIP" spid="a6560c86-8883-11e5-b571-ac72891c3257" title="Temporal mean, Ocean Transect [TR-na] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e05972-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="dim:effectRadLi tau" flag_meanings="" flag_values="" label="str-d80" odims="effectRadLi tau" procNote="" prov="ivg.add2" spid="a6562f4a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (7 pressure levels) [XY-P7] {effectRadLi tau:} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="af251884-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacello volume: volcello" cell_methods="time: mean within years time: mean over years" cids="" cmid="CellMethods::aclim" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a072" odims="" procNote="" prov="ivg.add2" spid="a6562c2a-8883-11e5-b571-ac72891c3257" title="Climatological mean, Global ocean field on model levels [XY-O] [aclim]" tmid="7a97ae58-8042-11e6-97ee-ac72891c3257" uid="e9f9aa6c-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:p1000" cmid="CellMethods::tmean" coords="p1000" description="" dids="" flag_meanings="" flag_values="" label="str-345" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p1000} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7ec293c-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="dim:sza5" flag_meanings="" flag_values="" label="str-232" odims="sza5" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {sza5:} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e7cf9a-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where snow over sea_ice area: time: mean where sea_ice" cids="" cmid="CellMethods::amsnsi-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-387" odims="" procNote="" prov="SIMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amsnsi-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7ed9114-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where floating_ice_shelf (comment: mask=sftflf)" cids="" cmid="CellMethods::amnfi-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b222" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amnfi-twmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f94de794-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="dim:typetree" cmid="CellMethods::amnla-tmn" coords="typetree" description="" dids="" flag_meanings="" flag_values="" label="str-h016" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typetree} [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529e44a0-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="area: mean where sea time: mean" cids="dim:depth100m" cmid="CellMethods::amse-tmn" coords="depth100m" description="" dids="" flag_meanings="" flag_values="" label="str-a015" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:depth100m} [amse-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f948813c-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where sea time: mean" cids="" cmid="CellMethods::amse-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b146" odims="" procNote="" prov="ivg.add2" spid="a6563724-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field on model atmosphere levels [XY-A] [amse-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="c9e2f91a-9571-11e6-b25e-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land" cids="" cmid="CellMethods::amla" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h023" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amla]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529fc62c-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:depth700m" cmid="CellMethods::tmean" coords="depth700m" description="" dids="" flag_meanings="" flag_values="" label="str-d32" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:depth700m} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="63c237b6-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="dim:site" flag_meanings="" flag_values="" label="str-b166" odims="site" procNote="" prov="CMIP5, endorsed MIPs" spid="a65607a4-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Atmospheric profile (model levels) [na-A] {site:} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="e4b02c9a-8946-11e6-a0c4-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="" cmid="CellMethods::amnlax-tmn" coords="" description="" dids="dim:vegtype" flag_meanings="" flag_values="" label="str-h011" odims="vegtype" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {vegtype:} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa21b854-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typec3pft typepasture" cmid="CellMethods::amnlax-tmn" coords="typec3pft typepasture" description="" dids="" flag_meanings="" flag_values="" label="str-h061" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typec3pft typepasture} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa25b06c-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="" cmid="CellMethods::amnla-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-041" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7de23aa-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="" cmid="CellMethods::amnla-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-385" odims="" procNote="" prov="CMIP5/OMIP" spid="a6563bca-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field on soil levels [XY-S] [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7ed82f0-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="area: mean" cids="" cmid="CellMethods::amn-fx" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d39" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="No temporal dimensions ... fixed field, Global field (single level) [XY-na] [amn-fx]" tmid="7a96eb30-8042-11e6-97ee-ac72891c3257" uid="62eebbb4-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: mean within years time: mean over years" cids="" cmid="CellMethods::aclim" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a090" odims="" procNote="" prov="ivg.add2" spid="a6563274-8883-11e5-b571-ac72891c3257" title="Climatological mean, Global field on model atmosphere half-levels [XY-AH] [aclim]" tmid="7a97ae58-8042-11e6-97ee-ac72891c3257" uid="e9f9de42-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where landuse" cids="" cmid="CellMethods::amlu-twm" coords="" description="" dids="dim:landUse" flag_meanings="" flag_values="" label="str-b436" odims="landUse" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {landUse:} [amlu-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="e9fa6830-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="dim:tau" flag_meanings="" flag_values="" label="str-249" odims="tau" procNote="" prov="CMIP5/OMIP" spid="a6562f4a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (7 pressure levels) [XY-P7] {tau:} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e8acd0-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="" cell_methods="area: point time: point" cids="dim:height2m" cmid="CellMethods::apt-tpt" coords="height2m" description="" dids="" flag_meanings="" flag_values="" label="str-d63" odims="" procNote="" prov="ivg.add2" spid="a6561c44-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Site (specific locations requested by CFMIP) [S-na] {:height2m} [apt-tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="3cbc5abc-1a15-11e7-8130-ac72891c3257"/>
<item cell_measures="" cell_methods="area: sum where sea time: mean" cids="" cmid="CellMethods::asm-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-032" odims="" procNote="" prov="CMIP5/OMIP" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global mean/constant [na-na] [asm-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7dda574-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="dim:typebare" cmid="CellMethods::amnla-tmn" coords="typebare" description="" dids="" flag_meanings="" flag_values="" label="str-h001" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typebare} [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529d09d2-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: point" cids="dim:sdepth1" cmid="CellMethods::amnla-tpt" coords="sdepth1" description="" dids="" flag_meanings="" flag_values="" label="str-183" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {:sdepth1} [amnla-tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7e54ec8-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:p700" cmid="CellMethods::tmean" coords="p700" description="" dids="" flag_meanings="" flag_values="" label="str-209" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p700} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e6a4b2-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typeshrub" cmid="CellMethods::amnlax-tmn" coords="typeshrub" description="" dids="" flag_meanings="" flag_values="" label="str-h025" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typeshrub} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa22430a-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean" cids="dim:p850" cmid="CellMethods::am-tm" coords="p850" description="" dids="" flag_meanings="" flag_values="" label="str-b114" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p850}" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f94abbb4-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="" cell_methods="area: point time: point" cids="dim:height10m" cmid="CellMethods::apt-tpt" coords="height10m" description="" dids="" flag_meanings="" flag_values="" label="str-d33" odims="" procNote="" prov="ivg.add2" spid="a6561c44-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Site (specific locations requested by CFMIP) [S-na] {:height10m} [apt-tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="3cbb316e-1a15-11e7-8130-ac72891c3257"/>
<item cell_measures="" cell_methods="area: point" cids="" cmid="CellMethods::apt" coords="" description="" dids="dim:spectband" flag_meanings="" flag_values="" label="str-b269" odims="spectband" procNote="" prov="ivg.add2" spid="a65607a4-8883-11e5-b571-ac72891c3257" title="Temporal mean, Atmospheric profile (model levels) [na-A] {spectband:}" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="70421648-f2a0-11e6-9a05-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="dim:height10m" cmid="CellMethods::tpt" coords="height10m" description="" dids="" flag_meanings="" flag_values="" label="str-072" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {:height10m} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7dfb7b0-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="" cell_methods="longitude: mean time: mean" cids="" cmid="CellMethods::zmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-069" odims="" procNote="" prov="CMIP5/OMIP" spid="a6560aec-8883-11e5-b571-ac72891c3257" title="Temporal mean, Ocean Basin Zonal Mean [YB-na] [zmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7df8fce-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="dim:scatratio" flag_meanings="" flag_values="" label="str-136" odims="scatratio" procNote="" prov="CMIP5/OMIP" spid="a6561ab4-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field on 40 altitude levels [XY-H40] {scatratio:} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e2f25e-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacellg" cell_methods="area: mean" cids="" cmid="CellMethods::amn-fx" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b109" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="f9cbf75e-596b-11e6-a4be-ac72891c3257" title="Time invariant, Greenland Polar Stereographic Grid [XYG-na]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="9439f414-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean" cids="dim:p500" cmid="CellMethods::amn-fx" coords="p500" description="" dids="" flag_meanings="" flag_values="" label="str-d37" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {:p500}" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="62eeb57e-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typec4pft" cmid="CellMethods::amnlax-tmn" coords="typec4pft" description="" dids="" flag_meanings="" flag_values="" label="str-h036" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typec4pft} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa2335a8-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="dim:dbze" flag_meanings="" flag_values="" label="str-038" odims="dbze" procNote="" prov="CMIP5/OMIP" spid="a6561ab4-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field on 40 altitude levels [XY-H40] {dbze:} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7ddfaba-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: point" cids="" cmid="CellMethods::amn-tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d11" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] [amn-tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="63c0cae8-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where sea_ice (comment: mask=siconc)" cids="dim:typemp" cmid="CellMethods::amnsi-twm" coords="typemp" description="" dids="" flag_meanings="" flag_values="" label="str-d84" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typemp} [amnsi-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="af256dfc-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="" cids="" cmid="CellMethods::fixed" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-x269" odims="" procNote="" prov="ivg.add2" spid="a6563724-8883-11e5-b571-ac72891c3257" title="Global Field (model levels) [XY-A]" tmid="7a96eb30-8042-11e6-97ee-ac72891c3257" uid="6ce574f0-2670-11e7-96a5-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typecrop" cmid="CellMethods::amnlax-tmn" coords="typecrop" description="" dids="" flag_meanings="" flag_values="" label="str-h038" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typecrop} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa237568-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="" cell_methods="longitude: mean (basin) time: mean" cids="" cmid="CellMethods::bzmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a081" odims="" procNote="" prov="CMIP5/OMIP" spid="a6560aec-8883-11e5-b571-ac72891c3257" title="Temporal mean, Ocean Basin Zonal Mean [YB-na] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f949dcb2-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land" cids="" cmid="CellMethods::amla" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d44" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="No temporal dimensions ... fixed field, Global field (single level) [XY-na] [amla]" tmid="7a96eb30-8042-11e6-97ee-ac72891c3257" uid="63c32b44-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: point" cids="" cmid="CellMethods::amlax-tpt" coords="" description="" dids="dim:landUse" flag_meanings="" flag_values="" label="str-h062" odims="landUse" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {landUse:} [amlax-tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="fa25ee7e-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:p560" cmid="CellMethods::tmean" coords="p560" description="" dids="" flag_meanings="" flag_values="" label="str-063" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p560} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7df415e-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="" cell_methods="area: point time: point" cids="" cmid="CellMethods::apt-tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d09" odims="" procNote="" prov="ivg.add2" spid="a6561c44-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Site (129 specified sites) [S-na] [apt-tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="63c0a932-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:height2m" cmid="CellMethods::tmean" coords="height2m" description="" dids="" flag_meanings="" flag_values="" label="str-116" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:height2m} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e1ef26-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a023" odims="" procNote="" prov="CMIP5/OMIP" spid="a6562a9a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (19 pressure levels) [XY-P19] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f947ce0e-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typec3pft typenatgr" cmid="CellMethods::amnlax-tmn" coords="typec3pft typenatgr" description="" dids="" flag_meanings="" flag_values="" label="str-h068" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typec3pft typenatgr} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa26335c-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-245" odims="" procNote="" prov="CMIP5/OMIP" spid="a6563274-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field on model atmosphere half-levels [XY-AH] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e87814-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land" cids="" cmid="CellMethods::amla" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h063" odims="" procNote="" prov="ivg.add2" spid="a6563bca-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field on soil levels [XY-S] [amla]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa25febe-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="dim:scatratio" flag_meanings="" flag_values="" label="str-337" odims="scatratio" procNote="" prov="CMIP5, endorsed MIPs" spid="a6561ab4-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field on 40 altitude levels [XY-H40] {scatratio:} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7ebc67c-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="" cmid="CellMethods::amnlax-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h039" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa23833c-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typesdec" cmid="CellMethods::amnlax-tmn" coords="typesdec" description="" dids="" flag_meanings="" flag_values="" label="str-h037" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typesdec} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa2370fe-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: mean within hours time: maximum over hours" cids="" cmid="CellMethods::am-tmh" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-x212" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Hourly Maximum, Global field (single level) [XY-na] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="b639160c-c69e-11e6-9990-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean" cids="dim:p200" cmid="CellMethods::am-tm" coords="p200" description="" dids="" flag_meanings="" flag_values="" label="str-376" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p200}" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7ed42fe-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where crops (comment: mask=cropFrac)" cids="" cmid="CellMethods::amc-twm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h042" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amc-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa240aaa-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="area: mean where sea depth: sum where sea time: mean" cids="" cmid="CellMethods::amdss-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d02" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amdss-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="63c064e0-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b233" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a6560948-8883-11e5-b571-ac72891c3257" title="Temporal mean, Atmospheric Zonal Mean (on 19 pressure levels) [Y-P19] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="e4b18e96-8946-11e6-a0c4-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-227" odims="" procNote="" prov="CMIP5/OMIP" spid="a6562298-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Atmospheric profiles at specified sites [S-A] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7e790c0-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="area: mean time: minimum" cids="" cmid="CellMethods::tmin" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d04" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [tmin]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="63c08088-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="dim:effectRadIc tau" flag_meanings="" flag_values="" label="str-d82" odims="effectRadIc tau" procNote="" prov="ivg.add2" spid="a6562f4a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (7 pressure levels) [XY-P7] {effectRadIc tau:} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="af254584-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="dim:spectband" flag_meanings="" flag_values="" label="str-d31" odims="spectband" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {spectband:} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="63c22a14-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typebare" cmid="CellMethods::amnlax-tmn" coords="typebare" description="" dids="" flag_meanings="" flag_values="" label="str-h033" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typebare} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa22e74c-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where shrubs (comment: mask=shrubFrac)" cids="" cmid="CellMethods::ams-twm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h044" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [ams-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa243638-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacello volume: volcello" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-157" odims="" procNote="" prov="CMIP5/OMIP" spid="a6562c2a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global ocean field on model levels [XY-O] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e4000e-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="" cell_methods="area: time: mean where ice_sheet" cids="" cmid="CellMethods::amni-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-x188" odims="" procNote="" prov="ISMIP6" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Temporal mean, Masked global mean - ice shelves [amnis-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="b0ec4e62-a42a-11e6-bfbb-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean within years time: mean over years" cids="" cmid="CellMethods::aclim" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a063" odims="" procNote="" prov="ivg.add2" spid="a6562a9a-8883-11e5-b571-ac72891c3257" title="Climatological mean, Global field (19 pressure levels) [XY-P19] [aclim]" tmid="7a97ae58-8042-11e6-97ee-ac72891c3257" uid="e9f98ed8-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean" cids="dim:p1000" cmid="CellMethods::am-tm" coords="p1000" description="" dids="" flag_meanings="" flag_values="" label="str-d65" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p1000}" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="62efb118-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="area: areacellg" cell_methods="area: mean" cids="" cmid="CellMethods::amn-fx" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b226" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="fa1c83ea-596b-11e6-a4be-ac72891c3257" title="Time invariant, Antarctic Polar Stereographic Grid [XYA-na]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="943ca1c8-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:p850" cmid="CellMethods::tmean" coords="p850" description="" dids="" flag_meanings="" flag_values="" label="str-295" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p850} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7ea7254-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typetreend" cmid="CellMethods::amnlax-tmn" coords="typetreend" description="" dids="" flag_meanings="" flag_values="" label="str-h071" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typetreend} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f2f043e8-26b8-11e7-8344-ac72891c3257"/>
<item cell_measures="area: areacellg" cell_methods="area: time: mean where grounded_ice_sheet (comment: mask=sfgrlf)" cids="" cmid="CellMethods::amngi-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b183" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="fa1c83ea-596b-11e6-a4be-ac72891c3257" title="Temporal mean, Antarctic Polar Stereographic Grid [XYA-na] [amngi-twmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="943bbcea-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="" cell_methods="area: mean time: maximum" cids="dim:height10m" cmid="CellMethods::tmax" coords="height10m" description="" dids="" flag_meanings="" flag_values="" label="str-049" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal Maximum, Global field (single level) [XY-na] {:height10m} [tmax]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7de8a48-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where natural_grasses (comment: mask=grassFrac)" cids="" cmid="CellMethods::amng-twm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h046" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amng-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa246dce-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacellg" cell_methods="area: time: mean where floating_ice_shelf (comment: mask=sftflf)" cids="" cmid="CellMethods::amnfi-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b124" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="f9cbf75e-596b-11e6-a4be-ac72891c3257" title="Temporal mean, Greenland Polar Stereographic Grid [XYG-na] [amnfi-twmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="943a75d8-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where sea time: mean" cids="" cmid="CellMethods::amse-tmn" coords="" description="" dids="dim:sza5" flag_meanings="" flag_values="" label="str-b453" odims="sza5" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {sza5:} [amse-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="e9fa9724-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:p840" cmid="CellMethods::tmean" coords="p840" description="" dids="" flag_meanings="" flag_values="" label="str-043" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p840} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7de3bd8-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typenatgr" cmid="CellMethods::amnlax-tmn" coords="typenatgr" description="" dids="" flag_meanings="" flag_values="" label="str-h034" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typenatgr} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa230ab0-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: minimum" cids="dim:height2m" cmid="CellMethods::tmin" coords="height2m" description="" dids="" flag_meanings="" flag_values="" label="str-189" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal Minimum, Global field (single level) [XY-na] {:height2m} [tmin]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e59f36-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean" cids="dim:p500" cmid="CellMethods::am-tm" coords="p500" description="" dids="" flag_meanings="" flag_values="" label="str-b121" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p500}" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="7040a0b0-f2a0-11e6-9a05-5404a60d96b5"/>
<item cell_measures="" cell_methods="area: mean where land time: mean" cids="dim:height10m" cmid="CellMethods::amnla-tmn" coords="height10m" description="" dids="" flag_meanings="" flag_values="" label="str-d55" odims="" procNote="" prov="ivg.add2" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global mean/constant [na-na] {:height10m} [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="af23f6fc-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="dim:spectband" flag_meanings="" flag_values="" label="str-d47" odims="spectband" procNote="" prov="ivg.add2" spid="a6563724-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field on model atmosphere levels [XY-A] {spectband:} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="63c353f8-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="" cell_methods="area: point time: mean" cids="" cmid="CellMethods::mpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-156" odims="" procNote="" prov="CMIP5/OMIP" spid="a6561c44-8883-11e5-b571-ac72891c3257" title="No temporal dimensions ... fixed field, Site (129 specified sites) [S-na]" tmid="7a96eb30-8042-11e6-97ee-ac72891c3257" uid="f7e3efba-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:depth2000m" cmid="CellMethods::tmean" coords="depth2000m" description="" dids="" flag_meanings="" flag_values="" label="str-d30" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:depth2000m} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="63c1fc38-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="--MODEL" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b141" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {MODEL} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="84e98694-e85f-11e6-b2bf-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land" cids="dim:typeveg" cmid="CellMethods::amla" coords="typeveg" description="" dids="" flag_meanings="" flag_values="" label="str-h045" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typeveg} [amla]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa246518-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="dim:dbze" flag_meanings="" flag_values="" label="str-321" odims="dbze" procNote="" prov="CMIP5, endorsed MIPs" spid="a6561ab4-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field on 40 altitude levels [XY-H40] {dbze:} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7eb5dea-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:height10m" cmid="CellMethods::tmean" coords="height10m" description="" dids="" flag_meanings="" flag_values="" label="str-d78" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:height10m} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="af250420-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="dim:typenatgr" cmid="CellMethods::amnla-tmn" coords="typenatgr" description="" dids="" flag_meanings="" flag_values="" label="str-h013" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typenatgr} [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529dda38-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="" cell_methods="area: time: mean where grounded_ice_sheet (comment: mask=sfgrlf)" cids="" cmid="CellMethods::amngi-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-x185" odims="" procNote="" prov="ISMIP6" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Temporal mean, Masked global mean - grounded ice shelves [amngi-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="884b287a-a3fd-11e6-bfbb-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where sea time: point" cids="" cmid="CellMethods::amse-tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a062" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] [amse-tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="e9f98b2c-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean within years time: mean over years" cids="" cmid="CellMethods::aclim" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a468" odims="" procNote="" prov="ivg.add2" spid="a6563724-8883-11e5-b571-ac72891c3257" title="Climatological mean, Global field on model atmosphere levels [XY-A] [aclim]" tmid="7a97ae58-8042-11e6-97ee-ac72891c3257" uid="e9f99d60-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean (global) time: point" cids="" cmid="CellMethods::gmn-tpt" coords="" description="" dids="dim:sza5" flag_meanings="" flag_values="" label="str-359" odims="sza5" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {sza5:}" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7eca81c-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="area: mean where sea" cids="" cmid="CellMethods::amns-fx" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h049" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amns-fx]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa24c058-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-210" odims="" procNote="" prov="CMIP5/OMIP" spid="a6563a44-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (8 pressure levels) [XY-P8] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e6b556-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="dim:typecrop" cmid="CellMethods::amnla-tmn" coords="typecrop" description="" dids="" flag_meanings="" flag_values="" label="str-h010" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typecrop} [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529d9c30-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typepever" cmid="CellMethods::amnlax-tmn" coords="typepever" description="" dids="" flag_meanings="" flag_values="" label="str-h027" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typepever} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa227410-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="--UGRID" cell_methods="" cids="" cmid="CellMethods::fixed" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-x100" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Global field (single level) [XY-na]  [fixed]" tmid="7a96eb30-8042-11e6-97ee-ac72891c3257" uid="4f06575c-2674-11e7-96a5-ac72891c3257"/>
<item cell_measures="" cell_methods="area: time: mean" cids="" cmid="CellMethods::am-tm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b193" odims="" procNote="" prov="ivg.add2" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global mean/constant [na-na]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="e9fb0b1e-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="area: mean" cids="" cmid="CellMethods::amn-fx" coords="" description="" dids="" flag_meanings="global_land southern_ocean atlantic_ocean pacific_ocean arctic_ocean indian_ocean mediterranean_sea black_sea hudson_bay baltic_sea red_sea" flag_values="" label="str-d66" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="No temporal dimensions ... fixed field, Global field (single level) [XY-na] [amn-fx]" tmid="7a96eb30-8042-11e6-97ee-ac72891c3257" uid="62efb6d6-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where landuse" cids="dim:height2m" cmid="CellMethods::amlu-twm" coords="height2m" description="" dids="dim:landUse" flag_meanings="" flag_values="" label="str-h072" odims="landUse" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {landUse:height2m} [amlu-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa26b836-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where sea_ice (comment: mask=sirdgconc)" cids="" cmid="CellMethods::amnsir-twm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d64" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amnsir-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="c2cc0486-19f2-11e7-bdec-ac72891c3257"/>
<item cell_measures="" cell_methods="area: time: mean" cids="" cmid="CellMethods::am-tm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b132" odims="" procNote="" prov="ivg.add2" spid="7f30b964-7fca-11e6-a12d-2358a6a87f04" title="Temporal mean, Sea-ice ocean transect [TRS-na]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="e9fa5c14-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="dim:typeveg" cmid="CellMethods::amnla-tmn" coords="typeveg" description="" dids="" flag_meanings="" flag_values="" label="str-h030" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typeveg} [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="52a0fe48-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:p220" cmid="CellMethods::tmean" coords="p220" description="" dids="" flag_meanings="" flag_values="" label="str-122" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p220} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e23c1a-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean" cids="" cmid="CellMethods::amn-fx" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d58" odims="" procNote="" prov="ivg.add2" spid="a6563724-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field on model atmosphere levels [XY-A]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="62ef559c-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean " cids="" cmid="CellMethods::am-tm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-013" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7dcac96-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where trees (comment: mask=treeFrac)" cids="" cmid="CellMethods::amtr-twm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h064" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amtr-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa260328-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="area: mean where ice_free_sea over sea time: mean" cids="" cmid="CellMethods::amnifs-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a043" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amnifs-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f948921c-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typepasture" cmid="CellMethods::amnlax-tmn" coords="typepasture" description="" dids="" flag_meanings="" flag_values="" label="str-h032" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typepasture} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa229896-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="--MODEL" cell_methods="area: time: mean where sea_ice (comment: mask=siconc)" cids="" cmid="CellMethods::amnsi-twm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b169" odims="" procNote="" prov="SIMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amnsi-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f94c7fbc-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="" cmid="CellMethods::amnlax-tmn" coords="" description="" dids="dim:landUse" flag_meanings="" flag_values="" label="str-h056" odims="landUse" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {landUse:} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa25342a-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-318" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a6561ab4-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field on 40 altitude levels [XY-H40] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7eb4436-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-311" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="9f82d666-609e-11e6-b1b8-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (7 pressure tropospheric levels) [XY-P7T] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7eb125e-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: maximum" cids="" cmid="CellMethods::tmax" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-447" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal Maximum, Global field (single level) [XY-na] [tmax]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="22364c54-c1d0-11e6-9285-ac72891c3257"/>
<item cell_measures="" cell_methods="longitude: mean (comment: basin mean[ along zig-zag grid path]) time: mean" cids="" cmid="CellMethods::bzzmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h004" odims="" procNote="" prov="ivg.add2" spid="a65638b4-8883-11e5-b571-ac72891c3257" title="Temporal mean, Ocean Basin Meridional Section (on density surfaces) [YB-R] [bzzmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529d537e-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="" cell_methods="area: mean where sea" cids="" cmid="CellMethods::amns-fx" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h050" odims="" procNote="" prov="ivg.add2" spid="a6560aec-8883-11e5-b571-ac72891c3257" title="Temporal mean, Ocean Basin Zonal Mean [YB-na] [amns-fx]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa24e6be-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: maximum" cids="dim:height2m" cmid="CellMethods::tmax" coords="height2m" description="" dids="" flag_meanings="" flag_values="" label="str-130" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal Maximum, Global field (single level) [XY-na] {:height2m} [tmax]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e2a074-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacellg" cell_methods="area: time: mean where grounded_ice_sheet (comment: mask=sfgrlf)" cids="" cmid="CellMethods::amngi-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b164" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="f9cbf75e-596b-11e6-a4be-ac72891c3257" title="Temporal mean, Greenland Polar Stereographic Grid [XYG-na] [amngi-twmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="943b69e8-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-018" odims="" procNote="" prov="CMIP5/OMIP" spid="a6563724-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field on model atmosphere levels [XY-A] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7dcede6-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b192" odims="" procNote="" prov="ivg.add2" spid="a6562f4a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (7 pressure levels) [XY-P7] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="e9fb0754-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:p500" cmid="CellMethods::tmean" coords="p500" description="" dids="" flag_meanings="" flag_values="" label="str-181" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p500} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e53744-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="dim:effectRadLi tau" flag_meanings="" flag_values="" label="str-d85" odims="effectRadLi tau" procNote="" prov="ivg.add2" spid="a6562f4a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (7 pressure levels) [XY-P7] {effectRadLi tau:} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="af25829c-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typepdec" cmid="CellMethods::amnlax-tmn" coords="typepdec" description="" dids="" flag_meanings="" flag_values="" label="str-h035" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typepdec} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa232a2c-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typetreebd" cmid="CellMethods::amnlax-tmn" coords="typetreebd" description="" dids="" flag_meanings="" flag_values="" label="str-h043" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typetreebd} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f2edb934-26b8-11e7-8344-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="longitude: mean time: mean" cids="dim:p100" cmid="CellMethods::zmean" coords="p100" description="" dids="" flag_meanings="" flag_values="" label="str-d17" odims="" procNote="" prov="ivg.add2" spid="6dc25718-a24a-11e5-a29d-5404a60d96b5" title="Temporal mean, Zonal mean (on surface) [Y-na] {:p100} [zmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="63c11fe8-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-174" odims="" procNote="" prov="CMIP5/OMIP" spid="a6563594-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Atmospheric profiles (half levels) at specified sites [S-AH] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7e4dd1c-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="dim:sdepth1" cmid="CellMethods::tpt" coords="sdepth1" description="" dids="" flag_meanings="" flag_values="" label="str-d88" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {:sdepth1} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="af258fa8-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where sea_ice_melt_pond (comment: mask=simpconc)" cids="" cmid="CellMethods::amnsimp-twm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d67" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="c2cc3578-19f2-11e7-bdec-ac72891c3257"/>
<item cell_measures="area: areacello volume: volcello" cell_methods="area: mean" cids="" cmid="CellMethods::amn-fx" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d12" odims="" procNote="" prov="ivg.add2" spid="a6562c2a-8883-11e5-b571-ac72891c3257" title="No temporal dimensions ... fixed field, Global ocean field on model levels [XY-O] [amn-fx]" tmid="7a96eb30-8042-11e6-97ee-ac72891c3257" uid="62ee7ee2-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-296" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656114a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (27 pressure levels) [XY-P27] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7ea8046-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="--OPT" cell_methods="area: mean where sea time: mean" cids="" cmid="CellMethods::amse-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a096" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amse-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="00b9aebc-8f1d-11e6-a5a6-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: maximum" cids="dim:height100m" cmid="CellMethods::tmax" coords="height100m" description="" dids="" flag_meanings="" flag_values="" label="str-h057" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:height100m} [tmax]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa2573e0-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="" cell_methods="area: time: mean where floating_ice_shelf (comment: mask=sftflf)" cids="" cmid="CellMethods::amnfi-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-x184" odims="" procNote="" prov="ISMIP6" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Temporal mean, Masked global mean - floating ice shelves [amnfi-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="87a85d84-a3fd-11e6-bfbb-ac72891c3257"/>
<item cell_measures="" cell_methods="area: mean where sea time: mean" cids="" cmid="CellMethods::amse-tmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-135" odims="" procNote="" prov="CMIP5/OMIP" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global mean/constant [na-na] [amse-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e2e214-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: minimum within days time: mean over days" cids="dim:height2m" cmid="CellMethods::dmin" coords="height2m" description="" dids="" flag_meanings="" flag_values="" label="str-082" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:height2m} [dmin]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e03122-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where cloud" cids="" cmid="CellMethods::amncl-twm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a049" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amncl-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f948cdfe-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typetree" cmid="CellMethods::amnlax-tmn" coords="typetree" description="" dids="" flag_meanings="" flag_values="" label="str-h022" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typetree} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa21f210-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land" cids="" cmid="CellMethods::amla" coords="" description="" dids="dim:sdepth" flag_meanings="" flag_values="" label="str-b290" odims="sdepth" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Time Invariant Global Field on Soil Levels [XY-na] {sdepth:} [amla]" tmid="7a96eb30-8042-11e6-97ee-ac72891c3257" uid="81737d70-f751-11e6-8899-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: mean" cids="" cmid="CellMethods::am-tm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b120" odims="" procNote="" prov="ivg.add2" spid="a65612da-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (4 pressure levels) [XY-P4]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="70409cbe-f2a0-11e6-9a05-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-287" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656114a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (27 pressure levels) [XY-P27] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7ea1f3e-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacellg" cell_methods="area: time: mean where ice_sheet" cids="" cmid="CellMethods::amni-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b136" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="f9cbf75e-596b-11e6-a4be-ac72891c3257" title="Temporal mean, Greenland Polar Stereographic Grid [XYG-na] [amni-twmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="943abae8-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="area: areacello" cell_methods="area: mean time: maximum" cids="" cmid="CellMethods::tmax" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-147" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal Maximum, Global field (single level) [XY-na] [tmax]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e37f76-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: maximum within days time: mean over days" cids="dim:height2m" cmid="CellMethods::dmax" coords="height2m" description="" dids="" flag_meanings="" flag_values="" label="str-083" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:height2m} [dmax]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e04194-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where sea_ice (comment: mask=siitdconc)" cids="" cmid="CellMethods::amnsib-twm" coords="" description="" dids="dim:iceband" flag_meanings="" flag_values="" label="str-d57" odims="iceband" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {iceband:} [amnsib-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="c2cae79a-19f2-11e7-bdec-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: minimum" cids="" cmid="CellMethods::tmin" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a423" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal Minimum, Global field (single level) [XY-na] [tmin]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="e9f91796-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="dim:typeshrub" cmid="CellMethods::amnla-tmn" coords="typeshrub" description="" dids="" flag_meanings="" flag_values="" label="str-h012" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typeshrub} [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529da6e4-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typesever" cmid="CellMethods::amnlax-tmn" coords="typesever" description="" dids="" flag_meanings="" flag_values="" label="str-h020" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typesever} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa21e9a0-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typeburnt" cmid="CellMethods::amnlax-tmn" coords="typeburnt" description="" dids="" flag_meanings="" flag_values="" label="str-h028" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typeburnt} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa227bea-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="" cell_methods="longitude: mean time: point" cids="" cmid="CellMethods::zmean-tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b128" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a65620f4-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Zonal mean (on model levels) [Y-A] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="e4af3a60-8946-11e6-a0c4-5404a60d96b5"/>
<item cell_measures="area: areacello" cell_methods="area: mean where sea" cids="dim:depth300m" cmid="CellMethods::amns-fx" coords="depth300m" description="" dids="" flag_meanings="" flag_values="" label="str-h047" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:depth300m} [amns-fx]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa248642-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacellg" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b123" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="fa1c83ea-596b-11e6-a4be-ac72891c3257" title="Temporal mean, Antarctic Polar Stereographic Grid [XYA-na] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="943a67aa-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typetreebe" cmid="CellMethods::amnlax-tmn" coords="typetreebe" description="" dids="" flag_meanings="" flag_values="" label="str-h060" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typetreebe} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f2ef7f62-26b8-11e7-8344-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: mean" cids="dim:sdepth1" cmid="CellMethods::amnla-tmn" coords="sdepth1" description="" dids="" flag_meanings="" flag_values="" label="str-218" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:sdepth1} [amnla-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e71b5e-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a076" odims="" procNote="" prov="CMIP5/OMIP" spid="6dc25718-a24a-11e5-a29d-5404a60d96b5" title="Temporal mean, Zonal mean (on surface) [Y-na] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="94393b0a-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean" cids="dim:height2m" cmid="CellMethods::am-tm" coords="height2m" description="" dids="" flag_meanings="" flag_values="" label="str-d54" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:height2m} [am-tm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="af234522-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="--OPT" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a071" odims="" procNote="" prov="CMIP5/OMIP" spid="a6562c2a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global ocean field on model levels [XY-O] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="00b8a31e-8f1d-11e6-a5a6-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-268" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a65615fa-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (3 pressure levels) [XY-P3] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7e9888a-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where sea_ice (comment: mask=siconc)" cids="" cmid="CellMethods::amnsi-twm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b220" odims="" procNote="" prov="SIMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [amnsi-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f94dae78-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="dim:pl700" cmid="CellMethods::tpt" coords="pl700" description="" dids="" flag_meanings="" flag_values="" label="str-d77" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {:pl700} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="af24ee2c-1e00-11e7-a625-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="dim:p850" cmid="CellMethods::tpt" coords="p850" description="" dids="" flag_meanings="" flag_values="" label="str-314" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {:p850} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7eb228a-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="" cell_methods="time: mean within years time: mean over years" cids="" cmid="CellMethods::aclim" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a449" odims="" procNote="" prov="ivg.add2" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Climatological mean, Global mean/constant [na-na] [aclim]" tmid="7a97ae58-8042-11e6-97ee-ac72891c3257" uid="e9f96386-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean" cids="dim:p100" cmid="CellMethods::am-tm" coords="p100" description="" dids="" flag_meanings="" flag_values="" label="str-d53" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p100}" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="62eef566-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land time: point" cids="" cmid="CellMethods::amnla-tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h041" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] [amnla-tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="fa23fd12-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean time: mean within days time: mean over days" cids="" cmid="CellMethods::amn-tdnl" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-340" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Mean Diurnal Cycle, Global field (single level) [XY-na]" tmid="7a972f78-8042-11e6-97ee-ac72891c3257" uid="f7ebefee-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-106" odims="" procNote="" prov="CMIP5/OMIP" spid="a6560fba-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global mean/constant [na-na] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e17186-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean" cids="dim:p10" cmid="CellMethods::am-tm" coords="p10" description="" dids="" flag_meanings="" flag_values="" label="str-d50" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:p10}" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="62eed4c8-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-010" odims="" procNote="" prov="CMIP5/OMIP" spid="a6563274-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field on model atmosphere half-levels [XY-AH] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7dc8770-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean" cids="" cmid="CellMethods::amn-fx" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-054" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="No temporal dimensions ... fixed field, Global field (single level) [XY-na]" tmid="7a96eb30-8042-11e6-97ee-ac72891c3257" uid="f7decc10-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-055" odims="" procNote="" prov="CMIP5/OMIP" spid="a6563724-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field on model atmosphere levels [XY-A] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7ded7a0-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="time: mean within years time: mean over years" cids="" cmid="CellMethods::aclim" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a019" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Climatological mean, Global field (single level) [XY-na] [aclim]" tmid="7a97ae58-8042-11e6-97ee-ac72891c3257" uid="e9f90b70-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean" cids="" cmid="CellMethods::am-tm" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-d49" odims="" procNote="" prov="ivg.add2" spid="a6563724-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field on model atmosphere levels [XY-A]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="62eebe98-1617-11e7-a126-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: sum" cids="" cmid="CellMethods::tsum" coords="" description="" dids="dim:landUse" flag_meanings="" flag_values="" label="str-b181" odims="landUse" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {landUse:} [tsum]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="e9fae74c-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="area: mean where landuse time: point" cids="" cmid="CellMethods::amlu-tpt" coords="" description="" dids="dim:landUse" flag_meanings="" flag_values="" label="str-b201" odims="landUse" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {landUse:}" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="e9fb218a-c1ce-11e6-8067-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="area: mean where sea time: mean" cids="dim:depth0m" cmid="CellMethods::amse-tmn" coords="depth0m" description="" dids="" flag_meanings="" flag_values="" label="str-a061" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:depth0m} [amse-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f9495c2e-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacello" cell_methods="area: mean where sea depth: sum where sea (top 100m only) time: mean" cids="dim:olayer100m" cmid="CellMethods::amds-tmn" coords="olayer100m" description="" dids="" flag_meanings="" flag_values="" label="str-d06" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:olayer100m} [amds-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="63c0988e-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="--OPT" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-a046" odims="" procNote="" prov="CMIP5/OMIP" spid="a6563724-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field on model atmosphere levels [XY-A] [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f94870ca-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="dim:depth300m" cmid="CellMethods::tmean" coords="depth300m" description="" dids="" flag_meanings="" flag_values="" label="str-d29" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:depth300m} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="63c1f684-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typec4pft typepasture" cmid="CellMethods::amnlax-tmn" coords="typec4pft typepasture" description="" dids="" flag_meanings="" flag_values="" label="str-h065" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typec4pft typepasture} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa2610ca-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="" cell_methods="longitude: mean (comment: basin mean[ along zig-zag grid path]) time: mean" cids="" cmid="CellMethods::bzzmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h018" odims="" procNote="" prov="ivg.add2" spid="a655ffac-8883-11e5-b571-ac72891c3257" title="Temporal mean, Ocean Basin Meridional Section [YB-O] [bzzmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529e94b4-1ed7-11e7-9366-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="" cmid="CellMethods::tpt" coords="" description="" dids="dim:tau" flag_meanings="" flag_values="" label="str-d46" odims="tau" procNote="" prov="ivg.add2" spid="a6562770-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (16 altitudes) [XY-H16] {tau:} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="63c3502e-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-078" odims="" procNote="" prov="CMIP5/OMIP" spid="a6561ab4-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field on 40 altitude levels [XY-H40] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e0026a-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: point" cids="dim:height2m" cmid="CellMethods::tpt" coords="height2m" description="" dids="" flag_meanings="" flag_values="" label="str-250" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Instantaneous value (i.e. synoptic or time-step value), Global field (single level) [XY-na] {:height2m} [tpt]" tmid="7a976ce0-8042-11e6-97ee-ac72891c3257" uid="f7e8b996-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacello" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-037" odims="" procNote="" prov="CMIP5/OMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7ddef0c-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacellg" cell_methods="area: time: mean where floating_ice_shelf (comment: mask=sftflf)" cids="" cmid="CellMethods::amnfi-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b125" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="fa1c83ea-596b-11e6-a4be-ac72891c3257" title="Temporal mean, Antarctic Polar Stereographic Grid [XYA-na] [amnfi-twmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="943a846a-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: time: mean where sea_ice (comment: mask=siconc)" cids="" cmid="CellMethods::amnsi-twm" coords="" description="" dids="dim:iceband" flag_meanings="" flag_values="" label="str-b117" odims="iceband" procNote="" prov="SIMIP" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {iceband:} [amnsi-twm]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f94ad41e-80ba-11e6-ab6e-5404a60d96b5"/>
<item cell_measures="area: areacello" cell_methods="area: mean where sea" cids="" cmid="CellMethods::amns-fx" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h051" odims="" procNote="" prov="ivg.add2" spid="a6562c2a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global ocean field on model levels [XY-O] [amns-fx]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa250ed2-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="area: areacellg" cell_methods="area: time: mean where ice_sheet" cids="" cmid="CellMethods::amni-twmn" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-b159" odims="" procNote="" prov="CMIP5, endorsed MIPs" spid="fa1c83ea-596b-11e6-a4be-ac72891c3257" title="Temporal mean, Antarctic Polar Stereographic Grid [XYA-na] [amni-twmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="943b4f4e-8b06-11e6-94d1-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="longitude: mean time: mean" cids="" cmid="CellMethods::zmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-261" odims="" procNote="" prov="CMIP5/OMIP" spid="a6561924-8883-11e5-b571-ac72891c3257" title="Temporal mean, Atmospheric Zonal Mean (on 39 pressure levels) [Y-P39] [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="f7e94ce4-562c-11e6-a2a4-ac72891c3257"/>
<item cell_measures="area: areacella" cell_methods="time: mean" cids="" cmid="CellMethods::tmean" coords="" description="" dids="dim:tau" flag_meanings="" flag_values="" label="str-d41" odims="tau" procNote="" prov="ivg.add2" spid="a6562770-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (16 altitudes) [XY-H16] {tau:} [tmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="63c30cb8-15f2-11e7-87e0-5404a60d96b5"/>
<item cell_measures="area: areacella" cell_methods="area: mean where land over all_area_types time: mean" cids="dim:typec4pft typenatgr" cmid="CellMethods::amnlax-tmn" coords="typec4pft typenatgr" description="" dids="" flag_meanings="" flag_values="" label="str-h066" odims="" procNote="" prov="ivg.add2" spid="a656047a-8883-11e5-b571-ac72891c3257" title="Temporal mean, Global field (single level) [XY-na] {:typec4pft typenatgr} [amnlax-tmn]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="fa261548-267c-11e7-9bed-ac72891c3257"/>
<item cell_measures="" cell_methods="time: mean grid_longitude: mean" cids="" cmid="CellMethods::bgzmean" coords="" description="" dids="" flag_meanings="" flag_values="" label="str-h006" odims="" procNote="" prov="ivg.add2" spid="a65638b4-8883-11e5-b571-ac72891c3257" title="Temporal mean, Ocean Basin Meridional Section (on density surfaces) [YB-R] [bgzmean]" tmid="cf34c974-80be-11e6-97ee-ac72891c3257" uid="529d692c-1ed7-11e7-9366-ac72891c3257"/>
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<grids id="grd" label="grids" title="1.7 Specification of dimensions" uid="SECTION:grids" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item altLabel="depth" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="coordinate value for 700 m ocean depth" direction="increasing" isGrid="" isIndex="" label="depth700m" positive="down" requested="" standardName="depth" tables="emMon" title="depth" tolRequested="" type="double" uid="dim:depth700m" units="m" valid_max="720.0" valid_min="680.0" value="700"/>
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<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typec4pft" positive="" requested="" standardName="area_type" tables="Lmon" title="surface type" tolRequested="" type="character" uid="dim:typec4pft" units="" value="c4_plant_functional_types"/>
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<item altLabel="sza" axis="" bounds="no" boundsRequested="" boundsValues="" coords="" description="5 solar zenith angles for PARASOL reflectances" direction="increasing" isGrid="" isIndex="" label="sza5" positive="" requested="0. 20. 40. 60. 80." standardName="solar_zenith_angle" tables="cfMon, cfOff, cfDay, cf3hr" title="solar zenith angle" tolRequested="0.001" type="double" uid="dim:sza5" units="degree" value=""/>
<item altLabel="loc" axis="" bounds="no" boundsRequested="" boundsValues="" coords="" description="COSP profile in instantaneous curtain mode" direction="increasing" isGrid="yes" isIndex="ok" label="location" positive="" requested="" standardName="" tables="cf3hr" title="location index" tolRequested="" type="integer" uid="dim:location" units="" value=""/>
<item altLabel="lat" axis="Y" bounds="yes" boundsRequested="" boundsValues="" coords="" description="" direction="increasing" isGrid="" isIndex="" label="latitude" positive="" requested="" standardName="latitude" tables="fx, Amon, Lmon, LImon, OImon, aero, day, 6hrLev, 6hrPlev, 3hr,  Oclim, Oyr, Omon, cfMon, cfOff, cfDay, cf3hr" title="latitude" tolRequested="" type="double" uid="dim:latitude" units="degrees_north" valid_max="90.0" valid_min="-90.0" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="" direction="decreasing" isGrid="" isIndex="" label="plev23" positive="down" requested="100000. 92500. 85000. 70000. 60000. 50000. 40000. 30000. 25000. 20000. 15000. 10000. 7000. 5000. 3000. 2000. 1000. 700. 500. 300. 200. 100. 40." standardName="air_pressure" tables="" title="pressure" tolRequested="0.001" type="double" uid="dim:plev23" units="Pa" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typetreend" positive="" requested="" standardName="area_type" tables="" title="Tree area type (Narrowleaf Deciduous)" tolRequested="" type="character" uid="dim:typetreend" units="" value="trees"/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typetreene" positive="" requested="" standardName="area_type" tables="" title="Tree area type (Narrowleaf Evergreen)" tolRequested="" type="character" uid="dim:typetreene" units="" value="trees"/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="" direction="decreasing" isGrid="" isIndex="" label="plev27" positive="down" requested="100000. 97500. 95000. 92500. 90000. 87500. 85000. 82500. 80000. 77500. 75000. 70000. 65000. 60000. 55000. 50000. 45000. 40000. 35000. 30000. 25000. 22500. 20000. 17500. 15000. 12500. 10000." standardName="air_pressure" tables="" title="pressure" tolRequested="0.001" type="double" uid="dim:plev27" units="Pa" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typepdec" positive="" requested="" standardName="area_type" tables="Lmon" title="surface type" tolRequested="" type="character" uid="dim:typepdec" units="" value="primary_deciduous_trees"/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="10 hPa" direction="" isGrid="" isIndex="" label="p10" positive="down" requested="" standardName="air_pressure" tables="cfDay" title="pressure" tolRequested="" type="double" uid="dim:p10" units="Pa" value="1000."/>
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<item altLabel="spectband" axis="" bounds="yes" boundsRequested="" boundsValues="" coords="" description="Spectral Band of MISR" direction="" isGrid="" isIndex="" label="misrBands" positive="" requested="" standardName="wave_frequency" tables="" title="MISR Spectral Frequency Band" tolRequested="" type="double" uid="dim:misrBands" units="s-1" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="" direction="decreasing" isGrid="" isIndex="" label="plev3h" positive="down" requested="10000. 1000. 100." standardName="air_pressure" tables="6hrPlev" title="pressure" tolRequested="0.001" type="double" uid="dim:plev3h" units="Pa" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typeveg" positive="" requested="" standardName="area_type" tables="" title="Vegetation area type" tolRequested="" type="character" uid="dim:typeveg" units="" value="vegetation"/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typec3pft" positive="" requested="" standardName="area_type" tables="Lmon" title="surface type" tolRequested="" type="character" uid="dim:typec3pft" units="" value="c3_plant_functional_types"/>
<item altLabel="scatratio" axis="" bounds="yes" boundsRequested="0. 0.01 0.01 1.2 1.2 3. 3. 5. 5. 7. 7. 10. 10. 15. 15. 20. 20. 25. 25. 30. 30. 40. 40. 50. 50. 60. 60. 80. 80. 100000." boundsValues="0, 0.01, 1.2, 3, 5, 7, 10, 15, 20, 25, 30, 40, 50, 60, 80, 100000" coords="" description="15 bins of scattering ratio for the CALIPSO simulator CFAD" direction="increasing" isGrid="" isIndex="" label="scatratio" positive="" requested="0.005 0.605 2.1 4. 6. 8.5 12.5 17.5 22.5 27.5 35. 45. 55. 70. 50040." standardName="backscattering_ratio" tables="cfOff, cf3hr" title="lidar backscattering ratio" tolRequested="0.001" type="double" uid="dim:scatratio" units="1.0" value="0.005, 0.605, 2.1, 4, 6, 8.5, 12.5, 17.5, 22.5, 27.5, 35, 45, 55, 70, 50040"/>
<item altLabel="lev" axis="Z" bounds="yes" boundsRequested="" boundsValues="" coords="" description="generic ocean model vertical coordinate (nondimensional or dimensional)" direction="" isGrid="" isIndex="ok" label="olevel" positive="down" requested="" standardName="" tables="fx, Oclim, Oyr, Omon" title="ocean model level" tolRequested="" type="double" uid="dim:olevel" units="" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="68000. 44000." coords="" description="pressure layer of mid-level cloud in ISCCP simulator" direction="decreasing" isGrid="" isIndex="" label="p560" positive="down" requested="" standardName="air_pressure" tables="cfMon, cfOff, cf3hr" title="pressure" tolRequested="" type="double" uid="dim:p560" units="Pa" value="56000."/>
<item altLabel="depth" axis="Z" bounds="no" boundsRequested="" boundsValues="0. 100." coords="" description="coordinate for 100 m ocean surface layer" direction="increasing" isGrid="" isIndex="" label="olayer100m" positive="down" requested="" standardName="depth" tables="Omon" title="depth" tolRequested="" type="double" uid="dim:olayer100m" units="m" valid_max="100.0" valid_min="0.0" value="50."/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="There are 19  requested levels. If the upper levels are above the model top they should be omitted." direction="decreasing" isGrid="" isIndex="" label="plev19" positive="down" requested="100000. 92500. 85000. 70000. 60000. 50000. 40000. 30000. 25000. 20000. 15000. 10000. 7000. 5000. 3000. 2000. 1000. 500. 100." standardName="air_pressure" tables="Amon" title="pressure" tolRequested="0.001" type="double" uid="dim:plev19" units="Pa" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="44000. 0.0" coords="" description="pressure layer of high-level cloud in ISCCP simulator" direction="decreasing" isGrid="" isIndex="" label="p220" positive="down" requested="" standardName="air_pressure" tables="cfMon, cfOff, cf3hr" title="pressure" tolRequested="" type="double" uid="dim:p220" units="Pa" value="22000."/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="There are 10  requested levels. If the upper levels are above the model top they should be omitted." direction="decreasing" isGrid="" isIndex="" label="plev10" positive="down" requested="100000. 85000. 70000. 50000. 25000. 15000. 10000. 7000. 5000. 1000." standardName="air_pressure" tables="Amon" title="pressure" tolRequested="0.001" type="double" uid="dim:plev10" units="Pa" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typeshrub" positive="" requested="" standardName="area_type" tables="" title="Shrub area type" tolRequested="" type="character" uid="dim:typeshrub" units="" value="shrubs"/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typeburnt" positive="" requested="" standardName="area_type" tables="" title="Burnt vegetation area type" tolRequested="" type="character" uid="dim:typeburnt" units="" value="burnt_vegetation"/>
<item altLabel="alt16" axis="Z" bounds="yes" boundsRequested="-99000  0 0  500 500 1000 1000 1500 1500 2000 2000 2500 2500 3000 3000 4000 4000 5000 5000 7000 7000 9000 9000 11000 11000 13000 13000 15000 15000 17000 17000 99000" boundsValues="" coords="" description="MISR  vertical coordinate heights" direction="increasing" isGrid="" isIndex="" label="alt16" positive="up" requested="0 250 750 1250 1750 2250 2750 3500 4500 6000 8000 10000 12000 14500 16000 18000" standardName="altitude" tables="cfMon, cfOff, cfDay, cf3hr" title="altitude" tolRequested="0.001" type="double" uid="dim:alt16" units="m" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typetree" positive="" requested="" standardName="area_type" tables="" title="Tree area type" tolRequested="" type="character" uid="dim:typetree" units="" value="trees"/>
<item altLabel="time" axis="T" bounds="no" boundsRequested="" boundsValues="" coords="" description="synoptic times (for fields that are not time-means)" direction="increasing" isGrid="" isIndex="" label="time1" positive="" requested="" standardName="time" tables="6hrLev, 6hrPlev, 3hr, cf3hr, cfSites" title="time" tolRequested="" type="double" uid="dim:time1" units="days since ?" value=""/>
<item altLabel="time" axis="T" bounds="yes" boundsRequested="" boundsValues="" coords="" description="climatological times" direction="increasing" isGrid="" isIndex="" label="time2" positive="" requested="" standardName="time" tables="Oclim, Amon" title="time" tolRequested="" type="double" uid="dim:time2" units="days since ?" value=""/>
<item altLabel="xant" axis="" bounds="" boundsRequested="" boundsValues="" coords="" description="X-coordinate of Antarctic grid (stubb)" direction="" isGrid="" isIndex="" label="xant" positive="" requested="" standardName="projection_x_coordinate" tables="" title="" tolRequested="" type="double" uid="dim:xant" units="km" value=""/>
<item altLabel="depth" axis="Z" bounds="yes" boundsRequested="" boundsValues="0.0 0.1" coords="" description="coordinate value for topmost 0.1 meter layer of soil" direction="increasing" isGrid="" isIndex="" label="sdepth1" positive="down" requested="" standardName="depth" tables="Lmon, day, 3hr" title="depth" tolRequested="" type="double" uid="dim:sdepth1" units="m" valid_max="0.2" valid_min="0.0" value="0.05"/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="85000. 60000." coords="" description="700 hPa" direction="" isGrid="" isIndex="" label="p700" positive="down" requested="" standardName="air_pressure" tables="cfDay" title="pressure" tolRequested="" type="double" uid="dim:p700" units="Pa" value="70000."/>
<item altLabel="region" axis="" bounds="no" boundsRequested="" boundsValues="" coords="region" description="Ice Sheet" direction="" isGrid="" isIndex="" label="icesheet" positive="" requested="antarctic greenland" standardName="region" tables="" title="Ice Sheet" tolRequested="" type="character" uid="dim:icesheet" units="" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="1000 hPa" direction="" isGrid="" isIndex="" label="p1000" positive="down" requested="" standardName="air_pressure" tables="" title="pressure" tolRequested="" type="double" uid="dim:p1000" units="Pa" value="100000."/>
<item altLabel="effectRadIc" axis="" bounds="" boundsRequested="0. 10. 10. 20. 20. 30. 30. 40. 40. 60. 60. 90." boundsValues="" coords="" description="Effective Radius of Ice Aerosols" direction="" isGrid="" isIndex="" label="effectRadIc" positive="" requested="5. 15. 25. 35. 50. 75." standardName="" tables="" title="Effective Radius [Values to be specified]" tolRequested="" type="double" uid="dim:effectRadIc" units="micron" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typeresidual" positive="" requested="" standardName="" tables="" title="Residual area" tolRequested="" type="character" uid="dim:typeresidual" units="" value="residual"/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typemp" positive="" requested="" standardName="area_type" tables="" title="Melt pond area type" tolRequested="" type="character" uid="dim:typemp" units="" value="sea_ice_melt_pond"/>
<item altLabel="lev" axis="Z" bounds="yes" boundsRequested="" boundsValues="" coords="" description="atmospheric model's lowest level" direction="" isGrid="" isIndex="ok" label="alev1" positive="" requested="" standardName="" tables="aero" title="lowest atmospheric model level" tolRequested="" type="double" uid="dim:alev1" units="" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typebare" positive="" requested="" standardName="area_type" tables="Lmon" title="surface type" tolRequested="" type="character" uid="dim:typebare" units="" value="bare_ground"/>
<item altLabel="spectband" axis="" bounds="yes" boundsRequested="" boundsValues="" coords="" description="Spectral Band" direction="" isGrid="" isIndex="" label="spectband" positive="" requested="" standardName="sensor_band_central_radiation_wavenumber" tables="" title="Spectral Frequency Band" tolRequested="" type="double" uid="dim:spectband" units="m-1" value=""/>
<item altLabel="lev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="atmospheric model &quot;half&quot; level" direction="" isGrid="" isIndex="ok" label="alevhalf" positive="up" requested="" standardName="" tables="Amon, cfMon, cfDay, cf3hr, cfSites" title="atmospheric model half-level" tolRequested="" type="double" uid="dim:alevhalf" units="" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="100000. 68000." coords="" description="pressure layer of low-level cloud in ISCCP simulator" direction="decreasing" isGrid="" isIndex="" label="p840" positive="down" requested="" standardName="air_pressure" tables="cfMon, cfOff, cf3hr" title="pressure" tolRequested="" type="double" uid="dim:p840" units="Pa" value="84000."/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typenatgr" positive="" requested="" standardName="area_type" tables="" title="Natural grass area type" tolRequested="" type="character" uid="dim:typenatgr" units="" value="natural_grasses"/>
<item altLabel="line" axis="" bounds="no" boundsRequested="" boundsValues="" coords="passage" description="opening, passage, strait, channel, etc." direction="" isGrid="" isIndex="" label="oline" positive="" requested="barents_opening bering_strait canadian_archipelago denmark_strait drake_passage english_channel pacific_equatorial_undercurrent faroe_scotland_channel florida_bahamas_strait fram_strait iceland_faroe_channel indonesian_throughflow mozambique_channel taiwan_luzon_straits windward_passage" standardName="region" tables="Omon" title="ocean passage" tolRequested="" type="character" uid="dim:oline" units="" value=""/>
<item altLabel="line" axis="" bounds="no" boundsRequested="" boundsValues="" coords="passage" description="1. Fram Strait = (11.5W,81.3N) to (10.5E,79.6N); 2. Canadian Archipelego = (128.2W,70.6N) to (59.3W,82.1N); 3. Barents opening = (16.8E,76.5N) to (19.2E,70.2N); 4. Bering Strait = (171W,66.2N) to (166W,65N);" direction="" isGrid="" isIndex="" label="siline" positive="" requested="Fram Strait, Canadian Archipelego, Barents opening, Bering Strait" standardName="region" tables="SImon" title="ocean passage" tolRequested="" type="character" uid="dim:siline" units="" value=""/>
<item altLabel="basin" axis="" bounds="no" boundsRequested="" boundsValues="" coords="region" description="" direction="" isGrid="" isIndex="" label="basin" positive="" requested="atlantic_arctic_ocean indian_pacific_ocean global_ocean" standardName="region" tables="Omon" title="ocean basin" tolRequested="" type="character" uid="dim:basin" units="" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="" direction="decreasing" isGrid="" isIndex="" label="plev7h" positive="down" requested="92500. 85000. 70000. 60000. 50000. 25000.  5000." standardName="air_pressure" tables="6hrPlev" title="pressure" tolRequested="0.001" type="double" uid="dim:plev7h" units="Pa" value=""/>
<item altLabel="plev" axis="Z" bounds="yes" boundsRequested="100000. 80000. 80000. 68000. 68000. 56000. 56000. 44000. 44000. 31000. 31000. 18000. 18000.  0." boundsValues="" coords="" description="7 pressure layers defined by ISCCP simulator" direction="decreasing" isGrid="" isIndex="" label="plev7c" positive="down" requested="90000. 74000. 62000. 50000. 37500. 24500. 9000." standardName="air_pressure" tables="cfMon, cfDay" title="pressure" tolRequested="0.001" type="double" uid="dim:plev7c" units="Pa" value=""/>
<item altLabel="height" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="~10 m standard wind speed height" direction="increasing" isGrid="" isIndex="" label="height10m" positive="up" requested="" standardName="height" tables="Amon, day, 3hr, cf3hr, cfSites" title="height" tolRequested="" type="double" uid="dim:height10m" units="m" valid_max="30.0" valid_min="1.0" value="10."/>
<item altLabel="site" axis="" bounds="no" boundsRequested="" boundsValues="" coords="" description="an integer assigned to each of 119 stations (standard) and 73 stations (aquaplanet)" direction="" isGrid="yes" isIndex="ok" label="site" positive="" requested="" standardName="" tables="cfSites" title="site index" tolRequested="" type="integer" uid="dim:site" units="" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="850 hPa" direction="" isGrid="" isIndex="" label="p850" positive="down" requested="" standardName="air_pressure" tables="cfDay" title="pressure" tolRequested="" type="double" uid="dim:p850" units="Pa" value="85000."/>
<item altLabel="depth" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="coordinate value for 300 m ocean depth" direction="increasing" isGrid="" isIndex="" label="depth300m" positive="down" requested="" standardName="depth" tables="emMon" title="depth" tolRequested="" type="double" uid="dim:depth300m" units="m" valid_max="320.0" valid_min="280.0" value="300"/>
<item altLabel="effectRadLi" axis="" bounds="" boundsRequested="0.  8. 8. 10. 10. 13. 13. 15. 15. 20. 20. 30." boundsValues="" coords="" description="Effective Radius of Liquid Aerosols" direction="" isGrid="" isIndex="" label="effectRadLi" positive="" requested="4. 9. 11.5 14. 17.5 25." standardName="" tables="" title="Effective Radius [Values to be specified]" tolRequested="" type="double" uid="dim:effectRadLi" units="micron" value=""/>
<item altLabel="depth" axis="Z" bounds="yes" boundsRequested="" boundsValues="" coords="" description="Soil layers (depth). If soil layer thicknesses vary from one location to another, interpolate to a standard set of depths.  Ideally, the interpolation should preserve the vertical integral where appropriate (e.g. for layer mass content)." direction="increasing" isGrid="" isIndex="" label="sdepth" positive="down" requested="" standardName="depth" tables="Lmon, LImon" title="depth" tolRequested="" type="double" uid="dim:sdepth" units="m" valid_max="200.0" valid_min="0.0" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typetreebd" positive="" requested="" standardName="area_type" tables="" title="Tree area type (Broadleaf Deciduous)" tolRequested="" type="character" uid="dim:typetreebd" units="" value="trees"/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typetreebe" positive="" requested="" standardName="area_type" tables="" title="Tree area type (Broadleaf Evergreen)" tolRequested="" type="character" uid="dim:typetreebe" units="" value="trees"/>
<item altLabel="lon" axis="X" bounds="yes" boundsRequested="" boundsValues="" coords="" description="" direction="increasing" isGrid="" isIndex="" label="longitude" positive="" requested="" standardName="longitude" tables="fx, Amon, Lmon, LImon, OImon, aero, day, 6hrLev, 6hrPlev, 3hr,  Oclim, Oyr, Omon, cfMon, cfOff, cfDay, cf3hr" title="longitude" tolRequested="" type="double" uid="dim:longitude" units="degrees_east" valid_max="360.0" valid_min="0.0" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="200 hPa" direction="" isGrid="" isIndex="" label="p200" positive="down" requested="" standardName="air_pressure" tables="cfDay" title="pressure" tolRequested="" type="double" uid="dim:p200" units="Pa" value="20000."/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typecrop" positive="" requested="" standardName="area_type" tables="" title="Crop area type" tolRequested="" type="character" uid="dim:typecrop" units="" value="crops"/>
<item altLabel="tau" axis="" bounds="yes" boundsRequested="0.0  0.3  0.3  1.3  1.3  3.6  3.6  9.4 9.4 23.0 23.0 60.0 60.0 100000." boundsValues="" coords="" description="isccp optical depth categories" direction="increasing" isGrid="" isIndex="" label="tau" positive="" requested="0.15 0.8 2.45 6.5 16.2 41.5 100." standardName="atmosphere_optical_thickness_due_to_cloud" tables="cfMon, cfDay" title="cloud optical thickness" tolRequested="0.001" type="double" uid="dim:tau" units="1.0" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="100 hPa" direction="" isGrid="" isIndex="" label="p100" positive="down" requested="" standardName="air_pressure" tables="cfDay" title="pressure" tolRequested="" type="double" uid="dim:p100" units="Pa" value="10000."/>
<item altLabel="depth" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="coordinate value for 2000 m ocean depth" direction="increasing" isGrid="" isIndex="" label="depth2000m" positive="down" requested="" standardName="depth" tables="emMon" title="depth" tolRequested="" type="double" uid="dim:depth2000m" units="m" valid_max="2200.0" valid_min="1980.0" value="2000"/>
<item altLabel="depth" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="vertical coordinate for ocean surface" direction="increasing" isGrid="" isIndex="" label="depth0m" positive="down" requested="" standardName="depth" tables="Omon" title="depth" tolRequested="" type="double" uid="dim:depth0m" units="m" valid_max="100.0" valid_min="0.0" value="0."/>
<item altLabel="landuse" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="landUse" positive="" requested="primary_and_secondary_land pastures crops urban" standardName="area_type" tables="" title="Land use type" tolRequested="" type="character" uid="dim:landUse" units="" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="Layer from 850 to 600hPa" direction="" isGrid="" isIndex="" label="pl700" positive="down" requested="" standardName="air_pressure" tables="cfDay" title="pressure" tolRequested="" type="double" uid="dim:pl700" units="Pa" value="70000."/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="plant functional type.  Several plant functional types have been defined in the area_type table available at: cf-pcmdi.llnl.gov/documents/cf-standard-names/area-type-table/current/" direction="" isGrid="" isIndex="" label="vegtype" positive="" requested="" standardName="" tables="Lmon" title="plant functional type" tolRequested="" type="character" uid="dim:vegtype" units="" value=""/>
<item altLabel="lev" axis="Z" bounds="yes" boundsRequested="" boundsValues="" coords="" description="generic atmospheric model vertical coordinate (nondimensional or dimensional)" direction="" isGrid="" isIndex="ok" label="alevel" positive="up" requested="" standardName="" tables="Amon, aero, 6hrLev, cfMon, cfDay, cf3hr, cfSites" title="atmospheric model level" tolRequested="" type="double" uid="dim:alevel" units="" value=""/>
<item altLabel="height" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="~100 m height for wind turbine diagnostics" direction="increasing" isGrid="" isIndex="" label="height100m" positive="up" requested="" standardName="height" tables="Amon, day, 3hr, cf3hr, cfSites" title="height" tolRequested="" type="double" uid="dim:height100m" units="m" valid_max="120.0" valid_min="80.0" value="100."/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typesever" positive="" requested="" standardName="area_type" tables="Lmon" title="surface type" tolRequested="" type="character" uid="dim:typesever" units="" value="secondary_evergreen_trees"/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="" direction="decreasing" isGrid="" isIndex="" label="plev8" positive="down" requested="100000. 85000. 70000. 50000. 25000. 10000. 5000. 1000." standardName="air_pressure" tables="day" title="pressure" tolRequested="0.001" type="double" uid="dim:plev8" units="Pa" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="" direction="decreasing" isGrid="" isIndex="" label="plev3" positive="down" requested="85000. 50000. 25000." standardName="air_pressure" tables="6hrPlev" title="pressure" tolRequested="0.001" type="double" uid="dim:plev3" units="Pa" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="" direction="decreasing" isGrid="" isIndex="" label="plev4" positive="down" requested="92500. 85000. 50000. 25000." standardName="air_pressure" tables="6hrPlev" title="pressure" tolRequested="0.001" type="double" uid="dim:plev4" units="Pa" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typesdec" positive="" requested="" standardName="area_type" tables="Lmon" title="surface type" tolRequested="" type="character" uid="dim:typesdec" units="" value="secondary_decidous_trees"/>
<item altLabel="alt40" axis="Z" bounds="yes" boundsRequested="0. 480. 480. 960. 960. 1440. 1440. 1920. 1920. 2400. 2400. 2880. 2880. 3360. 3360. 3840. 3840. 4320. 4320. 4800. 4800. 5280. 5280. 5760. 5760. 6240. 6240. 6720. 6720. 7200. 7200. 7680. 7680. 8160. 8160. 8640. 8640. 9120. 9120. 9600. 9600. 10080. 10080. 10560. 10560. 11040. 11040. 11520. 11520. 12000. 12000. 12480. 12480. 12960. 12960. 13440. 13440. 13920. 13920. 14400. 14400. 14880. 14880. 15360. 15360. 15840. 15840. 16320. 16320. 16800. 16800. 17280. 17280. 17760. 17760. 18240. 18240. 18720. 18720. 19200." boundsValues="" coords="" description="CloudSat vertical coordinate heights" direction="increasing" isGrid="" isIndex="" label="alt40" positive="up" requested="240. 720. 1200. 1680. 2160. 2640. 3120. 3600. 4080. 4560. 5040. 5520. 6000. 6480. 6960. 7440. 7920. 8400. 8880. 9360. 9840. 10320. 10800. 11280. 11760. 12240. 12720. 13200. 13680. 14160. 14640. 15120. 15600. 16080. 16560. 17040. 17520. 18000. 18480. 18960." standardName="altitude" tables="cfMon, cfOff, cfDay, cf3hr" title="altitude" tolRequested="0.001" type="double" uid="dim:alt40" units="m" value=""/>
<item altLabel="type" axis="" bounds="no" boundsRequested="" boundsValues="" coords="type_description" description="" direction="" isGrid="" isIndex="" label="typepasture" positive="" requested="" standardName="area_type" tables="" title="Pasture area type" tolRequested="" type="character" uid="dim:typepasture" units="" value="pastures"/>
<item altLabel="rho" axis="Z" bounds="yes" boundsRequested="" boundsValues="" coords="" description="potential density referenced to 2000 dbar" direction="increasing" isGrid="" isIndex="" label="rho" positive="down" requested="" standardName="sea_water_potential_density" tables="Omon" title="potential density referenced to 2000 dbar" tolRequested="" type="double" uid="dim:rho" units="kg m-3" value=""/>
<item altLabel="depth" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="coordinate value for 100 m ocean depth" direction="increasing" isGrid="" isIndex="" label="depth100m" positive="down" requested="" standardName="depth" tables="Omon" title="depth" tolRequested="" type="double" uid="dim:depth100m" units="m" valid_max="120.0" valid_min="80.0" value="100."/>
<item altLabel="snowband" axis="" bounds="yes" boundsRequested="" boundsValues="" coords="" description="Snow depth bands" direction="" isGrid="" isIndex="" label="snowband" positive="" requested="" standardName="surface_snow_thickness" tables="" title="Snow Depth Band" tolRequested="" type="double" uid="dim:snowband" units="m" value=""/>
<item altLabel="yant" axis="" bounds="" boundsRequested="" boundsValues="" coords="" description="Y-coordinate of Antarctic grid (stubb)" direction="" isGrid="" isIndex="" label="yant" positive="" requested="" standardName="projection_y_coordinate" tables="" title="" tolRequested="" type="double" uid="dim:yant" units="km" value=""/>
<item altLabel="plev" axis="Z" bounds="no" boundsRequested="" boundsValues="" coords="" description="500 hPa" direction="" isGrid="" isIndex="" label="p500" positive="down" requested="" standardName="air_pressure" tables="cfDay" title="pressure" tolRequested="" type="double" uid="dim:p500" units="Pa" value="50000."/>
<item altLabel="iceband" axis="" bounds="yes" boundsRequested="" boundsValues="" coords="" description="Ice depth bands" direction="" isGrid="" isIndex="" label="iceband" positive="" requested="" standardName="sea_ice_thickness" tables="" title="Ice Depth Band" tolRequested="" type="double" uid="dim:iceband" units="m" value=""/>
<item altLabel="time" axis="T" bounds="yes" boundsRequested="" boundsValues="" coords="" description="for time-mean fields" direction="increasing" isGrid="" isIndex="" label="time" positive="" requested="" standardName="time" tables="Oyr, Amon, Lmon, LImon, OImon, aero, day, 3hr, Omon, cfMon, cfOff, cfDay, cf3hr" title="time" tolRequested="" type="double" uid="dim:time" units="days since ?" value=""/>
<item altLabel="xgre" axis="" bounds="" boundsRequested="" boundsValues="" coords="" description="X-coordinate of Greenland grid (stubb)" direction="" isGrid="" isIndex="" label="xgre" positive="" requested="-800000.0 -795000.0 -790000.0 -785000.0 -780000.0 -775000.0 -770000.0 -765000.0 -760000.0 -755000.0 -750000.0 -745000.0 -740000.0 -735000.0 -730000.0 -725000.0 -720000.0 -715000.0 -710000.0 -705000.0 -700000.0 -695000.0 -690000.0 -685000.0 -680000.0 -675000.0 -670000.0 -665000.0 -660000.0 -655000.0 -650000.0 -645000.0 -640000.0 -635000.0 -630000.0 -625000.0 -620000.0 -615000.0 -610000.0 -605000.0 -600000.0 -595000.0 -590000.0 -585000.0 -580000.0 -575000.0 -570000.0 -565000.0 -560000.0 -555000.0 -550000.0 -545000.0 -540000.0 -535000.0 -530000.0 -525000.0 -520000.0 -515000.0 -510000.0 -505000.0 -500000.0 -495000.0 -490000.0 -485000.0 -480000.0 -475000.0 -470000.0 -465000.0 -460000.0 -455000.0 -450000.0 -445000.0 -440000.0 -435000.0 -430000.0 -425000.0 -420000.0 -415000.0 -410000.0 -405000.0 -400000.0 -395000.0 -390000.0 -385000.0 -380000.0 -375000.0 -370000.0 -365000.0 -360000.0 -355000.0 -350000.0 -345000.0 -340000.0 -335000.0 -330000.0 -325000.0 -320000.0 -315000.0 -310000.0 -305000.0 -300000.0 -295000.0 -290000.0 -285000.0 -280000.0 -275000.0 -270000.0 -265000.0 -260000.0 -255000.0 -250000.0 -245000.0 -240000.0 -235000.0 -230000.0 -225000.0 -220000.0 -215000.0 -210000.0 -205000.0 -200000.0 -195000.0 -190000.0 -185000.0 -180000.0 -175000.0 -170000.0 -165000.0 -160000.0 -155000.0 -150000.0 -145000.0 -140000.0 -135000.0 -130000.0 -125000.0 -120000.0 -115000.0 -110000.0 -105000.0 -100000.0 -95000.0 -90000.0 -85000.0 -80000.0 -75000.0 -70000.0 -65000.0 -60000.0 -55000.0 -50000.0 -45000.0 -40000.0 -35000.0 -30000.0 -25000.0 -20000.0 -15000.0 -10000.0 -5000.0 0.0 5000.0 10000.0 15000.0 20000.0 25000.0 30000.0 35000.0 40000.0 45000.0 50000.0 55000.0 60000.0 65000.0 70000.0 75000.0 80000.0 85000.0 90000.0 95000.0 100000.0 105000.0 110000.0 115000.0 120000.0 125000.0 130000.0 135000.0 140000.0 145000.0 150000.0 155000.0 160000.0 165000.0 170000.0 175000.0 180000.0 185000.0 190000.0 195000.0 200000.0 205000.0 210000.0 215000.0 220000.0 225000.0 230000.0 235000.0 240000.0 245000.0 250000.0 255000.0 260000.0 265000.0 270000.0 275000.0 280000.0 285000.0 290000.0 295000.0 300000.0 305000.0 310000.0 315000.0 320000.0 325000.0 330000.0 335000.0 340000.0 345000.0 350000.0 355000.0 360000.0 365000.0 370000.0 375000.0 380000.0 385000.0 390000.0 395000.0 400000.0 405000.0 410000.0 415000.0 420000.0 425000.0 430000.0 435000.0 440000.0 445000.0 450000.0 455000.0 460000.0 465000.0 470000.0 475000.0 480000.0 485000.0 490000.0 495000.0 500000.0 505000.0 510000.0 515000.0 520000.0 525000.0 530000.0 535000.0 540000.0 545000.0 550000.0 555000.0 560000.0 565000.0 570000.0 575000.0 580000.0 585000.0 590000.0 595000.0 600000.0 605000.0 610000.0 615000.0 620000.0 625000.0 630000.0 635000.0 640000.0 645000.0 650000.0 655000.0 660000.0 665000.0 670000.0 675000.0 680000.0 685000.0 690000.0 695000.0 700000.0" standardName="projection_x_coordinate" tables="" title="" tolRequested="" type="double" uid="dim:xgre" units="km" value=""/>
</grids>
<timeSlice id="tsl" label="timeSlice" title="3.11 Time Slices for Output Requests" uid="SECTION:timeSlice" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item end="2020" label="DAMIP42" nyears="42" start="1979" title="DAMIP 42 year" type="simpleRange" uid="_slice_DAMIP42"/>
<item end="2020" label="DAMIP61" nyears="61" start="1960" title="DAMIP 61 year" type="simpleRange" uid="_slice_DAMIP61"/>
<item end="2100" label="DAMIP40" nyears="40" sliceLen="20" start="2041" step="40" title="DAMIP 20 year slices" type="sliceList" uid="_slice_DAMIP40"/>
<item end="2100" label="DAMIP20" nyears="20" start="2081" title="DAMIP 20 year" type="simpleRange" uid="_slice_DAMIP20"/>
<item end="2015" label="cfOff" nyears="1" start="2015" title="Single year for high frequency data" type="simpleRange" uid="_slice_cfOff"/>
<item child="historical" end="2014" label="piControl100" nyears="100" start="1915" title="Years matching last 100 of historical" type="branchedYears" uid="_slice_piControl100"/>
<item label="VolMIP3" nyears="3" step="0" title="Initial 3 years" type="startRange" uid="_slice_VolMIP3"/>
<item label="RFMIP4" title="Selected days in 4 years" type="yearDayList" uid="_slice_RFMIP4"/>
<item child="historical" end="2014" label="piControl020" nyears="20" start="1995" title="Years matching last 20 of historical" type="branchedYears" uid="_slice_piControl020"/>
<item child="historical" end="2014" label="piControl030" nyears="30" start="1985" title="Years matching last 30 of historical" type="branchedYears" uid="_slice_piControl030"/>
<item child="historical" end="2014" label="piControl050" nyears="50" start="1965" title="Years matching last 50 of historical" type="branchedYears" uid="_slice_piControl050"/>
<item child="historical" end="2014" label="piControl140" nyears="140" start="1875" title="Years matching last 140 of historical" type="branchedYears" uid="_slice_piControl140"/>
<item child="historical" end="2014" label="piControl165" nyears="165" start="1850" title="Years matching historical" type="branchedYears" uid="_slice_piControl165"/>
<item child="historical" end="2049" label="piControl200" nyears="200" start="1850" title="Years matching historical and 35 years beyond" type="branchedYears" uid="_slice_piControl200"/>
<item end="2014" label="clim20" nyears="20" start="1995" title="1995-2014 monthly climatology" type="monthlyClimatology" uid="_slice_clim20"/>
<item end="2014" label="hist65" nyears="65" start="1950" title="1950-2014" type="simpleRange" uid="_slice_hist65"/>
<item end="2014" label="hist55" nyears="55" start="1960" title="1960-2014" type="simpleRange" uid="_slice_hist55"/>
<item end="2014" label="hist20" nyears="20" start="1995" title="1995-2014" type="simpleRange" uid="_slice_hist20"/>
<item end="2014" label="hist35" nyears="35" start="1980" title="1980-2014" type="simpleRange" uid="_slice_hist35"/>
<item end="150" label="abrupt30" nyears="30" start="121" title="Years 121 to 150 from start" type="simpleRange" uid="_slice_abrupt30"/>
<item end="5" label="abrupt5" nyears="5" start="0" title="Years 0 to 5 from start" type="simpleRange" uid="_slice_abrupt5"/>
<item child="abrupt4xCO2" end="150" label="piControl030a" nyears="30" start="121" title="Years matching years 121 to 150 of abrupt4xCO2 run" type="simpleRange" uid="_slice_piControl030a"/>
</timeSlice>
<cellMethods id="cmth" label="cellMethods" title="7.1 Cell Methods" uid="SECTION:cellMethods" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item cell_methods="" description="" label="fixed" title="Fixed field" uid="CellMethods::fixed"/>
<item cell_methods="time: mean within years time: mean over years" description="" label="aclim" title="Annual Climatology" uid="CellMethods::aclim"/>
<item cell_methods="longitude: mean (basin) time: mean" description="" label="bzmean" title="Basin Zonal Mean" uid="CellMethods::bzmean"/>
<item cell_methods="area: mean where sea_ice over sea time: mean" description="" label="amnsi-tpmn" title="Partial Mean over Sea-ice" uid="CellMethods::amnsi-tpmn"/>
<item cell_methods="area: time: mean where sea_ice (comment: mask=siconc)" description="" label="amnsi-twm" title="Weighted Time Mean on Sea-ice" uid="CellMethods::amnsi-twm"/>
<item cell_methods="area: mean time: minimum within days time: mean over days" description="" label="dmin" title="Daily Minimum" uid="CellMethods::dmin"/>
<item cell_methods="area: mean where land time: point" description="" label="amnla-tpt" title="Instantaneous Mean over Land" uid="CellMethods::amnla-tpt"/>
<item cell_methods="area: mean time: maximum" description="Time maximum over the time interval specified by the frequency. " label="tmax" title="Time Maximum" uid="CellMethods::tmax"/>
<item cell_methods="area: time: mean" description="" label="am-tm" title="Area and Time Mean" uid="CellMethods::am-tm"/>
<item cell_methods="area: mean time: mean within days time: mean over days" description="" label="amn-tdnl" title="Mean Diurnal Cycle" uid="CellMethods::amn-tdnl"/>
<item cell_methods="longitude: mean time: mean" description="" label="zmean" title="Zonal Time Mean" uid="CellMethods::zmean"/>
<item cell_methods="area: mean where sea_ice (comment: mask=siconc) time: mean" description="" label="amnsi-tmn" title="Time Mean over Sea-ice" uid="CellMethods::amnsi-tmn"/>
<item cell_methods="area: point" description="" label="apt" title="Point Values" uid="CellMethods::apt"/>
<item cell_methods="area: time: mean where shrubs (comment: mask=shrubFrac)" description="" label="ams-twm" title="Weighted Time Mean on Shrubs" uid="CellMethods::ams-twm"/>
<item cell_methods="area: mean where land over all_area_types time: mean" description="" label="amnlax-tmn" title="Time Mean contribution from Land" uid="CellMethods::amnlax-tmn"/>
<item cell_methods="area: time: mean where grounded_ice_sheet (comment: mask=sfgrlf)" description="" label="amngi-twmn" title="Weighted Time Mean on Grounded Ice Shelf" uid="CellMethods::amngi-twmn"/>
<item cell_methods="area: mean where landuse time: point" description="" label="amlu-tpt" title="Instantaneous mean on Landuse Tiles" uid="CellMethods::amlu-tpt"/>
<item cell_methods="area: mean where land over all_area_types time: sum" description="" label="tsum" title="Temporal Sum" uid="CellMethods::tsum"/>
<item cell_methods="area: mean time: minimum" description="" label="tmin" title="Temporal Minimum" uid="CellMethods::tmin"/>
<item cell_methods="time: mean grid_longitude: mean" description="" label="bgzmean" title="Basin Zonal Mean on Model Grid" uid="CellMethods::bgzmean"/>
<item cell_methods="area: mean time: mean within hours time: maximum over hours" description="" label="am-tmh" title="Maximum Hourly Rate" uid="CellMethods::am-tmh"/>
<item cell_methods="area: time: mean where cloud" description="" label="amncl-twm" title="Weighted Time Mean on Cloud" uid="CellMethods::amncl-twm"/>
<item cell_methods="area: time: mean where sea_ice (comment: mask=sirdgconc)" description="" label="amnsir-twm" title="Weighted Time Mean in Rdiged Sea-ice" uid="CellMethods::amnsir-twm"/>
<item cell_methods="area: mean where ice_free_sea over sea time: mean" description="" label="amnifs-tmn" title="Partial Mean over Ice-free sea" uid="CellMethods::amnifs-tmn"/>
<item cell_methods="area: time: mean where vegetation (comment: mask=vegFrac)" description="" label="amv-twm" title="Weighted Time Mean on Vegetation" uid="CellMethods::amv-twm"/>
<item cell_methods="time: mean" description="" label="tmean" title="Time Mean" uid="CellMethods::tmean"/>
<item cell_methods="area: mean where landuse over all_area_types time: mean" description="" label="amlux-tm" title="Mean Contribution from Landuse Tiles" uid="CellMethods::amlux-tm"/>
<item cell_methods="area: mean (global) time: mean" description="" label="gmn-tmn" title="Global Time Mean" uid="CellMethods::gmn-tmn"/>
<item cell_methods="area: time: mean where sea_ice (comment: mask=siitdconc)" description="" label="amnsib-twm" title="Weighted Time Mean in Sea-ice Thickness Bands" uid="CellMethods::amnsib-twm"/>
<item cell_methods="area: mean time: point" description="" label="amn-tpt" title="Area Mean Instantaneous" uid="CellMethods::amn-tpt"/>
<item cell_methods="area: point time: point" description="" label="apt-tpt" title="Point-Instantaneous" uid="CellMethods::apt-tpt"/>
<item cell_methods="area: time: mean where floating_ice_shelf (comment: mask=sftflf)" description="" label="amnfi-twmn" title="Weighted Time Mean on Floating Ice Shelf" uid="CellMethods::amnfi-twmn"/>
<item cell_methods="longitude: mean (comment: basin mean[ along zig-zag grid path]) time: mean" description="" label="bzzmean" title="Basin Zig-Zag Zonal Mean" uid="CellMethods::bzzmean"/>
<item cell_methods="area: mean" description="" label="amn-fx" title="Fixed Area Mean" uid="CellMethods::amn-fx"/>
<item cell_methods="area: mean where sea_ice (comment: mask=siconc) time: point" description="" label="amnsi-tpt" title="Instantaneous over Sea-ice" uid="CellMethods::amnsi-tpt"/>
<item cell_methods="area: time: mean where sea_ice_melt_pond (comment: mask=simpconc)" description="" label="amnsimp-twm" title="Weighted Time Mean in Sea-ice Melt Ponds" uid="CellMethods::amnsimp-twm"/>
<item cell_methods="area: mean where land time: mean" description="" label="amnla-tmn" title="Time Mean over Land" uid="CellMethods::amnla-tmn"/>
<item cell_methods="area: mean where land time: mean (with samples weighted by snow mass)" description="" label="amnla-tmnsn" title="Snow Mass Weighted" uid="CellMethods::amnla-tmnsn"/>
<item cell_methods="area: mean where land" description="" label="amla" title="Fixed Area Mean" uid="CellMethods::amla"/>
<item cell_methods="area: mean where sea depth: sum where sea (top 100m only) time: mean" description="" label="amds-tmn" title="Sum over upper 100m, Time Mean" uid="CellMethods::amds-tmn"/>
<item cell_methods="area: point time: mean" description="" label="mpt" title="Point Values in Space" uid="CellMethods::mpt"/>
<item cell_methods="area: mean where sea depth: sum where sea time: mean" description="" label="amdss-tmn" title="Sum over depth, Time Mean" uid="CellMethods::amdss-tmn"/>
<item cell_methods="longitude: mean time: point" description="" label="zmean-tpt" title="Zonal Mean" uid="CellMethods::zmean-tpt"/>
<item cell_methods="area: mean where sea" description="" label="amns-fx" title="Area Mean over Sea" uid="CellMethods::amns-fx"/>
<item cell_methods="area: mean time: maximum within days time: mean over days" description="" label="dmax" title="Daily Maximum" uid="CellMethods::dmax"/>
<item cell_methods="area: time: mean where landuse" description="" label="amlu-twm" title="Weighted Time Mean on Landuse Tiles" uid="CellMethods::amlu-twm"/>
<item cell_methods="area: mean where snow over sea_ice area: time: mean where sea_ice" description="For snow heat content and snow thickness." label="amsnsi-tmn" title="Weighted Time Mean over area of Snow on Sea-ice" uid="CellMethods::amsnsi-tmn"/>
<item cell_methods="area: time: mean where ice_sheet" description="" label="amni-twmn" title="Weighted Time Mean on Ice Shelf" uid="CellMethods::amni-twmn"/>
<item cell_methods="area: time: mean where crops (comment: mask=cropFrac)" description="" label="amc-twm" title="Weighted Time Mean on Crops" uid="CellMethods::amc-twm"/>
<item cell_methods="area: mean (global) time: point" description="" label="gmn-tpt" title="Global Mean" uid="CellMethods::gmn-tpt"/>
<item cell_methods="area: sum where sea time: mean" description="" label="asm-tmn" title="Time Mean of Area Sum" uid="CellMethods::asm-tmn"/>
<item cell_methods="area: mean where sea time: point" description="" label="amse-tpt" title="Instantaneous over Sea" uid="CellMethods::amse-tpt"/>
<item cell_methods="area: time: mean where trees (comment: mask=treeFrac)" description="" label="amtr-twm" title="Weighted Time Mean on Bare Ground" uid="CellMethods::amtr-twm"/>
<item cell_methods="area: mean where sea depth: minimum (shallowest local minimum) time: mean" description="" label="amnsed-tmn" title="Time Mean at Ocean Depth" uid="CellMethods::amnsed-tmn"/>
<item cell_methods="area: time: mean where natural_grasses (comment: mask=grassFrac)" description="" label="amng-twm" title="Weighted Time Mean on Natural Grasses" uid="CellMethods::amng-twm"/>
<item cell_methods="area: mean where sea time: mean" description="" label="amse-tmn" title="Time Mean over Sea" uid="CellMethods::amse-tmn"/>
<item cell_methods="time: point" description="" label="tpt" title="Instantaneous" uid="CellMethods::tpt"/>
<item cell_methods="area: mean where land over all_area_types time: point" description="" label="amlax-tpt" title="Contribution from Land (Instantaneous)" uid="CellMethods::amlax-tpt"/>
</cellMethods>
</main>
<annex>
<tags id="tag" label="tags" title="6.1 Tags" uid="SECTION:tags" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item description="" label="TM" title="time mean" uid="TAG:TM"/>
<item description="The weighted time mean is important when a time varying mask is used (e.g. sea ice)" label="WM" title="weighted time mean" uid="TAG:WM"/>
<item description="" label="VCI" title="vertical coordinate interpolation" uid="TAG:VCI"/>
<item description="" label="MSK" title="masking" uid="TAG:MSK"/>
<item description="" label="NS" title="near surface (atmosphere)" uid="TAG:NS"/>
<item description="" label="SPI" title="spatial interpolation" uid="TAG:SPI"/>
<item description="" label="SM" title="spectral mean" uid="TAG:SM"/>
<item description="" label="CL" title="climatology " uid="TAG:CL"/>
<item description="" label="STAT" title="temporal statistics" uid="TAG:STAT"/>
<item description="specialised definition of variable which is more tightly constrained than the CF standard name; variables marked with this will need special attention." label="SD" title="specialised definition" uid="TAG:SD"/>
<item description="" label="zm" title="Zonal mean" uid="TAG:zm"/>
<item description="Radiation fields should be computed with atmospheric CO2 concentrations multiplied by  a factor 4." label="4co2" title="Radiation fields with quadrupled CO2" uid="TAG:4co2"/>
<item description="Gravity wave diagnostics" label="gw" title="Gravity wave diagnostics" uid="TAG:gw"/>
<item description="Variables which are restricted to sea-ice." label="si" title="Sea ice" uid="TAG:si"/>
<item description="Only required for emission driven runs" label="emOnly" title="Only Emission Driven" uid="TAG:emOnly"/>
</tags>
<varRelations id="vrln" label="varRelations" title="6.2 Relationships between CMOR variables" uid="SECTION:varRelations" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item description="Different temporal processing" label="ttm__clt" relation="time-mean" title="clt [time-mean]" uid="f1b5fdc4-26b8-11e7-8344-ac72891c3257"/>
</varRelations>
<varRelLnk id="vrln" label="varRelLnk" title="6.3 CMOR Variable Relation Links" uid="SECTION:varRelLnk" useClass="vocab">
<!-- <info srcType="dummy" srcRef="ptxt.py">Dummy entries</info> -->
<item label="ttm__clt_1" rid="baaad2d6-e5dd-11e5-8482-ac72891c3257" rlid="f1b5fdc4-26b8-11e7-8344-ac72891c3257" title="clt [time-mean] {1}" uid="f1b65440-26b8-11e7-8344-ac72891c3257"/>
<item label="ttm__clt_2" rid="baaace4e-e5dd-11e5-8482-ac72891c3257" rlid="f1b5fdc4-26b8-11e7-8344-ac72891c3257" title="clt [time-mean] {2}" uid="f1b6af26-26b8-11e7-8344-ac72891c3257"/>
</varRelLnk>
</annex>
</document>
